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系统基因组学解决了昆虫进化的时间和模式问题。

Phylogenomics resolves the timing and pattern of insect evolution.

机构信息

Zoologisches Forschungsmuseum Alexander Koenig (ZFMK)/Zentrum für Molekulare Biodiversitätsforschung (ZMB), Bonn, Germany.

China National GeneBank, BGI-Shenzhen, China. BGI-Shenzhen, China.

出版信息

Science. 2014 Nov 7;346(6210):763-7. doi: 10.1126/science.1257570. Epub 2014 Nov 6.

Abstract

Insects are the most speciose group of animals, but the phylogenetic relationships of many major lineages remain unresolved. We inferred the phylogeny of insects from 1478 protein-coding genes. Phylogenomic analyses of nucleotide and amino acid sequences, with site-specific nucleotide or domain-specific amino acid substitution models, produced statistically robust and congruent results resolving previously controversial phylogenetic relations hips. We dated the origin of insects to the Early Ordovician [479 million years ago (Ma)], of insect flight to the Early Devonian (406 Ma), of major extant lineages to the Mississippian (~345 Ma), and the major diversification of holometabolous insects to the Early Cretaceous. Our phylogenomic study provides a comprehensive reliable scaffold for future comparative analyses of evolutionary innovations among insects.

摘要

昆虫是动物中物种最丰富的类群,但许多主要谱系的系统发育关系仍未解决。我们从 1478 个蛋白质编码基因推断出昆虫的系统发育。核苷酸和氨基酸序列的系统基因组分析,使用特定位置核苷酸或特定结构域氨基酸取代模型,产生了具有统计学意义的稳健且一致的结果,解决了以前存在争议的系统发育关系。我们将昆虫的起源追溯到早奥陶世(约 4.79 亿年前),昆虫飞行的起源追溯到早泥盆世(约 4.06 亿年前),主要现存谱系的起源追溯到密西西比纪(约 3.45 亿年前),完全变态昆虫的主要多样化起源追溯到早白垩世。我们的系统基因组学研究为未来昆虫进化创新的比较分析提供了一个全面可靠的支架。

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