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海洋温度变化的代际效应:多棘刺鱼早期生活的获益是短暂的。

Intergenerational effects of ocean temperature variation: Early life benefits are short-lived in threespine stickleback.

机构信息

Coastal Ecology Section, Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research, List, Germany.

出版信息

PLoS One. 2024 Aug 2;19(8):e0307030. doi: 10.1371/journal.pone.0307030. eCollection 2024.

Abstract

Current climate change models predict an increase in temperature variability and extreme events such as heatwaves, and organisms need to cope with consequent changes to environmental variation. Non-genetic inheritance mechanisms can enable parental generations to prime their offspring's abilities to acclimate to environmental change-but they may also be deleterious. When parents are exposed to predictable environments, intergenerational plasticity can lead to better offspring trait performance in matching environments. Alternatively, parents exposed to variable or unpredictable environments may use plastic bet-hedging strategies to adjust the phenotypic variance among offspring. Here, we used a model species, the threespine stickleback (Gasterosteus aculeatus), to test whether putatively adaptive intergenerational effects can occur in response to shifts in environmental variation as well as to shifts in environmental mean, and whether parents employ plastic bet-hedging strategies in response to increasing environmental variation. We used a full-factorial, split-clutch experiment with parents and offspring exposed to three temperature regimes: constant, natural variation, and increased variation. We show that within-generation exposure to increased temperature variation reduces growth of offspring, but having parents that were exposed to natural temperature variation during gametogenesis may offset some early-life negative growth effects. However, these mitigating intergenerational effects do not appear to persist later in life. We found no indication that stickleback mothers plastically altered offspring phenotypic variance (egg size or clutch size) in response to temperature variation. However, lower inter-individual variance of juvenile fish morphology in offspring of increased variation parents may imply the presence of conservative bet-hedging strategies in natural populations. Overall, in our experiment, parental exposure to temperature variation had limited effects on offspring fitness-related traits. Natural levels of environmental variation promoted a potentially adaptive intergenerational response in early life development, but under more challenging conditions associated with increased environmental variation, the effect was lost.

摘要

当前的气候变化模型预测,温度变异性和极端事件(如热浪)将会增加,生物需要应对环境变化带来的相应变化。非遗传继承机制可以使亲代为后代适应环境变化做好准备——但也可能是有害的。当父母暴露在可预测的环境中时,代际可塑性可以使后代在适应环境方面的特征表现更好。或者,暴露在多变或不可预测环境中的父母可能会利用可塑性的风险分散策略来调整后代之间的表型方差。在这里,我们使用了一种模式物种,三刺鱼(Gasterosteus aculeatus),来测试在环境变化以及环境均值变化的情况下,是否会产生适应性的代际效应,以及父母是否会在环境变异性增加的情况下采用可塑性的风险分散策略。我们采用了一种完全因子、分裂孵化实验,其中父母和后代暴露在三种温度条件下:恒定、自然变化和增加变化。我们表明,在代内暴露于增加的温度变化会降低后代的生长速度,但如果亲代在配子发生过程中暴露于自然温度变化中,可能会抵消一些早期生长的负面效应。然而,这些缓解代际效应似乎不会在以后的生活中持续存在。我们没有发现三刺鱼母亲会根据温度变化而改变后代表型方差(卵大小或卵巢大小)的迹象。然而,在增加变异性父母的后代中,幼鱼形态的个体间方差较低,这可能意味着在自然种群中存在保守的风险分散策略。总的来说,在我们的实验中,父母暴露于温度变化对后代与适应度相关的特征的影响有限。自然水平的环境变化促进了早期生命发育中潜在的适应性代际反应,但在与增加的环境变化相关的更具挑战性的条件下,这种效应就会消失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da1f/11296643/818bc3299c94/pone.0307030.g001.jpg

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