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Food and heat stress in the California mussel: Evidence for an energetic trade-off between survival and growth

机译:加利福尼亚贻贝的食物和热压力:生存与增长之间进行有力权衡的证据

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摘要

In response to thermal stress, many rocky shore organisms exhibit characteristic physiological changes associated with increased tolerance to subsequent high temperatures. Although presumably adaptive, activation of the heat-shock response requires a significant energetic investment and therefore may impose a trade-off between survival and other life-history traits. We investigated the effects of chronic heat stress and variation in food availability on the relative allocation of resources to competing demographic parameters in the California mussel, Mytilus californianus. Our data support the idea that acclimatory responses to temperature stress can drive trade-offs among traits, as predicted by theory. Chronic heat stress invoked a cost to individuals, expressed as a reduction in shell growth or size-specific tissue mass in the field and laboratory, respectively. At the same time, prior thermal conditioning resulted in higher proportional survival after acute exposure to more extreme temperatures. Overall, mussels receiving less food exhibited poor condition and survival relative to individuals fed more, suggesting that individuals with limited access to resources are at greater risk because they are less able to mitigate potential costs of thermal stress through physiological mechanisms. Accurately forecasting the effects of climate change in rocky intertidal ecosystems will therefore require understanding not just how organisms respond to different temperature regimes, but also how variation in local resource availability modifies those responses.
机译:响应热应力,许多岩岸生物表现出与随后的高温耐受性增强相关的特征性生理变化。尽管可能是适应性的,但热激反应的激活需要大量的精力投入,因此可能会在生存和其他生活史特征之间进行权衡。我们调查了慢性热应激和食物供应量变化对加利福尼亚贻贝Mytilus californianus竞争人口统计学参数的资源相对分配的影响。我们的数据支持这样的观点,即对温度压力的适应性反应可以驱动性状之间的权衡,这是理论所预测的。慢性热应激给个体带来了成本,分别表示为田间和实验室中壳的生长减少或特定大小的组织质量减少。同时,先前的热调节在急性暴露于更极端的温度后导致更高的比例存活。总体而言,与食物较多的贻贝相比,食物较少的贻贝的状况和生存状况较差,这表明获得资源有限的贻贝的风险更大,因为它们无法通过生理机制减轻潜在的热应激成本。因此,要准确预测气候变化对潮间带岩石生态系统的影响,不仅需要了解生物体对不同温度状况的反应方式,还需要了解当地资源可用性的变化如何改变这些响应方式。

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