certificate ridhi-edited 24-06-2015 -...

31

Upload: others

Post on 10-Jun-2020

1 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms
Page 2: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

94

7. Bibliography

Abdou, W. N., Mahran, M. R., Sidky, M. M. and Wamhoff, H. (1985). Photolysis

of methyl 2-benzimidazole carbamate (carbendazim) in the presence of singlet

oxygen. Chemosphere 14 (9): 1343-1353.

Ackerman, F. (2007). The economics of atrazine. Int J Occupational Environ Health

13: 441-449.

Adamczewski, K., Kierzek, R. and Matysiak, K. (2009). Influence of long-term

used herbicides on resistance development in Apera spica-venti L. to sulfonylureas.

Commun Agric Biol Sci. 74(2): 491-6.

Ahlawat, O. P., Gupta, P., Kumar, S., Sharma, D. K. and Ahlawat, K. (2010).

Bioremediation of Fungicides by Spent Mushroom Substrate and Its Associated

Microflora. Ind J Microbiol 50(4): 390-395.

Ahmed, S. M., Ismail, A. A. and Houusien, A. A. (2010). Dissipation and

Persistence of Fungicides, carbendazim and metaxyl in Egyptian soils under biotic

and abiotic conditions. J Appl Sci Res 6(8): 1240-1246.

Ahemad, M. and Khan, M. S. (2011). Toxicological effects of selective herbicides

on plant growth promoting activities of phosphate solubilizing Klebsiella sp. strain

PS19, Curr Microbiol 62: 532-538.

Ahemad, M. and Khan, M. S. (2011). Effect of pesticides on plant growth

promoting traits of greengram-symbiont, Bradyrhizobium sp. strain MRM6. Bull

Environ Contam Toxicol 86: 384-388.

Ahemad, M. and Khan, M. S. (2012). Effect of fungicides on plant growth

promoting activities of phosphate solubilizing Pseudomonas putida isolated from

mustard (Brassica compestris) rhizosphere, Chemosphere 86: 945-950.

Page 3: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

95

Ahemad, M. and Khan, M. S. (2012). Evaluation of plant growth promoting

activities of rhizobacterium Pseudomonas putida under herbicide-stress. Ann

Microbiol 62: 1531-1540.

Ahemad, M. and Khan, M. S. (2012). Ecological assessment of biotoxicity of

pesticides towards plant growth promoting activities of pea (Pisum sativum)-specific

Rhizobium sp. strain MRP1. Emirates J Food Agric 24: 334-343.

Anastassiades, M. and Schwack, W. (1998). Analysis of carbendazim, benomyl,

thiophenate methyl and 2,4-dichlorophenoxyacetic acid in fruits and vegetables after

supercritical fluid extraction. J Chromatography A 825(1): 45-54.

Araoud, M., Douki, W., Najjar, M. F. and Kenani, A. 2010. Simple analytical

method for determibation of pesticide residues in human serum by liquid

chromatography tandem mass spectrometery. J Environ Sci Health B 45(3): 242-8.

Arias, L. A., Bojaca, C. R., Ahumada, D. A. and Schrecens, E. (2014).

Monitoring of pesticide residues in tomato marketed in Bogota, Colombia. Food

Cont 35(1): 213-217.

Arora, A., Tomar, S. S. and Sondhia, S. (2013). Efficacy of herbicides on wheat

and their terminal residues in soil, grain and straw. Ind J Weed Sci 45(2): 109–112.

Arnold, L. L., Cano, M., John, M. K. Healy, C. E. and Cohen, S. M. (2001).

Effect of Sulfosulfuron on the Urine and Urothelium of Male Rats. Toxicol Pathol

29(3): 344–352.

Arya, R. and Sharma, A. K. (2014). Screening, Isolation and Characterization of

Brevibacillus borstelensis for the Bioremediation of Carbendazim. J Environ Sci

Sustainability 2(1): 12-14.

Page 4: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

96

Arya, R. and Sharma, A. K. (2014). Bioremediation of Carbendazim by

Streptomyces albogriseolus. Biointerface Res Appl Chem 4(4): 804-807.

Atmakuru, R., Perumal, E. T. and Sivanandam, S. (2007). Identofication of

residues of sulfosulfuron and it metabolites in subsoil-dissipation kinetics and factors

influencing the stability and the degradation of residues from topsoil to subsoil under

predominant cropping conditions. Environ Monit Assess 130(1-3): 519-28.

Bahrampor, T. and Ziveh, P. S. (2013). Effects of Residue Sulfonylurea Herbicides

on Wheat. Int JAgro Plant Produc 4 (10): 2707-2713.

Bakirici, G. T., Acay, D. B. Y., Bakirici, F. And Otles, S. (2014). Pesticide

residues in fruits and vegetables from the Aegean region, Turkey. Food Chem 160:

379-392.

Berglo¨f, T., Van- Dung, T., Kylin, H. and Nilsson I. (2002). Carbendazim

sorption desorption in Vietnamese soils. Chemosphere 48: 267–273.

Berrada, H., Fernandez, M., Ruiz, M. J., Molto, J. C., Manes, J. and Font, G.

(2010). Surveillance of pesticide residues in fruits from Valencia during twenty

months (2004/2005). Food Cont 21: 36-44.

Beyer, E. M., Brown, H. M. and Duffy, M. J. (1987). Sulfonylurea herbicide soil

relations. Proceedings of the British Crop Protection Conference-Weeds. Brighton,

UK.

Bhanti, M., Shukla, G. and Taneja, A. (2004). Contamination levels of

organochlorine pesticides and farmers’ knowledge, perception, practices in rural

India-A case study. Bull Environ Conta Toxicol 73: 787-793.

Page 5: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

97

Bhanti, M. and Taneja, A. (2007). Contamination of vegetables of different

seasons with organophosphorous pesticides and related health risk assessment in

northern India. Chemosphere 69: 63-68.

Bhushan, R., Thapar, S. and Mathur, R. P. (1997). Accumulation pattern of

pesticides in tropical fresh waters. Biomed Chromatogr 11(3): 143-50.

Bossi, R., Vejrup, K. and Jacobsen, C. S., (1999). Determination of sulfonylurea

degradation products in soil by liquid chromatography-ultraviolet detection followed

by confirmatory liquid chromatography-tandem mass spectrometry. J Chromatogr

855: 575-82.

Boudina, A., Baaliouamer, A., Emmelin, C. and Chovelon, J. M. (2011).

Photostability and phototransformation pathway of an benzimidazolic fungicide.

International Conference on Biology, Environment and Chemistry IPCBEE © (2011)

IACSIT Press, Singapore vol. 24: 367-371.

Boudina, A., Emmelin, C., Baaliouamer, A., Grenier-Loustalot, M. F. and

Chovelon, J. M. (2003). Photochemical behaviour of carbendazim in aqueous

solution. Chemosphere 50: 649–655.

Brar, A. P., Punia, S. S., Yadav, A. and Malik, R. K. (2006). Effect of pH on

degradation of sulfosulfuron in soil. Ind J Weed Sci 38(1&2): 115-118.

