marine population ecology and dynamics

61
Marine Population Ecology and Dynamics ALEXANDRA DAVIS COLE BROOKSON UNIVERSITY OF ALBERTA 13 OCTOBER 2021

Upload: others

Post on 18-Dec-2021

13 views

Category:

Documents


1 download

TRANSCRIPT

Page 1: Marine Population Ecology and Dynamics

Marine Population Ecology and Dynamics

ALEXANDRA DAVIS

COLE BROOKSON

UNIVERSITY OF ALBERTA

13 OCTOBER 2021

Page 2: Marine Population Ecology and Dynamics
Page 3: Marine Population Ecology and Dynamics
Page 4: Marine Population Ecology and Dynamics
Page 5: Marine Population Ecology and Dynamics
Page 6: Marine Population Ecology and Dynamics

Hixon Lab, Corvallis OR

Page 7: Marine Population Ecology and Dynamics

Habitat use and ecological interactions of invasive lionfish in the

Bahamas

Page 8: Marine Population Ecology and Dynamics

Seascape

Individual Community

Page 9: Marine Population Ecology and Dynamics

Seascape

Individual Community

Rugosity Highs & lows Curvature

Depth Seafloor

Page 10: Marine Population Ecology and Dynamics

Invasive species removal plans

and conservation

outcomes

Creating tools and teaching skills to build capacity for

invasive species management

Page 11: Marine Population Ecology and Dynamics

Marine invasive species

Page 12: Marine Population Ecology and Dynamics

Green and Grosholz 2021

95%

80% Invasion occurring at scalebeyond resources for eradication

Lack targets for suppression or ecological recovery

National survey of AIS managers and practitioners

Page 13: Marine Population Ecology and Dynamics

Study speciesPACIFIC LIONFISH

BAHAMAS AND FLORIDA

EUROPEAN GREEN CRAB

SALISH SEA

Page 14: Marine Population Ecology and Dynamics

Study species✓ Densities too high for eradication- functional eradication approach

✓ Reduction can limit ecosystem and economic impacts

Photo Adrianne AkmajianPhoto Nat Geo

Page 15: Marine Population Ecology and Dynamics

Three components for management:

IdentifyIdentify priority areas for removal

• Where is the invader found?

• Quantify negative effects on native communities

Page 16: Marine Population Ecology and Dynamics

Three components for management:

IdentifyIdentify priority areas for removal

• Where is the invader found?

• Quantify negative effects on native communities

Page 17: Marine Population Ecology and Dynamics

Three components for management:

TargetTarget densities for suppression

• Identify densities of the invader that elicit community effects

• Use these are targets for control

IdentifyIdentify priority areas for removal

• Where is the invader found?

• Quantify negative effects on native communities

Page 18: Marine Population Ecology and Dynamics

Three components for management:

TargetTarget densities for suppression

• Identify densities of the invader that elicit community effects

• Use these are targets for control

IdentifyIdentify priority areas for removal

• Where is the invader found?

• Quantify negative effects on native communities

Page 19: Marine Population Ecology and Dynamics

Three components for management:

PrioritizeUnderstand efficient removal practices and identify targets

• Identify your limitations (time, money, gear, personnel)

• Subset priority locations based on valued resources

TargetTarget densities for suppression

• Identify densities of the invader that elicit community effects

• Use these are targets for control

IdentifyIdentify priority areas for removal

• Where is the invader found?

• Quantify negative effects on native communities

Page 20: Marine Population Ecology and Dynamics

Three components for management:

Prioritize

Understand efficient removal practices and identify targets

• Identify your limitations (time, money, gear, personnel)

• Subset priority locations based on valued resources

Page 21: Marine Population Ecology and Dynamics

Native distribution

Page 22: Marine Population Ecology and Dynamics
Page 23: Marine Population Ecology and Dynamics

• High feeding & growth rates

• Generalist predator

• Native fish recruitment lowered by up to 90%

• Some local extinctions of native fishes

• High fecundity

Morris & Akins 2009; feeding rate: Côté & Maljkovic 2010, Cure et al 2010, Albins 2015, Ingeman 2016, Pusack et al 2016

Strong negative effects

Page 24: Marine Population Ecology and Dynamics

Managing the invasion

Page 25: Marine Population Ecology and Dynamics

Regional coordination

Management intervention

Page 26: Marine Population Ecology and Dynamics

Data collection for three years in four jurisdictions

c

Davis et al. 2021- Con Sci Prac

Page 27: Marine Population Ecology and Dynamics

Limitations for efficient removal

Invader (Lionfish)Density, behavior, and position on the reef

HabitatDepth and distance from shore

Complexity and habitat composition

RemovalType of gear used

Experience of the remover

Davis et al. 2021- Con Sci Prac

Page 28: Marine Population Ecology and Dynamics

Limitations for efficient removal

Invader (Lionfish)Density, behavior, and position on the reef

HabitatDepth and distance from shore

Complexity and habitat composition

RemovalType of gear used

Experience of the remover

Davis et al. 2021- Con Sci Prac

Page 29: Marine Population Ecology and Dynamics

Limitations for efficient removal

Invader (Lionfish)Density, behavior, and position on the reef

HabitatDepth and distance from shore

Complexity and habitat composition

RemovalType of gear used

Experience of the remover

Davis et al. 2021- Con Sci Prac

Page 30: Marine Population Ecology and Dynamics

Limitations for efficient removal

Invader (Lionfish)Density, behavior, and position on the reef

HabitatDepth and distance from shore

Complexity and habitat composition

RemovalType of gear used

Experience of the remover

Davis et al. 2021- Con Sci Prac

Environment Cloud cover, currents/ tides, time of day

Page 31: Marine Population Ecology and Dynamics

Implications for management: what saves time?

