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Complex regulation of symbiotic functions is coordinated by MucR and quorum sensing in Sinorhizobium meliloti

Konrad Mueller and Juan E. González

FIG. S1. Differentially expressed genes due to disruption of mucR were analyzed by KeggArray.

Genes differentially expressed greater than 1.5 fold from the microarray of the mucR mutant vs wild-type S. meliloti were analyzed by KeggArray. Green and red pathways indicate decreased and increased expression in the mutant strain compared to wild type, respectively.

FIG. S2. Differentially expressed genes between the planktonic and bacteroid state were analyzed by KeggArray.

Genes differentially expressed greater than 1.5 fold from the microarray of wild-type bacteroid vs planktonic S. meliloti were analyzed by KeggArray. Green and red pathways indicate decreased and increased expression in the bacteroid vs planktonic state, respectively.

FIG. S3. Metabolic pathways affected by the disruption of mucR that were not also observed as differentially expressed in the bacteroid state.

Disruption of mucR in planktonic S. meliloti resulted in few changes in metabolic pathways that were not also differentially affected in the bacteroid state.

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Fig. S1
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Fig. S2
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Fig. S3

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