Brar, A. P., Punia, S. S., Yadav, A. and Malik, R. K. (2006). Effect of temperature

on persistence of sulfosulfuron in sandy loam soil. Ind J Weed Sci 38(1&2): 119-

122.

Brar, P. A., Ponia, S. S., Yadav, A. and Malik, R. K. (2006). Microbial

Degradation of Sulfosulfuron in soil under Laboratory Conditions. Ind J Weed Sci

38(3-4): 255-257.

Page 6: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

98

Brar, A. P., Punia, S. S., Yadav, A. and Malik, R. K. (2007). Persistence of

sulfosulfuron applied in wheat on succeeding crop of sorghum. Ind J Weed Sci 39 (1-

2): 40-43.

Brown, H. M. (1990). Mode of action, crop selectivity, and soil relations of the

sulfonylurea herbicides. Pestic Sci 29: 263-81.

Buhler, C.D. (1992). Population dynamics and control of annual weeds in corn as

influenced by tillage systems. Weed Sci 40: 241- 248.

Cancela, G. D., Taboada, E. R. and Sanchez-Rasero, F. (2006). Carbendazim

adsorption on montmorillonite, peat and soils. J Soil Sci 43(1): 99-111.

Carbo, L.; Martins, E. L.; Dores, E. F.; Spadotto, C. A.; Weber, O. L. and De-

Lamonica- Freire, E. M. (2007). Acetamiprid, carbendazim, diuron and

thiamethoxam sorption in two Brazilian tropical soils. J Environ Sci Health B 42:

499–507.

Casida, J. E. and Durkin, K. A. (2013). Neuroactive insecticides: Targets,

selectivity, resistance, and secondary effects. Annu Rev Entomol 58: 99–117.

Cessana, A. J., Donald, D. B., Bailey, J., Waiser, M. and Headley, J. V. (2006).

Persistence of the sulfonylurea herbicides thifencephalon-methyl, ethametsulfuron-

methyl and metsulfuron-methyl in farm dug-outs(ponds). J Environ Qual 35(6):

2395-401.

Chapalamadugu, S. and Chaudhry, G. R. (1991). Hydrolysis of carbaryl by a

Pseudomonas sp. and construction of a microbial consortium that completely

metabolizes carbaryl. Appl Environ Microbiol 57: 744-750.

Page 7: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

99

Chaudhry, G. R. and Ali, A. N. (1988). Bacterial metabolism of carbofuran. Appl

Environ Microbiol 54: 1414 – 1419.

Chhonkar, R. S. and Malik, R. K. (2002). Isoproturon resistance in Phalaris minor

and its response to alternate herbicides. Weed Technol 16: 116-123.

Chiba, M., Brown, A. W. and Danic, D. (1987). Inhibition of yeast respiration and

fermentation by benomyl, carbendazim, isocyanates and other fungicidal chemicals.

Can J Microbiol 33(2): 157-61.

Chiba, M. and Veres, D. F. (1980). Hplc method for simultaneous determination of

residual benomyl and methyl -2-benzimidaole carbamates in apple foliage without

clean up. J Assoc Off Anal Chem 63: 1291-1295.

Chen, Y. and Zhou, M. G. (2009). Characterization of Fusarium graminearum

isolates resistant to both carbendazim and a new fungicide JS399-19. Phytopathol 99:

441–446.

Chen, H., Liu, X., Wang, C., Wang, Q., Jiang, Y., Yin, P. and Zhu, L. (2013).

Simultaneous determination of thiophenate methyl and its metabolite carbendazim in

tea using isotope dilution ultra performance liquid chromatography-tandem mass

spectrometry. J Chromatogr Sci [Epub ahead of print].

Chhonkar, R. S., Sharma, R. K., Chauhan, D. S. and Mongia, A. D. (2006).

Evaluation of herbicides against Phalaris minor in wheat in north-western Indian

plains. Weed Res 46(1): 40-49.

Choi, S. M., Yoo, S. D. and Lee, B. M. (2004). Toxicological characteristics of

endocrine disrupting chemicals: Developmental toxicity, carcinogenicity and

mutagenicity. J Toxicol Environ Health B Crit Rev 7: 1- 24.

Page 8: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

100

Cummings, A. M., Harris, S. T. and Rehnberg, G. L. (1990). Effects of

methylbenzimidazole carbamates during early pregnancy in the rat. Fundam Appl

Toxicol 15: 528-535.

Cuppen, J. G., Van den- Brink, P. J., Camps, E., Uil, K. F. and Brock, T. C.

(2000). Impact of the fungicide carbendazim in freshwater microcosms. I. Water

quality, breakdown of particulate organic matter and responses of

macroinvertebrates. Aquat Toxicol 48: 233–250.

Cycon, M., Kaczyn´ska, A. and Piotrowska-Seget, Z. (2005). Soil enzyme

activities as indicator of soil pollution by pesticides. Pesticides 1-2: 35-45.

Davies, J., Honeggar, J. L., Tencalla, F. G., Maregalli, G., Brain, P., Newman, J.

R. and Pitchford, H. F. (2003). Herbicide Risk Assessment for non-target aquatic

plants: sulfosulfuron- -a case study. Pest Manag Sci 59(2): 231-7.

Delp, C. J. (1987). Modern selective fungicides. Wiley, London. 233–244.

Degenhardt, D., Cessna, A. J., Raina, R., Pennock, D. J. and Farenhorst, A.

(2010). Trace level determination of selected sulfonylurea herbicide in wetland

sediment by liquid chromatography electrospray tandem mass spectrometry. J

Environ Sci Health B 45(1): 11-24.

EFSA. (2008). Annual Report on Pesticide Residues according to Article 32 of

regulation (EC) No 396/2005. EFSA J. 8: 1646-442.

Eleftherohorinos, I., Dhima, K. and Vasilakoglou, I. (2004). Activity, adsorption,

mobility and field persistence of sulfosulfuron in soil. Phytoparasitica 32(3): 274-

285.

Page 9: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

101

El-Saharty, A. and Hassan, I. A. (2014). Photochemical purification of wastewater

from the fungicides and pesticides using advanced oxidation process. Aus J Bas Appl

Sci 8(1): 434-441.

EPA. What is a pesticide? http://www.epa.gov/opp00001/about/.

EPA (US Environmental Protection Agency). (1984). Health and Environmental

Effects Profile for Carbaryl; Environmental Criteria and Assessment Office, Office

of Health and Environmental Assessment, Office of Research and Development:

Cincinnati, OH, USA.

EPA (US Environmental Protection Agency). (1999). Integrated Risk Information

System (IRIS) on Carbaryl; National Center for Environmental Assessment, Office

of Research and Development: Washington, DC, USA.

Enriqueta-Arias, M., Gonz-alez-P-erez, J.A., Gonz-alez-Vila, F. J., Ball, A. S.,

(2005). Soil health a new challenge for microbiologists and chemists. Intl Microbiol

8: 13-21.

