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海七鳃鳗 Petromyzon marinus 改良的种系基因组组装揭示了种系特异性染色体的进化。

An improved germline genome assembly for the sea lamprey Petromyzon marinus illuminates the evolution of germline-specific chromosomes.

机构信息

Department of Biology, University of Kentucky, Lexington, KY 40506, USA.

Stowers Institute for Medical Research, Kansas City, MO 64110, USA.

出版信息

Cell Rep. 2023 Mar 28;42(3):112263. doi: 10.1016/j.celrep.2023.112263. Epub 2023 Mar 15.

Abstract

Programmed DNA loss is a gene silencing mechanism that is employed by several vertebrate and nonvertebrate lineages, including all living jawless vertebrates and songbirds. Reconstructing the evolution of somatically eliminated (germline-specific) sequences in these species has proven challenging due to a high content of repeats and gene duplications in eliminated sequences and a corresponding lack of highly accurate and contiguous assemblies for these regions. Here, we present an improved assembly of the sea lamprey (Petromyzon marinus) genome that was generated using recently standardized methods that increase the contiguity and accuracy of vertebrate genome assemblies. This assembly resolves highly contiguous, somatically retained chromosomes and at least one germline-specific chromosome, permitting new analyses that reconstruct the timing, mode, and repercussions of recruitment of genes to the germline-specific fraction. These analyses reveal major roles of interchromosomal segmental duplication, intrachromosomal duplication, and positive selection for germline functions in the long-term evolution of germline-specific chromosomes.

摘要

程序性 DNA 丢失是一种基因沉默机制,被包括所有现生无颌脊椎动物和鸣禽在内的几个脊椎动物和非脊椎动物谱系所采用。由于在消除的序列中存在大量的重复和基因重复,以及这些区域相应缺乏高度准确和连续的组装,因此在这些物种中重建体细胞消除(生殖系特异性)序列的进化一直具有挑战性。在这里,我们展示了使用最近标准化方法生成的海七鳃鳗(Petromyzon marinus)基因组的改进组装,这些方法提高了脊椎动物基因组组装的连续性和准确性。该组装解决了高度连续的体细胞保留染色体和至少一个生殖系特异性染色体,允许进行新的分析,重建基因向生殖系特异性部分招募的时间、模式和影响。这些分析揭示了染色体间片段重复、染色体内重复以及生殖系功能的正选择在生殖系特异性染色体的长期进化中的主要作用。

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