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解读……的多染色体线粒体基因组

Deciphering the Multi-Chromosomal Mitochondrial Genome of .

作者信息

Bi Changwei, Qu Yanshu, Hou Jing, Wu Kai, Ye Ning, Yin Tongming

机构信息

Key Laboratory of Tree Genetics and Biotechnology of Educational Department of China, Key Laboratory of Tree Genetics and Sivilcultural Sciences of Jiangsu Province, College of Forestry, Nanjing Forestry University, Nanjing, China.

College of Information Science and Technology, Nanjing Forestry University, Nanjing, China.

出版信息

Front Plant Sci. 2022 Jun 15;13:914635. doi: 10.3389/fpls.2022.914635. eCollection 2022.

Abstract

Mitochondria, inherited maternally, are energy metabolism organelles that generate most of the chemical energy needed to power cellular various biochemical reactions. Deciphering mitochondrial genome (mitogenome) is important for elucidating vital activities of species. The complete chloroplast (cp) and nuclear genome sequences of () have been reported, but there has been little progress in its mitogenome. Here, we assemble the complete mitogenome into three circular-mapping molecules (lengths 312.5, 283, and 186 kb) with the total length of 781.5 kb. All three molecules of the mitogenome had protein-coding capability. Whole-genome alignment analyses of four species revealed the fission of poplar mitogenome in . Comparative repeat analyses of four mitogenomes showed that there were no repeats longer than 350 bp in mitogenomes, contributing to the stability of genome sizes and gene contents in the genus . As the first reported multi-circular mitogenome in , this study of mitogenome are imperative for better elucidating their biological functions, replication and recombination mechanisms, and their unique evolutionary trajectories in .

摘要

线粒体通过母系遗传,是能量代谢细胞器,可产生细胞各种生化反应所需的大部分化学能量。解析线粒体基因组(有丝分裂基因组)对于阐明物种的生命活动很重要。(某物种)完整的叶绿体(cp)和核基因组序列已被报道,但其有丝分裂基因组进展甚微。在此,我们将完整的(该物种)有丝分裂基因组组装成三个环状分子(长度分别为312.5、283和186 kb),总长度为781.5 kb。该物种有丝分裂基因组的所有三个分子都具有蛋白质编码能力。对四个(该物种)物种的全基因组比对分析揭示了杨树有丝分裂基因组在(某个时期)的裂变。对四个(该物种)有丝分裂基因组的重复序列比较分析表明,(该物种)有丝分裂基因组中不存在长度超过350 bp的重复序列,这有助于该属基因组大小和基因含量的稳定性。作为首次报道的(该物种)多环状有丝分裂基因组,这项关于(该物种)有丝分裂基因组的研究对于更好地阐明其生物学功能、复制和重组机制以及它们在(该物种)中的独特进化轨迹至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8249/9240471/beadffe79ea9/fpls-13-914635-g001.jpg

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