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Data from: Genetic and life-history changes associated with fisheries-induced population collapse
负责人:
Pukk, Lilian
关键词:
Population Genetics - Empirical Fisheries-Induced Evolution Temporal Trend Population Collapse Population Replacement Eurasian Perch (Perca fluviatilis L.)
DOI:
doi:10.5061/dryad.td237
摘要:
-history traits in the harvested population, which can have drastic negative effects on populations, ecosystems and fisheries. However, most studies to date have overlooked
Data from: 19th-century collapse of a benthic marine ecosystem on the open continental shelf
负责人:
Tomasovych, Adam
关键词:
historical ecology conservation paleobiology amino-acid racemization watershed history community paleoecology land use history
DOI:
doi:10.5061/dryad.0r76j.1
摘要:
mainland continental shelf of Southern California reveal the recent, previously unsuspected extirpation of an extensive offshore shell-gravel ecosystem
Data from: Exploitation and recovery of a sea urchin predator has implications for the resilience of southern California kelp forests
负责人:
关键词:
California sheephead Marine protected areas Recovery from fishing Size-structured trophic interactions
DOI:
doi:10.5061/dryad.79qd9
摘要:
eephead (Semicossyphus pulcher) has affected size-structured interactions with sea urchin prey in southern California. We show that fishing changes size structure by reducing
Data from: Dynamic occupancy modeling reveals a hierarchy of competition among fishers, grey foxes, and ringtails
负责人:
Green, David
关键词:
dynamic occupancy model Jolly-Seber Pekania pennanti source community spatial capture-recapture translocation
DOI:
doi:10.5061/dryad.qb8m4
摘要:
gral for maintaining ecosystem function. 2. We studied the effects of removing 9 fishers (Pekania pennanti) on their population dynamics and used this perturbation
Data from: Catastrophic dynamics limit Atlantic cod recovery
负责人:
Sguotti, Camilla
关键词:
Catastrophe theory stock collapse Atlantic cod stochastic cusp modelling population recovery
DOI:
doi:10.5061/dryad.037jr6v
摘要:
for most cod stocks of the Atlantic Ocean. Moreover, our study contributes to the ongoing discussion on the importance of climate and fishing effects
Data from: Eco-evolution in size-structured ecosystems: simulation case study of rapid morphological changes in alewife
负责人:
Kang, Jung koo
关键词:
Fish Eco-evolution Size-structured ecosystem Individual-based model Ecological power law Contemporary evolution Functional trait Body size Alewife
DOI:
doi:10.5061/dryad.67c7q
摘要:
o the morphological evolution of fish. Predicting the morphological evolution of fish is crucial for fisheries and ecosystem management, but the involvement of multiple
Faunal and vegetation monitoring in response to harbor dredging in Port of Miami
负责人:
关键词:
Environmental Health
DOI:
doi:10.5066/f7jh3kd9
摘要:
Seagrasses are highly productive ecosystems. A before-after-control-impact (BACI) design was used to examine effects of dredging on seagrasses
Data from: Integrating complementary methods to improve diet analysis in fishery-targeted species
负责人:
Matley, Jordan
关键词:
DOI:
doi:10.5061/dryad.4v80379
摘要:
and provides cautionary information regarding the effects that changing resources could have in reef ecosystems.
Data from: Habitat risk assessment for regional ocean planning in the U.S. Northeast and Mid-Atlantic
负责人:
关键词:
Risk assessment;ocean planning;National Ocean Policy;regional planning body;Cumulative impacts;habitat risk;InVEST;Ecosystem-based management (EBM)
DOI:
doi:10.5061/dryad.s5n3c
摘要:
by synthesizing the wealth of available data to improve our understanding of human uses and how they affect marine resources. We find that risk to ecosystems is greate
Data from: Density regulation in Northeast Atlantic fish populations: density dependence is stronger in recruitment than in somatic growth
负责人:
Zimmermann, Fabian
关键词:
Population dynamics Population regulation Life-history strategy Early life stages Marine ecosystems Fisheries ecology
DOI:
doi:10.5061/dryad.d1458
摘要:
her, the results are important from an applied perspective because density dependence in somatic growth affects productivity and catch composition

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