Escalada, J. P., Pajares, A., Gianotti, J., Massad, W. A., Bertolotti, S., Amat-

Guerri, F. and Garcia, N. A. (2006). Dye-sensitized photo-degradation of the

fungicide carbendazim and related benzimidazoles. Chemosphere 65(2): 237-44.

Esturk, O., Yakar, Y. and Ayhan, Z. (2014). Pesticide residue analysis in parsley,

lettuce and spinach by LC-MS/MS. J Food Sci Technol 51(3): 458-66.

Fang, H., Wang, Y., Gao, C., Dong, B. and Yu, Y. (2010). Isolation and

characterization of Pseudomonas sp. CBW capable of degrading carbendazim.

Biodeg 21(6): 939-46.

Page 10: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

102

FAO, (2002a). (Food and Agriculture Organization). Submission and Evaluation of

Pesticide Residues Data for the Estimation of Maximum Residue Levels in Food and

Feed; FAO: Rome, Italy, pp: 1-279.

FAO/WHO, (2010). Pesticide residues in food and feed. Acceptable Daily Intake;

Codex Alimentarius Commission, FAO/WHO Food standards.

Farag, A., Ebrahim, H., ElMazoudy, R. and Kadous, E. (2011). Developmental

toxicity of fungicide carbendazim in female mice. Birth Defects Res B Dev Reprod

Toxicol 92(2): 122-30.

Feng X., Oui L.T. and Orgam A., (1997). Plasmid mediated mineralization of

carbofuran by Sphingomonas sp. Strain CF06. Appl Environ Microbiol 63: 1332 –

1337.

Fenoll, J., Hellin, P., Flores, P., Martinez, C. M. and Navarro, S. (2012).

Photpcatalytic degradation of five sulfonylurea herbicides in aqueous semiconductor

suspensions under natural sunlight. Chemosphere 87(8): 954-61.

Foster, K. E., Burland, T. G. and Gull, K. A. (1987). Mutant beta-tubulin confers

resistance to the action of benzimidazole carbamate microtubule inhibitors both in

vivo and in vitro. Fur J Biochem 163: 449-455.

Fuentes, M. S., Benimeli, C. S., Cuozzo, S. A., Saez, J. M. and Amoroso, M. J.

(2010). Microorganisms capable to degrade organochlorine pesticides. Curr Res

Technol Edu Topics Appl Microbiol Microbial Biotech 2(2): 1255-64.

Galloway, T. and Handy, R. (2003). Immunotoxicity of organophosphorous

pesticides. Ecotoxicol 12: 345–363.

Page 11: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

103

Garcia, P. C., Rivero, R. M., Lopez-Lefebre, L. R. Sanchez, E. Ruiz, J.M. and

Romero, L. (2001). Direct action of the biocide carbendazim on phenolic

metabolism in tobacco plants. J Agric Food Chem 49: 131-137.

Ghaly, A. E., Dave, D. (2012). Kinetics of biological treatment of low level

pesticide wastewater. Am J Environ Sci 8: 424-432.

Girvan, M. S., Bullimore, J., Ball, A. S., Pretty, J. N., Osborn, A. M. (2004).

Responses of active bacterial and fungal communities in soils under winter wheat to

different fertilizer and pesticide regimens. Appl Environ Microbiol 70: 2692-2701.

Goldman, J. M., Rehnberg, G. L., Cooper, R. L., Gray L. E. Jr., Hein, J. F. and

McElroy, W. K. (1989). Effects of benomyl metabolite, carbendazim, on the

hypothalamic-pituitary reproductive axis in the male rat. Toxicol 57(2): 173-82.

Gray, L. E., Ostby, J., Ferrel, J., Sigmon, R. and Cooper, R. (1989). Correlations

of sperm and endocrine measures with reproductive success in rodents. Sperm Meas

Reprod Success 193-209.

Gray, L. E., Ostby, J., Linder, R., Goldman, J., Rehnberg, G. and Cooper, R.

(1990). Carbendazim induced alteration of reproductive development and function in

the rat and hamster. Fundam. Appl. Toxicol. 15: 281-297.

Grey, T. L. and McCullough, P. E. (2012). Sulfonylurea herbicides’ fate in soil:

Dissipation, Mobility and other processes. Weed Technol 26(3): 579-581.

Gupta P. K. (2004). Pesticide exposure-Indian scene. Toxicol 198(1-3): 83-90.

Hadizadeh, M. H. (2010). Bioassay study of sulfosulfuron herbicide. Proceedings of

3rd Iranian Weed Sciences Congress. 2: 523-26.

Page 12: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

104

Hayat, K., M. Ashfaq, U. Ashfaq, M.A. Saleem, (2011). Determination of pesticide

residues in blood samples of villagers involved in pesticide application at District

Vehari (Punjab), Pakistan. Afri J Environ Sci Tech 4: 666-684.

Healy, C. E, Heydens, W. F. and Naylor, M. W. (2004). Mammalian toxicology

overview and human risk assessment for sulfosulfuron. Regul Toxicol Pharamacol

39(3): 310-24.

Helweg, A. (1977). Degradation and adsorption of carbendazim and 2-

aminobenzimidazole in soil. Pestic Sci 8: 71–78.

Hernandez, F., Portoles, T., Ibanez, M., Bustos-Lopez, M.C., Diaz, R., Botero-

Coy A.M., Fuentes, C.L. and Penuela, G. (2012). Use of time of flight mass

spectrometery for large screening of organic pollutants in surface waters and soils

from a rice production area in Columbia. Sci Total Environ 439: 249-59.

Hess, R. A., Moore, B. J., Forrer, J., Linder, R. E. and Abuel-Atta, A. A. (1991).

The fungicide benomyl (methyl-1-(butylcarbomoyl)-2-benzimidazolecarbamate)

causes testicular malfunction by inducing the sloughing of germ cells and occlusion

of efferent ductules. Fundam Appl Toxicol 17: 733-745.

Hoebeke, J., Van Nijen, G. and De Brabander, M. (1976). Interaction of

oncodazole (R 17934), a new antitumoral drug, with rat brain tubulin. Biochem

Biophys Res Commun 69(2):319-24.

Holmes, M., Kennedy, M. C., Riccio, R. and Hart, A. (2008). Assessing the risk to

U.K. children from carbendazim residues in apple products. Int J Occup Environ

Health 14: 86–93.

Page 13: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

105

Holtman, M. A. and Kobayashi, D. Y. (1997). Identification of Rhodococcus

erythropolis isolates capable of degrading the fungicide carbendazim. Appl

Microbial Biotechnol 47(5): 578-82.

Illing, H.P.A. (1997). Is working in greenhouses healthy? Evidence concerning the

toxic risks that might affect greenhouse workers. Occup Med 47: 281–293.

Itak, J. A., Selisker, M. Y., Jourdan, S. W., Fleeker, J. R. and Herzog, D. P.

(1993). Determination of Benomyl (as carbendazim) and carbendazim in water, soil

and fruit juice by a magnetic particle based immunoassay. J Agric Food Chem 41:

2329-2332.

