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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogeny of the hillstream loath genus Mesonoemacheilus reveals widespread diversification through ancient drainage connections in the Western Ghats Biodiversity Hotspot
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Phylogeny of the hillstream loath genus Mesonoemacheilus reveals widespread diversification through ancient drainage connections in the Western Ghats Biodiversity Hotspot

机译:Hillstream Loath Genus Mesonoemacheilus的系统发育揭示了通过西巨船生物多样性热点的古代排水连接广泛多样化

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摘要

Rivers draining the Western Ghats (WG) mountain ranges in peninsular India harbor an exceptionally diverse, unique and evolutionarily distinct assemblage of lower vertebrates with high levels of endemism, attributed to their evolution and potentially long history of isolation during the Late Cretaceous or Early Tertiary. A molecular phylogeny of hillstream loaches of the genus Mesonoemacheilus endemic to the WG revealed the presence of four clades which we designate as 'species groups'. A consensus of various species delimitation methods indicates the likelihood of 'at least' seven more undescribed species within Mesonoemacheilus. Molecular clock analysis dates the basal Glade around 38 mya in the Paleogene, and subsequent diversification in the Neogene and Quaternary periods resulting in the current genetic diversity. Biogeographic analysis suggests that vicariance events which separated the rivers on either side of the two geological barriers/gaps, the Palghat and Shencottah, in the Neogene, as well as range contractions and cladogenetic events contributed to the current patterns of diversity and distribution of this genus. Our results also provide preliminary indications on the interconnections and faunal exchange between historical river drainages in the WG region.
机译:河流在半岛印度排出西山谷(WG)山脉覆盖着一种异常多样化,独特的,有流变的小脊椎动物,具有高水平的民族教,归因于晚餐或早期第三节期间的进化和潜在的孤立历史。 MesonoeMacheilus属于WG的山脉漏洞的分子系统发育揭示了我们指定为“物种群”的四个枝条的存在。各种物种划界方法的共识表明“至少”七种未描述的物种在MesonoeMacheilus中的可能性。分子时钟分析在古烯中的38 mya约为38 mya的基础林位,随后在Neogene和第四纪时期的多元化导致当前的遗传多样性。生物地理分析表明,在Neogene的两个地质障碍/差距,Palghat和Shencottah的两侧分开了河流的牧业事件,以及范围收缩和基因发生事件有助于该属的多样性和分布模式。我们的业绩还提供了关于WG地区历史河流引流之间的互连和粪便交换的初步迹象。

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