果蝇科全线粒体基因组系统发育。

Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis Pub Date : 2022-01-01 Epub Date: 2024-01-25
Rob DeSalle, Sara Oppenheim, Patrick M O'Grady
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引用次数: 0

摘要

通过对SRA数据库中的241个线粒体基因组进行组装和注释,重建了果蝇属、果蝇科和近缘种的mtDNA基因组系统进化。所得出的mtDNA基因组系统发育与之前对果蝇物种进行的高层次分析基本一致,但黑腹果蝇、montium果蝇、anannassae果蝇、saltans果蝇和obscura果蝇群之间的关系除外。虽然这些种群内部的关系在核研究和 mtDNA 研究中是一致的,但这些种群的 mtDNA 基因组系统发生与之前的研究有所不同。果蝇属中已知种群的单系性得到了高度支持,与之前的研究一样,Lordiphosa属、Hirtodrosophila属、Zaprionus属和Scaptomya属都被嵌入果蝇属中。不一致性和分区支持分析表明,DNA序列比其翻译的蛋白质序列更能解析系统发生。这些分析还表明,环状分子负链上的基因(Lrrna、Srrna、ND4、ND4L 和 ND5)为整个系统发育假说提供了大部分支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Whole mitochondrial genome phylogeny of Drosophilidae.

A total of 241 mitochondrial genomes were assembled and annotated from the SRA database to reconstruct a mtDNA genome phylogeny for the genus Drosophila, the family Drosophilidae, and close relatives. The resulting mtDNA genome phylogeny is largely congruent with previous higher-level analyses of Drosophila species with the exception of the relationships between the melanogaster, montium, anannassae, saltans and obscura groups. Although relationships within these species groups are congruent between nuclear and mtDNA studies, the mtDNA genome phylogeny of the groups is different when compared to earlier studies. Monophyly of known species groups within the genus Drosophila are highly supported and, as in previous work, the genera Lordiphosa, Hirtodrosophila, Zaprionus and Scaptomya are all imbedded within the genus Drosophila. Incongruence and partitioned support analyses indicate that DNA sequences are better at resolving the phylogeny than their translated protein sequences. Such analyses also indicate that genes on the minus strand of the circular molecule (Lrrna, Srrna, ND4, ND4L and ND5) provide most of the support for the overall phylogenetic hypothesis.

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