Jamal, G. A., Hansen, S., Pilkington, A., Buchanan, D., Gillham, R. A., Abdel-

Azis, M., Julu, P. O., Al-Rawas, S. F., Hurley, F. and Ballantyne, J. P. (2002). A

clinical neurological, neurophysiological, and neuropsychological study of sheep

farmers and dippers exposed to organophosphate pesticides. Occup Environ Med 59:

434–441.

JanakiDevi, V., Nagarani, N., YokeshBabu, M., Kumaraguru, A. K. and

Ramakritinan, C. M. (2012). A study of proteotoxicity and genotoxicity induced by

pesticide and fungicide on marine invertebtate (Donax faba). Chemosphere 90(3):

1158-66.

Jin, X., Ren, J. Wang, B., Lu, Q. and Yu, Y. (2013). Impact of coexistence of

carbendazim, atrazine and imidacloprid on their adsoption, desorption and mobility

in soil. Environ Sci Pollut Res Int 20(9): 6282-9.

Jose L., Eva H., Susana L., Mercedes V. and Jose M. (2002). Effects of

Sulfosulfuron soil residues on barley (Hordeum vulgare), sunflower (Helianthus

annuus) and common vetch (Vicia sativa). Crop Protection 21(10): 1061-1066.

Page 14: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

106

Kale, S. P., Murthy, N. B. K. and Raghu, K. (1989). Effect of carbofuran, Carbaryl

and their metabolites in the growth of Rhizobium sp. and Azotobacter chroococcum.

Bull Environ Contam Toxicol 42: 769–772.

Kalwasasinska, A., Kesy, J. and Donderski, W. (2008). Biodegradation of

carbendazim by epiphytic and neustonic bacteria of eutrophic Chelmzynskie Lake.

Pol J Microbiol 57(3): 221-230.

Kaufman D.D., (1987). Accelerated biodegradation of pesticides in soil and its

effect on pesticide efficacy. Proc Br Crop Prot Conf Weed 2: 515–522

Kaur, S. M., Walia, U. S. and Randhawa, S. K. (2010). Residues of sulfosulfuron,

mesosulfuron+iodosulfuron and pinoxaden in soil, wheat and successive crops. Ind J

Weed Sci 42(1&2): 1-8.

Keifer, M.C. and Firestone, J. (2007). Neurotoxicity of pesticides. J Agromed 12:

17–25.

Kiss, A. and Virag, D. (2009). Photostability and photodegradation pathways of

distinctive pesticides. J Environ Qual 38(1): 157-63.

Lacey, E. (1988). The role of the cytoskeletal protein, tubulin, in the mode of action

and mechanism of drug resistance to benzimidazoles. Int J Parasitol 18(7): 885-936.

Laclette, J. P., Guerra, G. and Zetina, C. (1980). Inhibition of tubulin

polymerization by mebendazole. Biochem Biophys Res Commun 92(2): 417-23.

Leistra, M. and Matser, A. M. (2004). Adsorption, Transformation and

Bioavailability of the fungicides Carbendazim and Iprodione in soil, alone and in

combination. J Environ Sci Health B 39(1): 1-17.

Page 15: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

107

Lewandowska, A. and Walorczyk, A. (2010). Carbendazim Residues in the Soil

and Their Bioavailability to Plants in Four Successive Harvests. Pol J Environ Stud

19(4): 757-761

Lim, J. and Miller, M. G. (1997). The role of benomyl metabolite carbendazim in

benomyl-induced testicular toxicity. Toxicol Appl Pharmacol 142(2): 401-10.

Lin, X., Hou, Z., Feng, Y., Zhao, S. and Ye, J. (2011). Isolation and characteristics

of carbendazim degradation bacterium. 2011 International Conference on

Agricultural and Biosystems Engineering. Adv Biomed Engg 1-2.

Lin, X., Hou, Z., Feng, Y., Zhao, S., Ye, J. (2011). Isolation and charactersticks of

efficient carbedazim degrading bacterium. Adv Biomed Engg 1-2.

Lin, X., Hou, Z. N., Zhao, S. F., Xie, L., Li, H. J. and Li, M. Z. (2012). Isolation

of carbendazim-degrading bacterium XJ-D and analysis on its characteristics.

Agricul Sci Technol 13(2): 412-416.

Liu, S. (2000). Opportunity, challenge and strategy of IPM. Plant Protect 26: 35–38.

Liu, N., Dong, F., Liu, X., Xu, J., Li, Y., Han, Y., Zhu, Y., Cheng, Y., Chen, Z.,

Tao, Y. and Zheng, Y. (2014). Effect of household canning on the distribution and

reduction of thiophenate-methyl and its metabolite carbendazim residues in tomato.

Food Cont 43: 115-120.

Loganayagi, C. and Ramesh, A. (2013). Mobility of sulfosulfuron and its

metabolite aminopyrimidine in soil under lab conditions. J Ecol Environ Sci 2(1): 47-

54.

Lone, A. H., Raverkar, K. P. and Pareek, N. (2014). In-vitro effects of herbicides

on soil microbial communities. The Bioscan 9(1): 11-16

Page 16: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

108

Lotti, M. (2002). Low-level exposures to organophosphorus esters and peripheral

nerve function. Muscle Nerve 25: 492–504.

Lutz, P. (2012). [Benzimidazole and its derivatives—from fungicides to designer

drugs. A new occupational and environmental hazards]. Med Pr 63(4): 505-13.

Ma, Z., Yoshimura, M. A. and Michailides, T. J. (2003). Identification and

characterization of benzimidazole resistance in Monilinia fructicola from stone fruit

orchards in California. Appl Environ Microbiol 69(12): 7145-52.

Maheshwari, S. T. and Ramesh, A. (2007). Adsorption and degradation of

sulfosulfuron in soils. Environ Monit Assess 127(1-3): 97-103.

Makihata, N, Kawamota, T. and Teranishi, K. (2003). Simultaneous analysis of

carbamate pesticides in tap and raw water by LC/ESI/MS. Anal Sci 19: 543-549.

Malik, R. K. and Singh, S. (1993). Evolving strategies for herbicide use in wheat :

resistance and integrated weed management. pp 225- 238. In: Proceedings of

International Symposium on Integrated weed Management for Sustainable

Agriculture 18-20 Nov. 1993.

Maltby, L., Brock, T. M. and Vandenbrink, P. (2009). Fungicide Risk Assessment

for aquatic ecosystems: Importance of interspecific variation, toxic mode of action,

and exposure. Environ Sci Technol 43: 7556–7563.

Mandal, S., Das, S. and Bhattacharyya, A. (2010). Dissipation study of

thiophenate methyl residues in/on grapes (Vitis vinifera L.) in India. Bull Environ

Contam Toxicol 84(5), 592-5.

Page 17: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

109

Mansour, S. A., Belal, M. H., Abou-Arab, A. A. and Gad, M. F. (2009).

Monitoring of pesticide and heavy metals in cucumber fruits produced from different

farming system. Chemosphere 75: 601-609.

