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首页> 外文期刊>Molecular phylogenetics and evolution >A novel gene arrangement among the Stylommatophora by the complete mitochondrial genome of the terrestrial slug Meghimatium bilineatum (Gastropoda, Arionoidea)
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A novel gene arrangement among the Stylommatophora by the complete mitochondrial genome of the terrestrial slug Meghimatium bilineatum (Gastropoda, Arionoidea)

机译:通过陆地散席百分比百分之粉(Gastropoda,Arionea)的全部线粒体基因组(Arionoidea)的特定线粒体基因组新的基因排列

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摘要

Stylommatophora is a main Glade of Gastropoda that encompasses approximately 112 gastropod families and may exceed a total of 30,000 species. Twenty-four complete stylommatophoran mitogenomes have been sequenced to date, yet our understanding of mitochondrial evolution in stylommatophorans is still in its infancy. To further expand the set of available mitogenomes, we sequenced the mitogenome of Meghimatium bilineatum (Arionoidea: Philomycidae), a widespread land slug in East Asia. This is the first report on a mitogenome of the superfamily Arionoidea, and indeed on a terrestrial slug. The mitogenome of Meghimatium bilineatum comprises 13,972 bp and exhibits a novel, highly distinctive gene arrangement among the Stylommatophora. Phylogenetic reconstructions based on the sequences of all protein-coding genes consistently recovered Meghimatium bilineatum as sister-group of the Succineidae. A phylogenetic reconstruction based on gene order, however, suggested a highly divergent tree topology, which is less credible when taking into account prior knowledge of stylommatophoran relationships. Our CREx (Common interval Rearrangement Explorer) analysis suggested that three successive events of tandem duplication random loss (TDRL) best explain the evolutionary process of gene order rearrangement in Meghimatium bilineatum from an ancestral stylommatophoran mitogenome. The present example offers new insights into the mechanisms of mitogenome rearrangements in gastropods at large and into the usefulness of mitogenomic gene order as a phylogenetic marker.
机译:QuancomMatophora是胃肠道的主要沼泽,包括大约112个美食家庭,并且可能超过30,000种物种。迄今为止已经测序了二十四个完整的发电机糖蛋白酶体,但我们对发病犬的线粒体演变的理解仍处于初期阶段。为了进一步扩大可用含有含有含有丝分裂物的组,我们测序了Meghimatium Bilinatum(Arionoidea:Philomycidae)的促使危机,在东亚广泛的土地。这是Superfamily Arionoidea的促使催乳素组的第一份报告,并且实际上是陆地裂缝。 Meghimatium Bilinatum的促使促进剂组合13,972bp,表现出一种新颖的,在发电机中的新颖,高度独特的基因排列。基于所有蛋白质编码基因的序列的系统发育重建一致地回收Meghimatium Bilinatum作为琥珀酰胺的姐妹组。然而,基于基因阶的系统发育重建建议了一种高度不同的树拓扑,这在考虑到发电机孔关系的先验知识时,这不太可信。我们的CREX(常见间隔重排探险者)分析表明,三个连续事件的串联复制随机损失(TDRL)最佳地解释了来自祖先的发电机瘤瘤组的Meghimatium Bilinatum中基因令重新排列的进化过程。本示例提供了对大型胃肠杆菌紊乱重排机制的新见解,并进入有毒遗传学基因命令作为系统发育标记的有用性。

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