Page 32: Marine Population Ecology and Dynamics

Implications for management: what saves time?• Invader (Lionfish)

• ↑Size

• ↑Density

• Remover experience

• Environment• Time of day

Removing lionfish at dawn and dusk takes 1 minute less per fish for all experience levels!

Davis et al. 2021- Con Sci Prac

Page 33: Marine Population Ecology and Dynamics

Davis 2019, MEPS Image modified from Courtney Stewart

CurrentlyModels to predict high densities of lionfish and recolonization rates

Page 34: Marine Population Ecology and Dynamics

Juvenile fish habitat Marine Protected Areas

Next stepsAdd in management priorities and valued resources

◦ Fisheries species

◦ Reefs with high coral cover or biodiversity

Page 35: Marine Population Ecology and Dynamics

European Green Crab (Carcinus maenas)• A single female green crab can produce 185,000 eggs in a single year

• Green crabs eat a wide variety of shellfish, preying on oyster, clam, mussel, lobster, and crab populations across the world

• While foraging for food green crabs “slice” through eelgrass, destroying the plant. Eelgrass provides nursery habitat for juvenile fish and shellfish and in turn serves as feeding ground for many migratory bird species and sea turtles

greencrab.org

Page 36: Marine Population Ecology and Dynamics

Range expanding

Page 37: Marine Population Ecology and Dynamics

Salish Sea Case Study

1. Model comparisona) Predictive models for likelihood, or hotspots

of green crab

b) This still gives us 500+ sites in the Salish Sea alone

2. Stakeholder surveya) This survey is designed to collect information

where management for EGC is happening, what valued resources may be affected by the presence of EGC, and what types of additional resources or data are needed to help improve management strategies.

Page 38: Marine Population Ecology and Dynamics

What do you want to conserve?

Economic resource

Ecological resource

Cultural resource

Page 39: Marine Population Ecology and Dynamics

Spatial extent of removal

https://www.epa.gov/salish-sea/shellfish-harvesting

Page 40: Marine Population Ecology and Dynamics

Collaboration on Green CrabTom Therriault and Brett Howard– Fisheries and Ocean Canada

Chelsey Buffington- Washington Dept of Fisheries and Wildlife

Emily Grason- Washington Sea Grant Green Crab Team

Tammy Davis- Alaska Invasive Species Partnership

Many others!

Survey Link:

https://ualbertadbs.ca1.qualtrics.com/jfe/form/SV_elDW05IEnT

tjqqW

Page 41: Marine Population Ecology and Dynamics
Page 42: Marine Population Ecology and Dynamics
Page 43: Marine Population Ecology and Dynamics
Page 44: Marine Population Ecology and Dynamics
Page 45: Marine Population Ecology and Dynamics
Page 46: Marine Population Ecology and Dynamics

Science is about

relationships

Page 47: Marine Population Ecology and Dynamics
Page 48: Marine Population Ecology and Dynamics

Are microplastics present in the guts of

nestling cormorants?

Brookson et al. (2019); Rochman, Brookson et al. (2019)

Page 49: Marine Population Ecology and Dynamics

What is the beta-diversity of breeding birds in Southern Ontario?

Page 50: Marine Population Ecology and Dynamics

How do parasite loads differ between parasite species and host species in wild Pacific salmon?

Brookson et al. (2019)

Page 51: Marine Population Ecology and Dynamics

Bayesian dynamic energy budget toxicology models to scale individual-level toxicology data to population-level effects

Brookson et al. (in Revisions)

Page 52: Marine Population Ecology and Dynamics
Page 53: Marine Population Ecology and Dynamics

Trait-based models to understand near-and long-term dynamics of food web rewiring under global change

Brookson et al. (in Prep)

Page 54: Marine Population Ecology and Dynamics

High-dimensional algebraic methods for identifying trait-based shifts in Albacore tuna

Brookson et al. (in Prep)

Page 55: Marine Population Ecology and Dynamics

How can within-host responses to parasite proliferation be modeled using classic predator-prey models?

Jarvis-Cross et al. (in Prep)

Page 56: Marine Population Ecology and Dynamics

What am I doing next...

Peacock et al.

(2013)

Page 57: Marine Population Ecology and Dynamics

Other things I sometimes do...

⚫ Think about open science practices

⚫ Try to further computational education in the biosciences

⚫ Freelance software development

⚫ Coach basketball

⚫ 5 million other jobs...

Page 58: Marine Population Ecology and Dynamics

Does conservation science practice what it preaches?

⚫ 20,000+ papers sampled

⚫ >1300 journals investigated

⚫ >500 NGOs, Government agencies, colleges & universities contacted

How “open” is conservation science?

Brookson & Davis (In Prep)

Page 59: Marine Population Ecology and Dynamics
Page 60: Marine Population Ecology and Dynamics

Office hours and availability ALEX

Lower-level office (usually occupied by Aneri)

Bad at checking slack especially after 4pm when her brain goes into atrophy

WILL check slack and email every morning before starting

COLE

Office space TBD but will literally live there

Always on his phone bc he is a dumb bi*ch

Manically replies to messages

Page 61: Marine Population Ecology and Dynamics

Tell us about yourself!

Name

Pronouns

University and major

Why you decided to come to Bamfield

DS project

Future goals

One thing you are looking forward to in MPED