Matsuo, F., Nakai, M. and Nasu, T. (1999). The fungicide carbendazim induces

meiotic micronuclei in the spermatids of the rat testis. J Vet Med Sci 61(5): 573-6.

Mazeilier, E.; Leroy, E. and Legube, B. (2002). Photochemical behavior of

fungicide carbendazim in dilute aqueous solution. J Photochem Photobiol Chem 153:

221-227.

Mazellier, P., Leroy, E., Laat, J. D. and Legube, B. (2003). Degradation of

carbendazim by UV/H2O2 investigated by kinetic modelling. Environ Chem Letters

1(1): 68-72.

Medina, A., Mateo, R., Valle-Algarra, F. M., Mateo, E. M., Jiménez, M. (2007).

Effect of carbendazim and physicochemical factors on the growth and ochratoxin A

production of Aspergillus carbonarius isolated from grapes. Int J Food Microbiol 119

(3): 230-235.

Menne, H. J. and Berger, B. M. (2001). Influence of straw management, nitrogen

fertilization and dosage rates on the dissipation of five sulfonylureas in soil. Weed

Res 41: 229-453.

Milenkovski, S., Baath, E., Lindgren, P. E. and Berglund, O. (2010). Toxicity of

fungicides to natural bacterial communities in wetland water and sediment measured

using leucine incorporation and potential denitrification. Ecotoxicol 19(2): 285-94.

Moffit, J. S., Bryant, B. H., Hall, S. J. and Boekelheide K. (2007). Dosedependent

effects of sertoli cell toxicants 2,5-hexanedione, carbendazim, and mono-(2-

ethylhexyl) phthalate in adult rat testis. Toxicol Pathol 35: 719–727.

Page 18: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

110

Mohiuddin, M. and Mohammed, M. K. (2014). Fungicide (carbendazim) and

herbicides 2, 4-D and atrazine) influence on soil microorganisms and soil enzymes of

rhizospheric soil of groundnut crop. Int J Rec Sci Res 5(3): 585-589.

Morinaga, H., Yanase, T., Nomura, M., Okabe, T., Goto, K., Harada, N. and

Nawata, H. (2004). A benzimidazole fungicide, benomyl and its metabolite,

carbendazim, induce aromatase activity in human ovarian granulose-like tumor cell

line (KGN). 145(4)

Mukherjee, I. and Arora, S. (2011). Impact analysis of IPM programs in basmati

rice by estimation of pesticide residues. B mull Environ Toxicol 86(3): 307-13.

Muthuviveganandavel, V., Muthuraman, P., Muthu, S. and Srikumar, K.

(2008). Toxic effects of carbendazim at low dose levels in male rats. J Toxicol Sci

33(1): 25-30.

Nagase, H., Pattanasupong, A., Sugimoto, E., Tani, K., Nasu, M., Hirata, K. and

Miyamoto, K. (2006). Effect of environmental factors on performance of

immobilized consortium system for degradation of carbendazim and 2,4-

dichlorophenoxyacetic acid in continuous culture. Biochem Engg J 29(1): 163-168.

Nakai, M., Hess, R. A., Moore, B. J., Guttroff, R. F., Strader, L. F. and Linder,

R. E. (1992). Acute and long term effects of single dose of the fungicide

carbendazim (metyl benzimidazole carbamates) on the male reproductive system in

the rat. J Androl 13: 507-518.

Nakai, M. and Hess, R. A. (1997). Effects of carbendazim (methyl-2-benzimidzole

carbamate; MBC) on meiotic spermatocytes and subsequent spermiogenesis in rat

testis. Anat Res 247(3): 379-87.

Page 19: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

111

Noyrod, P., Chailapakul, O., Wonsawat, W. and Chuanuwatanakul, S. (2014).

The simultaneous determination of isoproturon and carbendazim pesticides by single

drop analysis using a graphene-based electrochemical sensor. J Anal Chem 719: 54-

59.

Osteen, C. and Livingstion, M. (2007). Pest management practices, in: Agricultural

Resources and Environmental Indicators, K.D. Wiebeand, N.R. Gollehon (Eds.),

Nova Publishers, New York, pp. 129-183.

Owen, M. J., Goggin, D. E. and Powles S. B. (2012). Identification of resistance to

either paraquat or ALS-inhibiting herbicides in two Western Australian Hordeum

leporinum biotypes. Pest Manag Sci 68(5): 757-63.

Owen, M. J., Goggin, D. E. and Powles S. B. (2012). Non-target-site-based

resistance to ALS-inhibiting herbicides in six Bromus rigidus populations from

Western Australian cropping fields. Pest Manag Sci 68(7): 1077-82.

Panades, R., Ibarz, A. and Esplugas, S. (2000). Photodecomposition of

carbendazim in agueous solutions. Water Res 34(11): 2951-2954.

Pandey, G., Dorrian, J. S., Russell, J. R., Brearley, C., Kotsonis S. and

Oakeshott, G. J. (2010). Cloning and Biochemical characterization of a novel

Carbendazim (Methyl-1H-Benzimidazol-2-ylcarbamate)- Hydrolyzing Esterase from

the newly isolated Nocardioides sp. strain SG-4G and its potential for use in

bioremediation. Appl Environ Microbiol 2940-2945.

Papadopoulou-Mourkidou, E. (1991). Postharvest-applied agrochemicals and their

residues in fresh fruits and vegetables. J Assoc Off Anal Chem 74(5): 745-65.

Page 20: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

112

Pareja, L., Colazzo, M., Perez-Parada, A., Besil, N., Heinzen, H., Bocking, B.,

Cesio, V. and Fernandez-Alba, A. R. (2012). Occurrence and distribution study of

residues from pesticides applied under controlled conditions in the field during rice

processing. J Agric Food Chem 60(18): 4440-8.

Parekh N.R., Hartman A., Charnay M.P. and Fournier J.C., (1995). Diversity of

carbofuran degrading soil bacteria and detection of plasmid-encoded sequences

homologous to the mcd gene. FEMS Microbiol. Ecol 17: 149-160

Parvinen, M. and Kormano, M. (1974). Early effects of antispermatogenic

benzimidazole derivatives U 32.422 and U 32.104 on the seminiferous epithelium of

rats. Andrologia 6: 245-253.

Paszko, T. (2012). Effect of pH on the adsorption of carbendazim in Polish mineral

soils. Sci Total Environ 1: 435-436.

Pattanasupong, A., Nagase, H., Inoue, M., Hirata, K., Tani, K., Nasu, M. and

Miyamoto, K. (2004). Ability of a Microbial Consortium to remove pesticide,

carbendazim and 2, 4-Dicholorophenoxyacetic acid. Wor J Microbiol Biotechnol

20(5): 517-22.

Perreault, S. D., Jaffrey, S., Poss, P. and Laskey, J. W. (1992). Use of

carbendazim as a model compound to determine the impact of acute chemical

exposure during oocyte maturation and fertilization on pregnancy outcome in the

hamster. Toxicol Appl Pharmacol 114: 225-231.

