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高质量基因组和高密度遗传图谱助力杂草稻基因鉴定。

High-Quality Genomes and High-Density Genetic Map Facilitate the Identification of Genes From a Weedy Rice.

作者信息

Li Fei, Han Zhenyun, Qiao Weihua, Wang Junrui, Song Yue, Cui Yongxia, Li Jiaqi, Ge Jinyue, Lou Danjing, Fan Weiya, Li Danting, Nong Baoxuan, Zhang Zongqiong, Cheng Yunlian, Zhang Lifang, Zheng Xiaoming, Yang Qingwen

机构信息

National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

Guangxi Key Laboratory for Polysaccharide Materials and Modifications, School of Marine Sciences and Biotechnology, Guangxi University for Nationalities, Nanning, China.

出版信息

Front Plant Sci. 2021 Nov 19;12:775051. doi: 10.3389/fpls.2021.775051. eCollection 2021.

Abstract

Genes have been lost or weakened from cultivated rice during rice domestication and breeding. Weedy rice ( f. ) is usually recognized as the progeny between cultivated rice and wild rice and is also known to harbor an gene pool for rice breeding. Therefore, identifying genes from weedy rice germplasms is an important way to break the bottleneck of rice breeding. To discover genes from weedy rice germplasms, we constructed a genetic map based on w-hole-genome sequencing of a F population derived from the cross between LM8 and a cultivated rice variety. We further identified 31 QTLs associated with 12 important agronomic traits and revealed that gene may play an important role in grain length regulation and participate in grain formation. To clarify the genomic characteristics from weedy rice germplasms of LM8, we generated a high-quality genome assembly using single-molecule sequencing, Bionano optical mapping, and Hi-C technologies. The genome harbored a total size of 375.8 Mb, a scaffold N50 of 24.1 Mb, and originated approximately 0.32 million years ago (Mya) and was more closely related to ssp. . and contained 672 unique genes. It is related to the formation of grain shape, heading date and tillering. This study generated a high-quality reference genome of weedy rice and high-density genetic map that would benefit the analysis of genome evolution for related species and suggested an effective way to identify genes related to important agronomic traits for further rice breeding.

摘要

在水稻驯化和育种过程中,栽培稻的一些基因已经丢失或功能减弱。杂草稻通常被认为是栽培稻和野生稻的后代,也被认为拥有用于水稻育种的基因库。因此,从杂草稻种质中鉴定基因是突破水稻育种瓶颈的重要途径。为了从杂草稻种质中发现基因,我们基于LM8与一个栽培稻品种杂交产生的F群体的全基因组测序构建了遗传图谱。我们进一步鉴定了与12个重要农艺性状相关的31个QTL,并揭示了某个基因可能在粒长调控中起重要作用并参与籽粒形成。为了阐明LM8杂草稻种质的基因组特征,我们利用单分子测序、Bionano光学图谱和Hi-C技术生成了高质量的基因组组装。该基因组总大小为375.8 Mb,支架N50为24.1 Mb,起源于大约32万年前(百万年前),与某某亚种关系更密切,包含672个独特基因。它与粒形、抽穗期和分蘖的形成有关。本研究生成了高质量的杂草稻参考基因组和高密度遗传图谱,这将有助于相关物种的基因组进化分析,并为进一步水稻育种鉴定与重要农艺性状相关的基因提供了有效途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ed/8639688/5ce6c4f676c3/fpls-12-775051-g001.jpg

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