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在三刺鱼中,平衡繁殖与生存之间的权衡需要行为和基因调控方面的灵活性。

Managing the tradeoff between reproduction and survival requires flexibility in behaviour and gene regulation in three-spined stickleback.

作者信息

Barbasch Tina A, Abuwa Victoria I, Carswell Beth, Bell Alison M

机构信息

Carl R. Woese Institute for Genomic Biology, University of Illinois Urbana Champaign, Urbana, IL 61801, USA.

Department of Evolution, Ecology, and Behavior, University of Illinois Urbana Champaign, Urbana, IL 61801, USA.

出版信息

Proc Biol Sci. 2024 Dec;291(2036):20242296. doi: 10.1098/rspb.2024.2296. Epub 2024 Dec 4.

DOI:10.1098/rspb.2024.2296
PMID:39626756
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11614525/
Abstract

Predators exert a powerful selective force, however, predator avoidance can conflict with other important activities such as attracting mates. Decisions over whether to court mates versus avoiding predators are vital to fitness, yet the mechanistic underpinnings of how animals manage such tradeoffs are poorly understood. Here, we investigate the flexibility of behaviour and gene regulation in response to a tradeoff between avoiding predators (survival) and courting potential mates (reproduction) in three-spined stickleback (). We compared behavioural and transcriptomic responses of male sticklebacks faced with a courtship opportunity and cues of a predator simultaneously with the responses of males faced with a courtship opportunity or cues of a predator alone, and found that males behaviourally compromised courtship in favour of predator avoidance when faced with a tradeoff between them. The need to manage this tradeoff elicited dynamic changes in brain gene expression, and sets of functionally connected genes were organized into discrete modules based on co-expression. Additionally, we found that behavioural flexibility in response to tradeoffs corresponded to flexibility in gene regulatory network structure. Combined, these results uncover the coordinated response by the brain to a fundamental ecological tradeoff, providing insight into the structure and function of genetic networks underpinning how animals make fitness-influencing decisions.

摘要

然而,捕食者会施加强大的选择压力,而躲避捕食者可能会与吸引配偶等其他重要活动产生冲突。在求偶与躲避捕食者之间做出的决策对适应性至关重要,但动物如何权衡此类取舍的机制基础却知之甚少。在此,我们研究了三刺鱼在躲避捕食者(生存)和向潜在配偶求偶(繁殖)之间权衡时行为和基因调控的灵活性。我们比较了同时面对求偶机会和捕食者线索的雄性刺鱼与仅面对求偶机会或捕食者线索的雄性刺鱼的行为和转录组反应,发现雄性在面临两者之间的权衡时,会在行为上牺牲求偶以利于躲避捕食者。应对这种权衡的需求引发了大脑基因表达的动态变化,基于共表达,功能相关的基因集被组织成离散的模块。此外,我们发现应对权衡时行为的灵活性与基因调控网络结构的灵活性相对应。综合来看,这些结果揭示了大脑对基本生态权衡的协调反应,为理解支撑动物做出影响适应性决策的遗传网络的结构和功能提供了见解。

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本文引用的文献

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A distinct neurogenomic response to a trade-off between social challenge and opportunity in male sticklebacks ().雄性棘鱼()在社会挑战和机遇之间权衡时表现出明显的神经基因组反应。
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