Pimental, D. (2007). Environmental and economic costs of the application of

pesticides primarily in United States. In: Food, Energy and Society, Third Edition

edited by. Pimentel M. and Pimentel D. CRC Press.

Page 21: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

113

Poubesova, T., Nir, S., Zadaka, D., Rabinovitz, O., Serban, C., Groisman, L.

and Rubin, R. (2005). Water purification from organic pollutants by optimized

micelle-clay systems. Environ Sci Technol 39(7): 2343-8.

Quinlan, R. A., Pogson, C. I. and Gull, K. (1980). The influence of the microtubule

inhibitor, methyl benzimidazole-1-yl-carbamate (MBC) on nuclear division and the

cell cycle in Saccharomyces cerevisiae. J Cell Sci 46: 341-52.

Rajeswari, R. and Kanmani, S. (2009). TiO2- Based heterogenous photocatalytic

treatment combined with ozonation for carbendazim degradation. Iran J Environ

Health Sci Eng 6(2): 61-66.

Rajeswary, S., Kumaran, B., Ilangovan, R., Yuvaraj, S., Sridhar, M.,

Venkataraman, P., Srinivasan, N. and Aruldhas, M. M. (2007). Modulation of

antioxidant defense system by the environmental fungicide carbendazim in Leydig

cells of rats. Reprod Toxicol 24: 371–380.

Ramanand, K., Sharmila, M. and Sethunathan, N., (1988). Mineralization of

carbofuran by a soil bacterium. Appl Environ Microbiol 54: 2129–2133

Ramesh, A. and Maheshwari, S. T. (2003). Dissipation of sulfosulfuron in soil and

wheat plant under predominant cropping conditions and in a simulated model

ecosystem. J Agric Food Chem 1(11): 3396-3400.

Ramesh, A., Sathiyanarayanan, S. and Chandran, L. (2007). Dissipation of

sulfosulfuron in water-bioaccumulation of residues in fish- LC-MS/MS-ESI

identification and quantification of metabolites. Chemosphere 68(3): 495-500.

Ratcliff, A. W., Busse, M. D. and Shestakm, C. J. (2006). Changes in microbial

community structure following herbicide (glyphosate) addition to forest soils. Appl

Soil Ecol 34: 114-124.

Page 22: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

114

Ratnadass, A., Fernandes, P., Avelino, J., Habib, R. (2012). Plant species

diversity for sustainable management of crop pests and diseases in agroecosystems: a

review. Agron Sustain Dev 32: 273-303.

Ribeiro, F., Ferreira, N. C., Soares, A. M. and Loureiro, S. (2011). Is ultraviolet

radiation a synergestic stressor in combined exposure? The case study of Daphnia

magna exposure to UV and Carbendaim. Aquat Toxicol 102(1-2): 114-122.

Ribeiro, M. G., Colasso, C. G., Monteiro, P. P., Filho, W. R. P. and Yonamine,

M. (2012). Occupational safety and health practices among flower greenhouses

workers from Alto Tietê region (Brazil). Sci Total Environ 416: 121–126.

Robinson, H. J., Silber, R. H. and Graessle, O. E. (1969). Thiabendazole:

toxicological, pharmacological and antifungal properties. Tex Rep Biol Med 27(2):

537.

Ros, M., Goberna, M., Moreno, J. L., Hernandez, T., Garcia, C., Insam, H.,

Pascual, J. A., (2006). Molecular and physiological bacterial diversity of a semi-arid

soil contaminatedwith different levels of formulated atrazine. Appl Soil Ecol 34: 93-

102.

Saha, S. and Kulshrestha, G. (2002). Degradation of sulfosulfuron, a sulfonylurea

herbicide, as influenced by abiotic factors. J Agric Food Chem 50(16): 4572-5.

Saha, S., Singh, S. B. and Kulshrestha, G. (2003). High Performance Liquid

Chromatography method for Residue Determination of Sulfosulfuron. J Enviro Sci

and Health B 38(3): 337-47.

Saien, J. and Khezrianjoo, S. (2008). Degradation of the fungicide carbendazim in

aqueous solutions with UV/TiO2 process: Optimization, kinetics and toxicity studies.

J Hazard Mat 157(2-3): 269-76.

Page 23: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

115

Santin-Montaya, I., Alonso-Prados, J. L., Villarroya, M. and Garcia-Baudin, J.

M. (2006). Bioassay for determining sensitivity to sulfosulfuron on seven plant

species. J Environ Sci Health B 41(6): 781-93.

Sara, M., Somayyeh, K. M. and Mohammad, A. (2013). Environmental and

Population Studies Concerning Exposure to Pesticides in Iran: A Comprehensive

Review. Iran Red Cres Med J 2013 December; 15(12): e13896.

Sarmah, A. K. and Sabadie, J. (2002). Hydrolysis of sulfonylurea herbicides in

soils and aqueous solutions: a review. J Agric Food Chem 50(22): 6253-65.

Schoknecht, U., Gruycheva, J., Mathies, H., Bergmann, H. and Burkhardt, M.

(2009). Leaching of biocides used in facade coatings under laboratory test

conditions. Environ Sci Toxicol 43(24): 9321-8.

Selvaraj, S., Basavaraj, B. and Hebsur, N. S. (2014). Pesticides use and their

residues in soil, grains and water of paddy ecosystem- a review. 35(1): 50-56.

Seo, Y. H, Cho, T. H., Hong, C. K., Kim, M. S., Cho, S. J., Park, W. H., Hwang,

I. S. and Kim, M. S. (2013). Monitoring and Risk Assessment of Pesticide Residues

in Commercially Dried Vegetables. Prev Nutr Food Sci 18(2): 145-149.

Serim, A. T. and Maden, S. (2011). Determination of sulfosulfuron and

mesosulfuron+iodosulfuron residue in soil by sunflower seedling bioassay. Bitki

Koruma Bulteni 51(1): 77-90.

Serim, A. T. and Maden, S. (2013). Effects of soil residues of Sulfosulfuron and

Mesosulfuron Methyl + Iodosulfuron Methyl Sodium on Sunflower varieties. J Agri

Sci 20: 1-9.

Page 24: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

116

Shakhaoat, H., Alamgir, H., Abdur, R., Mainul, I., Atiqur, R. and Tanveer, M.

A. (2013). Health Risk Assessment of Pesticide Residues via Dietary Intake of

Market Vegetables from Dhaka, Bangladesh. Foods 2: 64-75.

Sheir-Neiss, G., Lai, M. H., Morris, N. R. (1978). Identification of a gene for beta-

tubulin in Aspergillus nidulans. Cell 15(2): 639-47.

Shen, J., Liu, J. and Liu, J. (2009). Determination of Carbendaim residue in orange

and soil using high performance liquid chromatography. Se Pu 27(3): 308-12.

Singh, K., Brajesh, K., Walker, A., Alum, J., Morgan, W. and Wright, D. J.

(2004). Biodegradation of chlorpyriphos by Enterobacter strain B-14 and its use in

biodegradation of contaminated soils. Appl Environ Microbiol 70: 4855-4863.

