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基因组分析原始、野生和栽培柑橘提供了对无性繁殖的深入了解。

Genomic analyses of primitive, wild and cultivated citrus provide insights into asexual reproduction.

机构信息

Key Laboratory of Horticultural Plant Biology (Ministry of Education), Huazhong Agricultural University, Wuhan, P.R. China.

Citrus Research Institute, Southwest University, Chongqing, P.R. China.

出版信息

Nat Genet. 2017 May;49(5):765-772. doi: 10.1038/ng.3839. Epub 2017 Apr 10.

Abstract

The emergence of apomixis-the transition from sexual to asexual reproduction-is a prominent feature of modern citrus. Here we de novo sequenced and comprehensively studied the genomes of four representative citrus species. Additionally, we sequenced 100 accessions of primitive, wild and cultivated citrus. Comparative population analysis suggested that genomic regions harboring energy- and reproduction-associated genes are probably under selection in cultivated citrus. We also narrowed the genetic locus responsible for citrus polyembryony, a form of apomixis, to an 80-kb region containing 11 candidate genes. One of these, CitRWP, is expressed at higher levels in ovules of polyembryonic cultivars. We found a miniature inverted-repeat transposable element insertion in the promoter region of CitRWP that cosegregated with polyembryony. This study provides new insights into citrus apomixis and constitutes a promising resource for the mining of agriculturally important genes.

摘要

无融合生殖(从有性繁殖向无性繁殖的转变)的出现是现代柑橘的一个显著特征。在这里,我们从头测序并全面研究了四个代表性柑橘物种的基因组。此外,我们还对 100 个原始、野生和栽培柑橘品种进行了测序。比较群体分析表明,能量和繁殖相关基因的基因组区域可能在栽培柑橘中受到选择。我们还将导致柑橘多胚性的遗传基因座(一种无融合生殖形式)缩小到一个包含 11 个候选基因的 80kb 区域。其中一个基因 CitRWP 在多胚性品种的胚珠中表达水平更高。我们发现 CitRWP 启动子区域有一个微型反向重复转座元件插入,与多胚性共分离。这项研究为柑橘无融合生殖提供了新的见解,并为农业重要基因的挖掘提供了有前途的资源。

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