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Altitudinal gradients plant hybrid zones and evolutionary novelty

机译:垂直梯度植物杂交带和进化新奇

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摘要

Altitudinal gradients are characterized by steep changes of the physical and biotic environment that present challenges to plant adaptation throughout large parts of the world. Hybrid zones may form where related species inhabit different neighbouring altitudes and can facilitate interspecific gene flow and potentially the breakdown of species barriers. Studies of such hybrid zones can reveal much about the genetic basis of adaptation to environmental differences stemming from changes in altitude and the maintenance of species divergence in the face of gene flow. Furthermore, owing to recombination and transgressive effects, such hybrid zones can be sources of evolutionary novelty. We document plant hybrid zones associated with altitudinal gradients and emphasize similarities and differences in their structure. We then focus on recent studies of a hybrid zone between two Senecio species that occur at high and low altitude on Mount Etna, Sicily, showing how adaptation to local environments and intrinsic selection against hybrids act to maintain it. Finally, we consider the potential of altitudinal hybrid zones for generating evolutionary novelty through adaptive introgression and hybrid speciation. Examples of homoploid hybrid species of Senecio and Pinus that originated from altitudinal hybrid zones are discussed.
机译:纵向梯度的特征是物理和生物环境的急剧变化,这对世界各地的植物适应提出了挑战。杂种区可能形成在相关物种栖息于不同邻近高度的地方,并且可以促进种间基因流动以及潜在地破坏物种壁垒。对此类杂种区域的研究可以揭示适应海拔差异和维持基因流面对物种差异所产生的环境差异的遗传基础。此外,由于重组和侵袭作用,这种杂合区可能是进化新奇的来源。我们记录了与海拔梯度相关的植物杂种区,并强调了它们结构上的异同。然后,我们将重点放在对在西西里岛埃特纳火山高海拔和低海拔发生的两个千里光物种之间的杂交区的最新研究中,以显示对当地环境的适应性以及对杂交种的内在选择如何起到维持作用。最后,我们考虑了高度杂种区通过适应性渗入和杂种形成而产生进化新奇的潜力。讨论了源自高度杂种区的千里光和松属的同倍体杂种。

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