Singh, N. and Singh, S. B. (2012). Sorption-desorption behaviour of metsulfuron-

methyl and sulfosulfuron in soils. J Environ Sci Health B 47(3): 168-74.

Singh, S. B. and Kulshrestha, G. (2007). Determination of sulfosulfuron residues in

soil under wheat crop by a novel and cost effective method and evaluation of its

carryover effect. J Environ Sci Health 42(1): 27-31.

Singhal, L. K., Bagga, S., Kumar, R. and Chauhan, R. S. (2003). Down regulation

of humoral immunity in chickens due to carbendazim. Toxicol In Vitro 17(5-6): 687-

92.

Sohair, A. G., Thabet, W. M. and Salama, E. Y. (2014). Monitoring and Risk

Assessment of Pesticide Residues in Some Egyptian Vegetables. Middle East Journal

of Applied Sciences 3(4): 216-230.

Sondhia, S. (2008). Persistence and leaching of sulfosulfuron in wheat (Triticum

aestivum). Ind J Agri Sci 79(6): 484-87.

Page 25: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

117

Sondhia, S. and Singhai, B. (2008). Persistence of sulfosulfuron under wheat

cropping system. Bull Environ Contam Toxicol 80(5): 423-7.

Srinivasulu, M., Jaffer, M. G., Subramanyam, K. and Rangaswamy, V. (2011).

Effect of insecticide alone and in comination with fungicides on nitrification and

phosphatase activity in two groundnut (Arachis hypogeae L.) soils. Environ

Geochem Health 34(3): 365-74.

Subhani, Q., Huang, Z., Zhu, Z. and Zhu,Y. (2013). Simultaneous determination

of imidacloprid and carbendazim in water samples by ion chromatography with

fluorescence detector and post-column photochemical reactor. Talanta 116: 127-32.

Taware, M. R., Gholve, V. M. and Dey, U. (2014). Bio-efficacy of fungicides,

bioagents and plant extracts/botanicals against Alternaria carthami, the causal agent

of alternaria blight of safflower (Carthamus tinctorius L.). Afr J Microbiol Res 8(13):

1400-1412.

Thapar, S., Bhushan, R. and Mathur, R. P. (1995). Degrdation of

organophosphorous pesticides in soils—HPLC determination. Biomed Chromatogr

9(1): 18-22.

Tian, L. and Chen, F. (2009). Characterization of a carbendazim-degrading

Trichoderma sp. T2-2 and its application in bioremediation. Acta Microbiol Sinica

49(7): 925-930.

Tortilla, G. R., Mella-Herrera, R. A., Sousa, D. Z., Rubilar, O., Briceno, G.,

Parra, L. and Diez, M. C. (2013). Carbendazim dissipation in the biomixture of on-

farm biopurification systems and its effect on microbial communities. Chemosphere

93(6): 1084-93.

Page 26: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

118

Undabeytia, T., Mishael, Y. G., Papahadjopoulos, S. B., Rubin, B., Morillo, E.

and Maqueda, C. (2003). A novel system for reducing leaching from formulations

of anionic herbicides: clay-liposomes. Environ Sci Technol 37(19): 4475-80.

Utture, S. C., Banerjee, K., Dasgupta, S., Patil, S.H., Jadhav, M.R., Wagh, S.S.,

Kolekar, S.S., Anuse, M.A. and Adsule, P.G. (2011). Dissipation and distribution

behaviour of azoxystrobin, carbendazim and difenoconazole in pomengrate fruits. J

Agric Food Chem 59(14): 7866-73.

Van den B. H., Rochette, F. and Hörig, C. (1982). Mebendazole and related

anthelmintics. Adv Pharmacol Chemother 19: 67-128.

Veneziano, A., Vacca, G., Arana, S., Simone, F. D. and Rastrelli, L. (2004).

Determination of carbendazim, thiabenzimidazole and thiophenate-methyl in banana

(Musa acuminate) samples imported to Italy. Food Chem 87(3): 383-86.

Viktorov, A. V. and Yurkiv, V. A. (2013). Effects of carbendazim on kupffer cell

functioning. Bull Exp Biol Med 154(4): 438-40.

Viswanathan, P. N. (1985). Environmental toxicology in India. Biol Mem 11: 88–

97.

Walia, U. S. and Brar, L.S. (2006). Current status of Phalaris minor resistance

against isoproturon and alternate herbicides in the rice-wheat cropping systems in

Punjab. Ind J Weed Sci 38(3&4): 207-212.

Walia, U. S., Brar, L.S. and Dhaliwal, B. K. (1997). Resistance to isoproturon in

Phalaris minor Ritz. in Punjab. Plant Prot Quart 12: 138-140.

Walia, U. S., Kaur, R. and Kler, D. S. (2000). Determining residual effects of new

herbicides applied to control Phalaris minor from wheat on the succeeding crops

through bioassay. Environ Ecol 18(1): 130-33.

Page 27: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

119

Wang, J. X., and Zhou, M. G. (2002). Methods for monitoring resistance of

Gibberella zeae to carbendazim. Acta Phyto Sin 29:73-77.

Wang, J., Cheung W. and Chow, W. (2013). Ultra-high performance liquid

chromatography/ electrospray ionization-tandem mass spectrometry determination of

151 pesticides in soybeans and pulses. J AOAC Int 96(5): 1114-33.

Wang, J., Xu, J., Li, Y.,; Wang, K.; Wang, Y., Hong, Q., Li, W. J. and Li, S. P.

(2010). Rhodococcus jiangilae sp. nov., an actinobacterium isolated from

carbendazim wastewater treatment facility. International J Sys Evol Microbiol 60:

378–381.

Wang, L. (1999). Current situation and future trend of farm chemical industry in

China. Chem 38: 1–8.

Wang, X., Song, M., Gao, C., Dong, B., Zhang, Q., Fang, H. and Yu, Y. (2009).

Carbendazim induces a temporary change in soil bacterial community structure. J

Environ Sci 21(12): 1679-1683.

Wang, Y. S., Huang, Y. J., Chen, W. C. and Yen, J. H. (2009). Effect of

carbendazim and pencycuron on soil bacterial community. J Hazard meter 172(1):

84-91.

Weyers, A., Sokull-Kluttgen, B., Knacker, T., Martin, S. and Van, Gestel, C. A.

(2004). Use of terrestrial model ecosystem data in environmental risk assessment for

industrial chemicals, biocides and plant protection products in the EU. Ecotoxicol 13:

163–176.

Wiest, L., Bulete, A., Giroud, B., Fratta, C., Amic, S., Lambert, O., Pouliquen,

H. and Arnaudguilhem, C. (2011). Multi-residue analysis of 80 environmental

Page 28: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

120

contaminants in honeys, honeybees and pollens by one extraction procedure followed

by liquid and gas chromatography coupled with mass spectrometric detection. J

Chromatogr A 1218(34): 5743-56.

