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Native drivers of fish life history traits are lost during the invasion process

机译:在入侵过程中,鱼类生活历史特征的本地司机

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Rapid adaptation to global change can counter vulnerability of species to population declines and extinction. Theoretically, under such circumstances both genetic variation and phenotypic plasticity can maintain population fitness, but empirical support for this is currently limited. Here, we aim to characterize the role of environmental and genetic diversity, and their prior evolutionary history (via haplogroup profiles) in shaping patterns of life history traits during biological invasion. Data were derived from both genetic and life history traits including a morphological analysis of 29 native and invasive populations of topmouth gudgeon Pseudorasbora parva coupled with climatic variables from each location. General additive models were constructed to explain distribution of somatic growth rate (SGR) data across native and invasive ranges, with model selection performed using Akaike's information criteria. Genetic and environmental drivers that structured the life history of populations in their native range were less influential in their invasive populations. For some vertebrates at least, fitness‐related trait shifts do not seem to be dependent on the level of genetic diversity or haplogroup makeup of the initial introduced propagule, nor of the availability of local environmental conditions being similar to those experienced in their native range. As long as local conditions are not beyond the species physiological threshold, its local establishment and invasive potential are likely to be determined by local drivers, such as density‐dependent effects linked to resource availability or to local biotic resistance.
机译:快速适应全球变化可以将物种的脆弱性与人口下降和灭绝相反。从理论上讲,在这种情况下,遗传变异和表型可塑性都可以保持人口适应性,但对这进行实证支持目前有限。在这里,我们的目标是在生物入侵期间的生命历史特质的塑造模式中表征环境和遗传多样性的作用,以及它们的现有进化历史(通过HAPLOGROUP型材)。来自遗传和生命历史特征的数据,包括29个原生和侵入性的Topmouth Gudgeon Pseudorasbora Parva的形态分析,与每个位置的气候变量相结合。构建一般添加剂模型以解释跨天然和侵入性范围的体细胞生长速率(SGR)数据的分布,采用Akaike的信息标准进行了模型选择。在他们的侵入性人群中,构成人口群体生命史的遗传和环境驱动因素在其侵入性群体中较低。对于一些脊椎动物,至少,健身相关性状换向似乎并不依赖于初始引入的繁殖的遗传多样性或HaploGroup化妆的水平,也不是当地环境条件的可用性与其本地范围内经历的那些。只要局部条件不超出物种生理阈值,其本地建立和侵入性潜力可能由本地驱动程序确定,例如与资源可用性或局部生物阻力相关的密度依赖性效果。
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