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The utility of fast evolving molecular markers for studying speciation in the Antarctic benthos

机译:快速发展的分子标记在研究南极底栖动物物种中的用途

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The Southern Ocean is surprisingly rich in species that coexist in one of the most extreme environments on Earth yet the processes leading to speciation in this ecosystem are not well understood. To remedy this, tools that measure the genetic connectedness within a species are needed. Although useful for phylogenetic purposes, the readily available mitochon-drial markers (e.g. 16S, COI) suffer from numerous shortcomings for population genetics. Therefore, molecular markers are needed that are sufficiently variable, unlinked, biparentally inherited, and distributed over the whole genome. We argue that microsatellites are suitable markers that have not been widely used in exploratory studies due to their difficult initial set-up. Working with the Ceratoserolis trilobitoides species complex (Isopoda), we demonstrate that using a novel protocol many microsatellites can be identified quickly. An increased availability of these highly sensitive markers will be useful for studies addressing the origin of species in the Southern Ocean and their response to future climate change.
机译:令人惊讶的是,南大洋拥有丰富的物种,它们共存于地球上最极端的环境之一中,但导致这种生态系统形成物种的过程尚未广为人知。为了解决这个问题,需要一种测量物种内部遗传联系的工具。尽管可用于系统发育目的,但易于获得的线粒体标记(例如16S,COI)存在许多群体遗传学缺陷。因此,需要足够可变,未链接,双亲遗传并分布在整个基因组上的分子标记。我们认为微卫星是合适的标记物,由于其初始设置困难,因此尚未在探索性研究中广泛使用。与Ceratoserolis trilobitoides物种复杂(Isopoda)一起工作,我们证明了使用一种新颖的协议,可以快速识别许多微卫星。这些高度敏感的标记物的增加利用将有助于研究南大洋物种的起源及其对未来气候变化的反应。

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