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Bibliographic Details
Main Authors: Xu, Luoliang, Embke, Holly S, Free, Christopher M, Hansen, Gretchen J A, Lynch, Abigail J, Paukert, Craig P, Sievert, Nicholas A, Jensen, Olaf P
Format: Artículo científico
Language:en
Published: Science advances 2025
Subjects:
Online Access:https://pubmed.ncbi.nlm.nih.gov/41032593/
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author Xu, Luoliang
Embke, Holly S
Free, Christopher M
Hansen, Gretchen J A
Lynch, Abigail J
Paukert, Craig P
Sievert, Nicholas A
Jensen, Olaf P
author_facet Xu, Luoliang
Embke, Holly S
Free, Christopher M
Hansen, Gretchen J A
Lynch, Abigail J
Paukert, Craig P
Sievert, Nicholas A
Jensen, Olaf P
Xu, Luoliang
Embke, Holly S
Free, Christopher M
Hansen, Gretchen J A
Lynch, Abigail J
Paukert, Craig P
Sievert, Nicholas A
Jensen, Olaf P
collection PubMed - marine biology
contents Disentangling the historical impacts of warming and fishing on exploited freshwater fish populations. Xu, Luoliang Embke, Holly S Free, Christopher M Hansen, Gretchen J A Lynch, Abigail J Paukert, Craig P Sievert, Nicholas A Jensen, Olaf P Animals Fishes Fisheries Fresh Water Population Dynamics Temperature Global Warming Ecosystem Lakes Climate Change Worldwide, exploited fish populations are increasingly affected by the combined effects of warming and fishing. Disentangling the relative effects of these factors is challenging yet crucial for designing management strategies. We used a temperature-dependent population dynamics model to assess the impacts of lake warming and fishing on 521 freshwater fish populations in the Midwestern United States-a transitional zone between cold- and warmwater species. Overall, most warmwater species (65% of populations) exhibited increases in productivity from warming, while slightly more than half of the cool-/cold-water species (53% of populations) experienced reduced productivity. Populations closer to their carrying capacity showed greater resilience to warming. For the majority of populations (92%), fishing had a more pronounced effect on population dynamics than warming during the time period examined. Therefore, while warming is likely to increasingly threaten many fish populations, effective local fishery management remains a key lever to mitigate these impacts.
format Artículo científico
id pubmed_41032593
institution PubMed
language en
publishDate 2025
publisher Science advances
record_format pubmed
spellingShingle Disentangling the historical impacts of warming and fishing on exploited freshwater fish populations.
Xu, Luoliang
Embke, Holly S
Free, Christopher M
Hansen, Gretchen J A
Lynch, Abigail J
Paukert, Craig P
Sievert, Nicholas A
Jensen, Olaf P
Animals
Fishes
Fisheries
Fresh Water
Population Dynamics
Temperature
Global Warming
Ecosystem
Lakes
Climate Change
Disentangling the historical impacts of warming and fishing on exploited freshwater fish populations. Xu, Luoliang Embke, Holly S Free, Christopher M Hansen, Gretchen J A Lynch, Abigail J Paukert, Craig P Sievert, Nicholas A Jensen, Olaf P Animals Fishes Fisheries Fresh Water Population Dynamics Temperature Global Warming Ecosystem Lakes Climate Change Worldwide, exploited fish populations are increasingly affected by the combined effects of warming and fishing. Disentangling the relative effects of these factors is challenging yet crucial for designing management strategies. We used a temperature-dependent population dynamics model to assess the impacts of lake warming and fishing on 521 freshwater fish populations in the Midwestern United States-a transitional zone between cold- and warmwater species. Overall, most warmwater species (65% of populations) exhibited increases in productivity from warming, while slightly more than half of the cool-/cold-water species (53% of populations) experienced reduced productivity. Populations closer to their carrying capacity showed greater resilience to warming. For the majority of populations (92%), fishing had a more pronounced effect on population dynamics than warming during the time period examined. Therefore, while warming is likely to increasingly threaten many fish populations, effective local fishery management remains a key lever to mitigate these impacts.
title Disentangling the historical impacts of warming and fishing on exploited freshwater fish populations.
topic Animals
Fishes
Fisheries
Fresh Water
Population Dynamics
Temperature
Global Warming
Ecosystem
Lakes
Climate Change
url https://pubmed.ncbi.nlm.nih.gov/41032593/