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食物可获得性调节了温度对……生长、繁殖和存活的依赖性影响。

Food availability modulates temperature-dependent effects on growth, reproduction, and survival in .

作者信息

Betini Gustavo S, Wang Xueqi, Avgar Tal, Guzzo Matthew M, Fryxell John M

机构信息

Department of Integrative Biology University of Guelph Guelph ON Canada.

Department of Wildland Resources Utah State University Logan UT USA.

出版信息

Ecol Evol. 2019 Dec 27;10(2):756-762. doi: 10.1002/ece3.5925. eCollection 2020 Jan.

Abstract

Reduced body size and accelerated life cycle due to warming are considered major ecological responses to climate change with fitness costs at the individual level. Surprisingly, we know little about how relevant ecological factors can alter these life history trade-offs and their consequences for individual fitness. Here, we show that food modulates temperature-dependent effects on body size in the water flea and interacts with temperature to affect life history parameters. We exposed 412 individuals to a factorial manipulation of food abundance and temperature, tracked each reproductive event, and took daily measurements of body size from each individual. High temperature caused a reduction in maximum body size in both food treatments, but this effect was mediated by food abundance, such that low food conditions resulted in a reduction of 20% in maximum body size, compared with a reduction of 4% under high food conditions. High temperature resulted in an accelerated life cycle, with pronounced fitness cost at low levels of food where only a few individuals produced a clutch. These results suggest that the mechanisms affecting the trade-off between fast growth and final body size are food-dependent, and that the combination of low levels of food and high temperature could potentially threaten viability of ectotherms.

摘要

由于气候变暖导致的体型减小和生命周期加速被认为是对气候变化的主要生态响应,且在个体层面存在适应性代价。令人惊讶的是,我们对相关生态因素如何改变这些生活史权衡及其对个体适应性的影响知之甚少。在此,我们表明食物调节了水蚤中温度对体型的依赖性影响,并与温度相互作用以影响生活史参数。我们将412只个体暴露于食物丰度和温度的析因实验处理中,追踪每一次繁殖事件,并每天测量每只个体的体型。高温在两种食物处理中均导致最大体型减小,但这种影响受食物丰度的调节,以至于低食物条件下最大体型减小了20%,而高食物条件下仅减小了4%。高温导致生命周期加速,在食物水平较低时适应性代价显著,此时只有少数个体产生一窝后代。这些结果表明,影响快速生长和最终体型之间权衡的机制取决于食物,并且低食物水平和高温的组合可能会威胁变温动物的生存能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/434c/6988562/5f7f2e54a90d/ECE3-10-756-g001.jpg

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