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Habitat-specific differences alter traditional biogeographic patterns of life history in a climate-change induced range expansion

机译:在气候变化引起的范围扩大中生境特定的差异改变了生活史的传统生物地理模式

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摘要

Range shifts and expansions resulting from global climate change have the potential to create novel communities with unique plant-animal interactions. Organisms expanding their range into novel biotic and abiotic environments may encounter selection pressures that alter traditional biogeographic patterns of life history traits. Here, we used field surveys to examine latitudinal patterns of life history traits in a broadly distributed ectotherm (mangrove tree crab Aratus pisonii) that has recently experienced a climate change-induced range expansion into a novel habitat type. Additionally, we conducted laboratory and field experiments to investigate characteristics associated with these life history traits (e.g. fecundity, offspring quality, and potential selection pressures). We compared these characteristics in native mangrove habitats in which the species has historically dwelled and novel salt marsh habitats into which the species has recently expanded its range. Consistent with traditional biogeographic concepts (i.e. Bergmann’s clines), size at maturity and mean body size of reproductive females increased with latitude within the native habitat. However, they decreased significantly in novel habitats at the highest latitudes of the species’ range, which was consistent with habitat-specific differences in both biotic (predation) and abiotic (temperature) selection pressures. Although initial maternal investment (egg volume and weight) did not differ between habitats, fecundity was lower in novel habitats as a result of differences in size at reproduction. Offspring quality, as measured by larval starvation resistance, was likewise diminished in novel habitats relative to native habitats. These differences in offspring quality may have enduring consequences for species success and persistence in novel habitats. Life history characteristics such as those investigated here are fundamental organismal traits; consequently, understanding the potential impacts of climate change responses on latitudinal patterns of these traits is key to understanding climate change impacts on natural systems.
机译:全球气候变化导致的范围变化和扩大,有可能建立具有独特的动植物互动关系的新型社区。生物将其范围扩大到新的生物和非生物环境中时,可能会遇到选择压力,从而改变生活史特征的传统生物地理模式。在这里,我们使用野外调查来研究分布广泛的等温线(红树林蟹Aratus pisonii)的生活史特征的纬度模式,该等温线最近经历了气候变化导致的范围扩展为新型生境类型。此外,我们进行了实验室和野外实验,以调查与这些生活史特征相关的特征(例如,繁殖力,后代质量和潜在的选择压力)。我们比较了该物种历史悠久的本地红树林生境和该物种最近扩展其范围的新型盐沼生境的这些特征。与传统的生物地理学概念(即Bergmann氏族)相一致,在当地栖息地中,随着年龄的增长,生殖雌性的体型和平均体型随纬度的增加而增加。但是,它们在该物种范围的最高纬度的新栖息地中显着减少,这与生物(捕食)和非生物(温度)选择压力中特定于栖息地的差异一致。尽管不同生境之间的初始母体投资(蛋的数量和重量)没有差异,但由于繁殖时的大小差异,新生境的繁殖力较低。通过幼虫的抗饥饿性来衡量的后代质量,相对于原生生境,在新的生境中也同样降低了。后代质量的这些差异可能对物种的成功和在新栖息地的持久性产生持久的影响。生命历史特征(如此处调查的特征)是基本的生物特征。因此,了解气候变化对这些特征的纬度格局的潜在影响是了解气候变化对自然系统影响的关键。

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  • 年(卷),期 -1(12),5
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  • 页码 e0176263
  • 总页数 19
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