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A perspective for resolving the systematics of Rattus, the vertebrates with the most influence on human welfare

机译:解决rattus的系统性,脊椎动物对人类福利影响最大的视角

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The murid rodent genus Rattus Fischer 1803 contains several species that are responsible for massive loss of crops and food, extinction of other species and the spread of zoonotic diseases to humans, as well as a laboratory species used to answer important questions in physiology, immunology, pharmacology, toxicology, nutrition, behaviour and learning. Despite the well-known significant impacts of Rattus, a definitive evolutionary based systematic framework for the genus is not yet available. The past 75 years have seen more dramatic changes in membership of Rattus than in almost any other genus of mammals. In fact, the Rattus genus has been a receptacle for any generalised Old World murine that lacked morphological specialisation and at one point, has included more than 560 species and/or subspecies, spread across Eurasia, Africa and the Australo-Papuan region. The dissolution of Rattus is ongoing as many of its constituent species and many genera of Rattini remain unsampled in any molecular study. To address this sampling limitation, we sequenced the mitochondrial cytochrome b (cytb) gene and examined phylogenetic relationships using both Bayesian and Maximum Likelihood algorithms for an expanded set of taxa within Rattus and among closely related genera. Here we place previously unsampled taxa in a phylogenetic context for the first time, including R. burrus, R. hoogerwerfi, R. lugens, and R. mindorensis within the Asian Rattus group, R. facetus within the Australo-Papuan Rattus radiation, and the undescribed 'Bisa Rat' described by Flannery as sister to the recently described genus Halmaheramys. We also present an exploratory foray into the wider topic of Rattus phylogenetics and propose that a reorganisation of the Rattus genus should require that it be a monophyletic group, include at least the type species R. norvegicus and R. rattus (plus their close allies); and exclude the Bandicota/Nesokia clade and other such specialised genera.
机译:该穆里德啮齿动物属褐菲舍尔1803包含几个物种的负责作物和食品的大量流失,其他物种的灭绝和人畜共患疾病对人类的传播,以及用来回答在生理学,免疫学的重要问题实验室的物种,药理学,毒理学,营养学,行为和学习。尽管黄毛的知名显著的影响,对于属一个明确的进化基于系统架构尚不可用。在过去的75年已经看到了黄毛的成员比哺乳动物的几乎任何其他属更戏剧性的变化。事实上,黄毛属一直是缺乏形态专业化,在一个点上,包括了超过560种和/或亚种,横跨欧亚大陆,非洲和Australo,巴布亚地区传播任何广义旧世界鼠的接收器。黄毛的溶解正在进行的Rattini的许多组分物质和许多属中的任何分子的研究仍然未抽样。为了解决这个采样限制,我们测序细胞色素b(色素b)基因检测同时使用贝叶斯和最大似然算法中黄毛一组扩展的类群和中密切相关的属亲缘关系。在这里,我们将以前的非抽样类群系统发育方面的第一次,包括R.巴瑞斯,R. hoogerwerfi,R.飞虱和褐亚洲组内R. mindorensis,R. facetus的Australo,巴布亚黄毛辐射之内,在未描述的“BISA鼠”由弗兰纳里描述的妹妹最近描述属Halmaheramys。我们还提出了一个试探性进军黄毛系统发育的更广泛的话题和建议,黄毛属的重组应该要求它是一个单系群,至少包括模式种褐家鼠和黄毛R.(加上他们的亲密盟友) ;并排除板齿鼠/地鼠属分支和其他这种专门属。

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