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Phylogenetic relationships among snakes inferred from mitochondrial DNA sequence data

机译:从线粒体DNA序列数据推断出的蛇之间的系统发生关系

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摘要

The determination of the historical relationships among snakes and between snakes and other squamates has remained problematical due to the combined problems of morphological character homoplasies and polarity misinterpretations coupled with the highly specialized body plan of the Serpentes. In order to provide an independent dataset and to escape the complex polarity and character choice problems inherent in a morphological investigation, 1,033 nucleotides of a mitochondrial DNA fragment encompassing both the ND4 protein-coding subunit and the His, Ser, and Leu tRNAs were sequenced and analyzed under parsimony criteria for a broad range of taxa from nearly all snake families using the outgroup method for correct character polarity. This investigation determined the origin of the snakes to be within the lizard clade and postulates an anguimorph lizard ancestry for the snakes. Subsequently, the relationships among the higher categories of snakes were evaluated and the results support both the conventional higher partitioning of the suborder Serpentes and a basal Scolecophidian clade, which had been previously supported by the morphological data. Examination of the Henophidia delineated two lineages, the Boidae and Pythonidae, which are monophyletic. The Pythonidae is expanded to include the Cylindrophinae, Loxoceminae, and Xenopeltinae and subsequent analyses provide support for an African and/or Asian origin of the Pythonidae. Historically problematical distributions for the boa genus Candoia and the python genus Loxocemus are paralleled in other lizard groups and do not represent a pattern from colonization events, but rather the relictual pattern derived from extinctions. The phylogenetic position of the enigmatic taxon Calabaria reinhardtii remains ambiguous from these data. This investigation, which represents one of the first systematic evaluations of snakes to utilize DNA sequence data, corroborates several features of the present morphologically deduced classifications. It simultaneously clarifies some of the long-standing problems of the relationships within Henophidia and also provides a new perspective on both the age of the groups of snakes in general and on the biogeographical events which shaped the modern distributions of these reptiles.
机译:由于形态特征同质异型和极性误解再加上蛇的高度专业化的身体计划的综合问题,确定蛇之间以及蛇与其他鳞茎之间的历史关系仍然存在问题。为了提供独立的数据集并避免形态学研究固有的复杂极性和字符选择问题,对包含ND4蛋白编码亚基以及His,Ser和Leu tRNA的线粒体DNA片段的1,033个核苷酸进行了测序,根据简化标准,使用outgroup方法对几乎所有蛇类的广泛分类单元进行了分析,以确保正确的字符极性。这项调查确定了蛇的起源是在蜥蜴进化枝内,并为蛇假设了anguimorph蜥蜴的血统。随后,评估了较高类别的蛇之间的关系,结果既支持了亚目蛇亚目的常规更高分割,又支持了先前形态学数据所支持的基础鞘翅目进化枝。血吸虫的检查划定了两个谱系,Boidae和Pythonidae,它们是单系的。 Pythonidae已扩展到包括Cylindrophinae,Loxoceminae和Xenopeltinae,随后的分析为Pythonidae的非洲和/或亚洲起源提供了支持。蟒蛇属Candoia和蟒蛇属Loxocemus的历史上有问题的分布在其他蜥蜴组中是平行的,并且不代表殖民化事件的模式,而是代表灭绝的遗迹模式。从这些数据来看,神秘分类群Calabaria reinhardtii的系统发育位置仍然不明确。这项研究代表了利用DNA序列数据对蛇进行的首次系统评估之一,证实了本形态学推断分类的若干特征。它同时阐明了Henophidia内关系的一些长期存在的问题,并且为一般蛇群的年龄以及形成这些爬行动物现代分布的生物地理事件提供了新的视角。

著录项

  • 作者

    Forstner, Michael R. J.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Zoology.;Genetics.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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