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Life-history evolution in response to changes in metapopulation structure in an arthropod herbivore

机译:节肢动物食草动物中种群结构的变化对生活史的演变

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摘要

The persistence and dynamics of populations largely depend on the way they are configured and integrated into space and the ensuing eco-evolutionary dynamics. We manipulated spatial and temporal variation in patch size in replicated experimental metapopulations of the herbivore mite Tetranychus urticae and followed evolutionary dynamics over approximately 30 generations. A significant divergence in life-history traits, physiological endpoints and gene expression was recorded in the spatially and spatiotemporally variable metapopulation, but also a remarkable convergence relative to the stable reference metapopulation in traits related to size and fecundity and in its transcriptional regulation. The observed evolutionary dynamics are tightly linked to demographic changes, more specifically frequent episodes of resource shortage that increased the reproductive performance of mites on tomato, a challenging host plant. This points towards a general, adaptive stress response in stable spatial variable and spatiotemporal variable metapopulations that pre-adapts a herbivore arthropod to novel environmental stressors.
机译:人口的持久性和动态性很大程度上取决于其配置和融入太空的方式以及随之而来的生态进化动态。我们操纵了草食性螨Tetranychus urticae的重复实验亚群中斑块大小的时空变化,并跟踪了大约30代的进化动力学。生命历史特征,生理终点和基因表达在空间和时空可变的亚群中有显着差异,但相对于稳定的参考亚群而言,与大小和繁殖力及其转录调控相关的特征也有显着的趋同。观察到的进化动力学与人口变化紧密相关,更具体地说,是资源短缺的频繁发作,这增加了螨虫在具有挑战性的寄主植物番茄上的繁殖性能。这指向了在稳定的空间变量和时空变量亚群中的总体适应性应激反应,使食草动物节肢动物预先适应新型环境胁迫。

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