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1.
J Fish Biol ; 92(3): 804-827, 2018 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-29537086

RESUMO

Populations of fishes provide valuable services for billions of people, but face diverse and interacting threats that jeopardize their sustainability. Human population growth and intensifying resource use for food, water, energy and goods are compromising fish populations through a variety of mechanisms, including overfishing, habitat degradation and declines in water quality. The important challenges raised by these issues have been recognized and have led to considerable advances over past decades in managing and mitigating threats to fishes worldwide. In this review, we identify the major threats faced by fish populations alongside recent advances that are helping to address these issues. There are very significant efforts worldwide directed towards ensuring a sustainable future for the world's fishes and fisheries and those who rely on them. Although considerable challenges remain, by drawing attention to successful mitigation of threats to fish and fisheries we hope to provide the encouragement and direction that will allow these challenges to be overcome in the future.


Assuntos
Conservação dos Recursos Naturais/métodos , Pesqueiros , Peixes/fisiologia , Animais , Ecossistema , Peixes/crescimento & desenvolvimento , Dinâmica Populacional , Qualidade da Água
2.
Sci Rep ; 9(1): 16908, 2019 11 15.
Artigo em Inglês | MEDLINE | ID: mdl-31729401

RESUMO

Ocean acidification (OA), a direct consequence of increasing atmospheric CO2 concentration dissolving in ocean waters, is impacting many fish species. Little is known about the molecular mechanisms underlying the observed physiological impacts in fish. We used RNAseq to characterize the transcriptome of 3 different larval stages of Atlantic cod (Gadus morhua) exposed to simulated OA at levels (1179 µatm CO2) representing end-of-century predictions compared to controls (503 µatm CO2), which were shown to induce tissue damage and elevated mortality in G. morhua. Only few genes were differentially expressed in 6 and 13 days-post-hatching (dph) (3 and 16 genes, respectively), during a period when maximal mortality as a response to elevated pCO2 occurred. At 36 dph, 1413 genes were differentially expressed, most likely caused by developmental asynchrony between the treatment groups, with individuals under OA growing faster. A target gene analysis revealed only few genes of the universal and well-defined cellular stress response to be differentially expressed. We thus suggest that predicted ocean acidification levels constitute a "stealth stress" for early Atlantic cod larvae, with a rapid breakdown of cellular homeostasis leading to organismal death that was missed even with an 8-fold replication implemented in this study.


Assuntos
Gadus morhua/genética , Perfilação da Expressão Gênica , Concentração de Íons de Hidrogênio , Água do Mar/análise , Água do Mar/química , Estresse Fisiológico , Transcriptoma , Animais , Biologia Computacional/métodos , Ontologia Genética , Sequenciamento de Nucleotídeos em Larga Escala , Larva , Osmorregulação
3.
Sci Rep ; 8(1): 8348, 2018 05 29.
Artigo em Inglês | MEDLINE | ID: mdl-29844541

RESUMO

Ocean acidification (OA), the dissolution of excess anthropogenic carbon dioxide in ocean waters, is a potential stressor to many marine fish species. Whether species have the potential to acclimate and adapt to changes in the seawater carbonate chemistry is still largely unanswered. Simulation experiments across several generations are challenging for large commercially exploited species because of their long generation times. For Atlantic cod (Gadus morhua), we present first data on the effects of parental acclimation to elevated aquatic CO2 on larval survival, a fundamental parameter determining population recruitment. The parental generation in this study was exposed to either ambient or elevated aquatic CO2 levels simulating end-of-century OA levels (~1100 µatm CO2) for six weeks prior to spawning. Upon fully reciprocal exposure of the F1 generation, we quantified larval survival, combined with two larval feeding regimes in order to investigate the potential effect of energy limitation. We found a significant reduction in larval survival at elevated CO2 that was partly compensated by parental acclimation to the same CO2 exposure. Such compensation was only observed in the treatment with high food availability. This complex 3-way interaction indicates that surplus metabolic resources need to be available to allow a transgenerational alleviation response to ocean acidification.


Assuntos
Dióxido de Carbono/efeitos adversos , Gadus morhua/metabolismo , Larva/fisiologia , Aclimatação , Animais , Dióxido de Carbono/farmacologia , Mudança Climática , Peixes/metabolismo , Peixes/fisiologia , Gadus morhua/fisiologia , Concentração de Íons de Hidrogênio , Água do Mar
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