WHO (World Health Organization in collaboration wit h UNEP), (1990). Public

Health Impact of Pesticides Used in Agriculture; WHO: Geneva, Switzerland, pp: 1-

129.

Wood, J. S. (1982). Genetic effects of methyl benzimidazole-2-yl-carbamate on

Saccharomyces cerevisiae. Mol Cell Biol 2(9): 1064-79.

Xia, X. J., Zhang, Y., Wu, J. X., Wang, J. T., Zhou, Y. H., Shi, K., Yu, Y. L. and

Yu, J. Q. (2009). Brassinosteroids promote metabolism of pesticides in cucumber. J

Agric Food Chem 57(18): 8406-13.

Xiao, W., Wang, H., Li, T., Zhu, Z., Zhang, J., He, Z. and Yang, X. (2012).

Bioremediation of Cd and carbendazim co-contaminated soil by Cd-

hyperaccumulator Sedum alfredii associated with carbendazim-degrading bacterial

strains. Environ Sci Pollut 12: 0902-4.

Xiao, W. D., Yang, X. E. and Li, T. Q. (2012). Degradation of carbendazim in addy

soil and its influencing factors. Huan Jing Ke Xue 33(11): 3983-9.

Xu, J. L., Gu, X. Y., Shen, B., Wang, Z. C., Wang, K., Li, S. P. (2005). Isolation

and characterization of a MBC-degrading Rhodococcus sp. Djl-6. Curr Microbiol

53:72-76.

Xu, J., Gu, X., Shen, B., Wang, Z., Wang, K. and Li, S., (2006). Isolation and

characterization of Carbendazim-Degrading Rhodococcus sp. djl-6. Curr Microbiol

53: 72-76.

Page 29: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

121

Xu, J. L., He, J., Wang, Z. C., Wang, K., Li, W. J., Tang, S. K. and Li, S. P.

(2007). Rhodococcus qingshengii sp. Nov., a carbendazim degrading bacterium. Int J

Sys Evol Microbiol 57, 2754-2757.

Yan, H., Wang, D., Dong, B., Tang, F., Wang, B., Fang, H. and Yu, Y. (2011).

Dissipation of carbendazim and chloramphenicol alone and in combination and their

effect on soil fungal:bacterial ratios and soil enzyme activities. Chemosphere 84(5):

634-41.

Yan, C., Zhang, B., Liu, W., Feng, F., Zhao, Y. and Du, H. (2011). Rapid

determination of sixteen sulfonylurea herbicides in surface water by solid phase

extraction cleanup and ultra-high-pressure liquid chromatography coupled with

tandem mass spectrometry. J Chromatogr B Analyt Technol Biomed Life Sci

879(30): 3489-9.

Yao, L.X., Huang, L.X., Li, G.L., He, Z.H., Zhou, C.M., Yang, B.M. and Guo, B.

(2010). Pesticide residual status in litchi orchard soils in Guangdong, China. Huan

Jing Ke Xue 31(11): 2723-6.

Yarden, O., Katan, J. and Aharonson, N. (1985). A rapid bioassay for the

determination of carbendazim residues in soil. Plant Pathol 34: 69–74.

Yu, G., Guo, Q., Xie, L., Liu, Y. and Wang, X. (2009). Effects of subchronic

exposure to carbendazim on spermatogenesis and fertility in male rats. Toxicol Ind

Health 25(1): 41-7.

Yu, G. C., Xie, L., Liu, Y. Z. and Wang, X. F. (2009). Carbendazim affects

testicular development and spermatogenic function in rats. Zhonghua Nan Ke Xue

15(6): 505-10.

Page 30: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

122

Yu, L. (2006). A review on development of pesticides industry in China. Mark. Inf

Pestic 24: 14–16.

Yu, O.; Nelson, J. K.; Zheng, M. Q., Jackson, M. and Powles, S. B. (2007).

Molecular characterization of resisitance to ALS-inhibiting herbicides in Hordeum

leporinum biotypes. Pest Manag Sci 63(9): 918-27.

Yu, Y., Chu, X., Pang, G., Xiang, Y. and Fang, H. (2009). Effects of repeated

applications of fungicide carbendazim on its persistence and microbial community in

soil. J Environ Sci 21(2): 179-185.

Zhang, G. S., Jia, X. M., Cheng, T. F., Ma, X. H., Zhao, Y. H. (2005). Isolation

and characterization of a new carbendaim-degrading Ralstonia sp. Strain. Wor J

Microbiol Biotech 21:265-269

Zhang, J. (2001). A study on strategy of plant protection development. Plant Protect

27: 36–37.

Zhang, L.; Qiao, X. and Ma, L. (2009). Influence of environmental factors on

degradation of carbendazim by Bacillus pumilus strain NY97-1. Int J Environ Pol

38(3): 309-317.

Zhang, J., Song, N., Li, H., He, J. and Shan, Z. (2012). Environmental behaviour

of sulfosulfuron in soil. Agrochem 12.

Zhang, W., Jiang, F. and Feng, O. J. (2011). Global pesticide consumption and

pollution: with China as a focus. Proceedings of the International Academy of

Ecology and Environmental Sciences. 1(2): 125-144.

Zhang, X. J., Huang, Y. J., Zhao, X. Y., Ren, Y., Li, H. M., Li, J. S. and Yang,

H. T. (2012). Cloning of carbendazim-degrading gene of Rhodococcus erythropolis

Page 31: certificate ridhi-edited 24-06-2015 - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/80158/14/14_bibliography.pdf(2000). Impact of the fungicide carbendazim in freshwater microcosms

Bibliography

123

str. Djl-11 and metabolite analysis. The proceedings of Chinese Society for Plant

Protection, Beijing, China. 24-27 October 2012, 608.

Zhang, X., Huang, Y., Harvey, P. R., Li, H., Ren, Y., Li, J., Wang, J., Yang, H.

(2013). Isolation and characterization of MBC degrading Rhodococcus erythropolis

djl-11. Plos One 8(10):1-6

Zhu, S. H., Wu, H. L., Xia, A. L., Han, Q. J. and Zhang, Y. (2007). Determination

of carbendazim in bananas by excitation-emission matrix fluorescence with three

second-order calibration methods. Anal Sci 23(10): 1173-7.

Zuelke, K. A. and Perreault, S. D. (1995). Carbendazim (MBC) disrupts oocyte

spindle function and induces aneuploidy in hamsters exposed during fertilization

(meiosis II). Mol Reprod Dev 42: 200–209.

Zhichun, W.; Jingliang, X.; Yan, Li.; Kun, W.; Yang yang., W.; Qing, H.; Li, W.

and Li. S. (2010). Rhodococcus jialingiae sp. nov., an actinobacterium isolated from

sludge of a carbendazim wastewater treatment facility. Int J Sys Evol Microbiol 60:

371-381.

Zou, G., Ying, S. H., Shen, Z. C., Feng, M.G. (2006). Multi-sited mutations of

beta-tubulin are involved in benzimidazole resistance and thermotolerance of fungal

biocontrol agent Beauveria bassiana. Environ Microbiol 8(12): 2096-105.