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The contrasting effects of genome size, chromosome number and ploidy level on plant invasiveness: a global analysis

机译:基因组大小,染色体数目和倍性水平对植物侵袭性的对比影响:全球分析

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Understanding how species' traits relate to their status (e.g. invasiveness or rarity) is important because it can help to efficiently focus conservation and management effort and infer mechanisms affecting plant status. This is particularly importantfor invasiveness, in which proactive action is needed to restrict the establishment of potentially invasive plants.We tested the ability of genome size (DNA 1C-values) to explain invasiveness and compared it with cytogenetic traits (chromosome number and ploidy level). We considered 890 species from 62 genera, from across the angiosperm phylogeny and distributed fromtropical to boreal latitudes.We show that invasiveness was negatively related to genome size and positively related to chromosome number (and ploidy level), yet there was a positive relationship between genome size and chromosome number; that is, our result was not caused by collinearity between the traits. Including both traits in explanatory models greatly increased the explanatory power of each.This demonstrates the potential unifying role that genome size, chromosome number and ploidy have as species' traits, despite the diverse impacts they have on plant physiology. It provides support for the continued cataloguing of cytogenetic traits and genome size of the world's flora.
机译:了解物种的性状如何与其状态(例如入侵性或稀有性)相关很重要,因为它可以帮助有效地集中精力进行保护和管理工作,并推断出影响植物状态的机制。这对于入侵性尤为重要,因为需要采取积极行动来限制潜在入侵植物的形成。我们测试了基因组大小(DNA 1C值)来解释入侵性的能力,并将其与细胞遗传学特征(染色体数和倍性水平)进行了比较。我们考虑了62个属的890个物种,分布在整个被子植物系统发育中,并从热带到北纬分布。研究表明,侵袭性与基因组大小成负相关,与染色体数(和倍性水平)成正相关,而基因组之间却存在正相关大小和染色体数;也就是说,我们的结果不是由特征之间的共线性引起的。在解释模型中包括这两个特征极大地增强了每个模型的解释能力。这证明了基因组大小,染色体数目和倍性作为物种特征具有潜在的统一作用,尽管它们对植物生理学产生了不同的影响。它为继续对世界植物区系的细胞遗传学特征和基因组大小进行分类提供了支持。

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