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真核生物中线粒体 DNA 基因含量的进化和维持。

Evolution and maintenance of mtDNA gene content across eukaryotes.

机构信息

Department of Mathematics, University of Bergen, Bergen, Norway.

Computational Biology Unit, University of Bergen, Bergen, Norway.

出版信息

Biochem J. 2024 Aug 7;481(15):1015-1042. doi: 10.1042/BCJ20230415.

Abstract

Across eukaryotes, most genes required for mitochondrial function have been transferred to, or otherwise acquired by, the nucleus. Encoding genes in the nucleus has many advantages. So why do mitochondria retain any genes at all? Why does the set of mtDNA genes vary so much across different species? And how do species maintain functionality in the mtDNA genes they do retain? In this review, we will discuss some possible answers to these questions, attempting a broad perspective across eukaryotes. We hope to cover some interesting features which may be less familiar from the perspective of particular species, including the ubiquity of recombination outside bilaterian animals, encrypted chainmail-like mtDNA, single genes split over multiple mtDNA chromosomes, triparental inheritance, gene transfer by grafting, gain of mtDNA recombination factors, social networks of mitochondria, and the role of mtDNA dysfunction in feeding the world. We will discuss a unifying picture where organismal ecology and gene-specific features together influence whether organism X retains mtDNA gene Y, and where ecology and development together determine which strategies, importantly including recombination, are used to maintain the mtDNA genes that are retained.

摘要

在真核生物中,大多数与线粒体功能相关的必需基因已经转移到核内,或者通过其他方式获得。在核内编码基因有许多优势。那么,线粒体为什么还要保留任何基因呢?为什么不同物种的 mtDNA 基因序列差异如此之大?以及物种如何维持它们所保留的 mtDNA 基因的功能?在这篇综述中,我们将讨论这些问题的一些可能答案,试图从真核生物的广泛视角来探讨。我们希望涵盖一些可能从特定物种的角度不太熟悉的有趣特征,包括在两侧对称动物之外广泛存在的重组、加密的链式 mtDNA、多个 mtDNA 染色体上分裂的单个基因、三亲遗传、通过嫁接转移基因、获得 mtDNA 重组因子、线粒体的社交网络以及 mtDNA 功能障碍在养活世界方面的作用。我们将讨论一个统一的观点,即生物体的生态学和基因特异性特征共同影响生物体 X 是否保留 mtDNA 基因 Y,而生态学和发育共同决定了保留的 mtDNA 基因使用哪些策略,特别是包括重组。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91d5/11346449/637159ba5172/BCJ-481-1015-g0001.jpg

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