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The phylogeny of Mediterranean tortoises and their close relatives based on complete mitochondrial genome sequences from museum specimens

机译:基于博物馆标本的完整线粒体基因组序列,地中海陆龟及其近亲的系统发育

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摘要

As part of an ongoing project to generate a mitochondrial database for terrestrial tortoises based on museum specimens, the complete mitochondrial genome sequences of 10 species and a similar to 14 kb sequence from an eleventh species are reported. The sampling of the present study emphasizes Mediterranean tortoises (genus Testudo and their close relatives). Our new sequences are aligned, along with those of two testudinoid turtles from GenBank, Chrysemys picta and Mauremys reevesii, yielding an alignment of 14,858 positions, of which 3238 are parsimony informative. We develop a phylogenetic taxonomy for Testudo and related species based on well-supported, diagnosable clacles. Several well-supported nodes are recovered, including the monophyly of a restricted Testudo, T kleininanni+ T marginata (the Chersus clade), and the placement of the enigmatic African pancake tortoise (Malacochersus tornieri) within the predominantly Palearctic greater Testudo group (Testudona tax. nov.). Despite the large amount of sequence reported, there is low statistical support for some nodes within Testudona and so we do not propose names for those groups. A preliminary and conservative estimation of divergence times implies a late Miocene diversification for the testudonan clade (6-10 million years ago), matching their first appearance in the fossil record. The multi-continental distribution of testudonan turtles can be explained by the establishment of permanent connections between Europe, Africa, and Asia at this time. The arrival of testudonan turtles to Africa occurred after one or more initial tortoise invasions gave rise to the diverse (> 25 species) 'Geochelone complex.' Two unusual genomic features are reported for the mtDNA of one tortoise, M. tornieri: (1) nad4 has a shift of reading frame that we suggest is resolved by translational frameshifting of the mRNA on the ribosome during protein synthesis and (2) there are two copies of the control region and trnF with the latter having experienced multiple-nucleotide substitutions in a pattern suggesting that each is being maintained by selection. (c) 2005 Elsevier Inc. All rights reserved.
机译:作为正在进行的根据博物馆标本生成陆龟线粒体数据库的项目的一部分,据报道,完整的线粒体基因组序列有10种,并且与第11种物种的14 kb序列相似。本研究的抽样重点是地中海乌龟(陆龟及其近亲属)。我们的新序列与来自GenBank,Chrysemys picta和Mauremys reevesii的两只睾丸类乌龟的序列比对,产生了14,858个位置的比对,其中3238个为简约信息。我们根据有力的,可诊断的线索,为陆龟和相关物种建立了系统发育分类学。恢复了几个得到良好支持的结点,包括受限制的睾丸的单眼畸形,T kleininanni + T marginata(切尔苏斯进化枝)以及将神秘的非洲煎饼乌龟(Malacochersus tornieri)放置在主要为大古朴的更大的Testudo组中(Testudona税)。十一月)。尽管报告了大量序列,但Testudona中某些节点的统计支持较低,因此我们不建议这些组的名称。对发散时间的初步和保守估计表明,晚新世的中新世多样化(6-10百万年前)与化石记录中的首次出现相吻合。可以通过在欧洲,非洲和亚洲之间建立永久连接来解释睾丸海龟的多大陆分布。一只或多只最初的乌龟入侵引起了多样化的(> 25种)“地螯酮复合体”后,陆龟来到了非洲。据报道,一种陆龟M. tornieri的mtDNA有两个不寻常的基因组特征:(1)nad4的阅读框发生了变化,我们建议通过蛋白质合成过程中核糖体上的mRNA的翻译框移来解决,并且(2)控制区域和trnF的两个拷贝,后者经历了模式的多核苷酸取代,表明每个通过选择维持。 (c)2005 Elsevier Inc.保留所有权利。

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