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Phenotypic plasticity mediates climate change responses among invasive and indigenous arthropods

机译:表型可塑性介导了入侵和本地节肢动物的气候变化响应

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摘要

Synergies between global change and biological invasion have been identified as a major potential threat to global biodiversity and human welfare. The global change-type drought characteristic of many temperate terrestrial ecosystems is especially significant because it will apparently favour invasive over indigenous species, adding to the burden of conservation and compromising ecosystem service delivery. However, the nature of and mechanisms underlying this synergy remain poorly explored. Here we show that in a temperate terrestrial ecosystem, invasive and indigenous springtail species differ in the form of their phenotypic plasticity such that warmer conditions promote survival of desiccation in the invasive species and reduce it in the indigenous ones. These differences are consistent with significant declines in the densities of indigenous species and little change in those of invasive species in a manipulative field experiment that mimicked climate change trends. We suggest that it is not so much the extent of phenotypic plasticity that distinguishes climate change responses among these invasive and indigenous species, as the form that this plasticity takes. Nonetheless, this differential physiological response provides support for the idea that in temperate terrestrial systems experiencing global change-type drought, invasive species may well be at an advantage relative to their indigenous counterparts.
机译:全球变化与生物入侵之间的协同作用已被确认为对全球生物多样性和人类福祉的主要潜在威胁。许多温带陆地生态系统的全球变化型干旱特征尤为重要,因为它显然比入侵物种更倾向于入侵物种,这增加了保护的负担并损害了生态系统服务的提供。但是,这种协同作用的性质和机制尚不充分探讨。在这里,我们表明,在温带的陆地生态系统中,入侵性和本土跳尾物种的表型可塑性形式不同,从而温暖的条件促进了入侵物种中干燥的存活,并减少了本土物种的干燥。这些差异与模拟气候变化趋势的人工田间实验中土著物种密度的显着下降以及入侵物种的密度变化不大相符。我们认为,区别表型可塑性的程度并不是这些可入侵和本地物种之间气候变化响应的区别,而是这种可塑性所采取的形式。尽管如此,这种不同的生理反应为以下观点提供了支持:在经历全球变化型干旱的温带陆地系统中,相对于其本土同类,入侵物种可能处于有利地位。

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