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所有肺鱼的基因组都为基因组扩张和四足动物进化提供了信息。

The genomes of all lungfish inform on genome expansion and tetrapod evolution.

作者信息

Schartl Manfred, Woltering Joost M, Irisarri Iker, Du Kang, Kneitz Susanne, Pippel Martin, Brown Thomas, Franchini Paolo, Li Jing, Li Ming, Adolfi Mateus, Winkler Sylke, de Freitas Sousa Josane, Chen Zhuoxin, Jacinto Sandra, Kvon Evgeny Z, Correa de Oliveira Luis Rogério, Monteiro Erika, Baia Amaral Danielson, Burmester Thorsten, Chalopin Domitille, Suh Alexander, Myers Eugene, Simakov Oleg, Schneider Igor, Meyer Axel

机构信息

Developmental Biochemistry, Biocenter, University of Würzburg, Würzburg, Germany.

The Xiphophorus Genetic Stock Center, Texas State University, San Marcos, TX, USA.

出版信息

Nature. 2024 Oct;634(8032):96-103. doi: 10.1038/s41586-024-07830-1. Epub 2024 Aug 14.

Abstract

The genomes of living lungfishes can inform on the molecular-developmental basis of the Devonian sarcopterygian fish-tetrapod transition. We de novo sequenced the genomes of the African (Protopterus annectens) and South American lungfishes (Lepidosiren paradoxa). The Lepidosiren genome (about 91 Gb, roughly 30 times the human genome) is the largest animal genome sequenced so far and more than twice the size of the Australian (Neoceratodus forsteri) and African lungfishes owing to enlarged intergenic regions and introns with high repeat content (about 90%). All lungfish genomes continue to expand as some transposable elements (TEs) are still active today. In particular, Lepidosiren's genome grew extremely fast during the past 100 million years (Myr), adding the equivalent of one human genome every 10 Myr. This massive genome expansion seems to be related to a reduction of PIWI-interacting RNAs and C2H2 zinc-finger and Krüppel-associated box (KRAB)-domain protein genes that suppress TE expansions. Although TE abundance facilitates chromosomal rearrangements, lungfish chromosomes still conservatively reflect the ur-tetrapod karyotype. Neoceratodus' limb-like fins still resemble those of their extinct relatives and remained phenotypically static for about 100 Myr. We show that the secondary loss of limb-like appendages in the Lepidosiren-Protopterus ancestor was probably due to loss of sonic hedgehog limb-specific enhancers.

摘要

现存肺鱼的基因组可以为泥盆纪肉鳍鱼向四足动物过渡的分子发育基础提供信息。我们对非洲肺鱼(Protopterus annectens)和南美肺鱼(Lepidosiren paradoxa)的基因组进行了从头测序。南美肺鱼的基因组(约91Gb,约为人类基因组的30倍)是迄今为止测序的最大动物基因组,由于基因间区域和内含子扩大且重复序列含量高(约90%),其大小是澳大利亚肺鱼(Neoceratodus forsteri)和非洲肺鱼的两倍多。由于一些转座元件(TEs)至今仍活跃,所有肺鱼的基因组都在持续扩张。特别是,南美肺鱼的基因组在过去1亿年中增长极快,每1000万年增加相当于一个人类基因组的量。这种大规模的基因组扩张似乎与PIWI相互作用RNA以及抑制TE扩张的C2H2锌指蛋白和Krüppel相关盒(KRAB)结构域蛋白基因的减少有关。尽管TE的丰度促进了染色体重排,但肺鱼的染色体仍保守地反映了原始四足动物的核型。澳洲肺鱼的叶状鳍仍与它们已灭绝亲属的鳍相似,并且在约1亿年的时间里表型保持不变。我们表明,南美肺鱼 - 非洲肺鱼共同祖先中叶状附肢的二次丧失可能是由于音猬因子肢体特异性增强子的丧失。

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