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Aquaporins in the wild: natural genetic diversity and selective pressure in the PIP gene family in five Neotropical tree species

机译:野生的水通道蛋白:五个新热带树种的PIP基因家族的自然遗传多样性和选择压力

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Background Tropical trees undergo severe stress through seasonal drought and flooding, and the ability of these species to respond may be a major factor in their survival in tropical ecosystems, particularly in relation to global climate change. Aquaporins are involved in the regulation of water flow and have been shown to be involved in drought response; they may therefore play a major adaptive role in these species. We describe genetic diversity in the PIP sub-family of the widespread gene family of Aquaporins in five Neotropical tree species covering four botanical families. Results PIP Aquaporin subfamily genes were isolated, and their DNA sequence polymorphisms characterised in natural populations. Sequence data were analysed with statistical tests of standard neutral equilibrium and demographic scenarios simulated to compare with the observed results. Chloroplast SSRs were also used to test demographic transitions. Most gene fragments are highly polymorphic and display signatures of balancing selection or bottlenecks; chloroplast SSR markers have significant statistics that do not conform to expectations for population bottlenecks. Although not incompatible with a purely demographic scenario, the combination of all tests tends to favour a selective interpretation of extant gene diversity. Conclusions Tropical tree PIP genes may generally undergo balancing selection, which may maintain high levels of genetic diversity at these loci. Genetic variation at PIP genes may represent a response to variable environmental conditions.
机译:背景技术热带树木通过季节性干旱和洪水遭受严重压力,这些树种的响应能力可能是其在热带生态系统中生存的主要因素,尤其是与全球气候变化有关。水通道蛋白参与水流的调节,并被证明参与干旱响应。因此它们可能在这些物种中起主要的适应性作用。我们描述了水通道蛋白的广泛基因家族的PIP子家族中的遗传多样性,涵盖了四个植物家族的五个新热带树种。结果分离出PIP水通道蛋白亚家族基因,并在自然种群中表征其DNA序列多态性。用标准中性平衡的统计测试分析序列数据,并模拟人口统计学场景与观察结果进行比较。叶绿体SSR也用于测试人口统计转变。大多数基因片段都是高度多态的,并显示出平衡选择或瓶颈的特征。叶绿体SSR标记具有大量统计数据,与人口瓶颈预期不符。尽管与纯粹的人口统计情况并不矛盾,但所有测试的结合都倾向于对现存基因多样性进行选择性解释。结论热带树木PIP基因通常可能会进行平衡选择,这可能会在这些基因座上保持高水平的遗传多样性。 PIP基因的遗传变异可能代表对可变环境条件的反应。

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