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长豇豆(亚种)的基因组和泛基因组组装揭示了冷适应的遗传基础。

Genome and pan-genome assembly of asparagus bean ( ssp. ) reveal the genetic basis of cold adaptation.

作者信息

Liang Le, Zhang Jianwei, Xiao Jiachang, Li Xiaomei, Xie Yongdong, Tan Huaqiang, Song Xueping, Zhu Li, Xue Xinru, Xu Linyu, Zhou Peihan, Ran Jianzhao, Sun Bo, Huang Zhi, Tang Yi, Lin Lijin, Sun Guochao, Lai Yunsun, Li Huanxiu

机构信息

College of Horticulture, Sichuan Agricultural University, Chengdu, Sichuan, China.

Vegetable Germplasm Innovation and Variety Improvement Key Laboratory of Sichuan, Chengdu, China.

出版信息

Front Plant Sci. 2022 Dec 16;13:1059804. doi: 10.3389/fpls.2022.1059804. eCollection 2022.

Abstract

Asparagus bean ( ssp. ) is an important cowpea subspecies. We assembled the genomes of Ningjiang 3 (NJ, 550.31 Mb) and Dubai bean (DB, 564.12 Mb) for comparative genomics analysis. The whole-genome duplication events of DB and NJ occurred at 64.55 and 64.81 Mya, respectively, while the divergence between soybean and occurred in the Paleogene period. NJ genes underwent positive selection and amplification in response to temperature and abiotic stress. In species-specific gene families, NJ is mainly enriched in response to abiotic stress, while DB is primarily enriched in respiration and photosynthesis. We established the pan-genomes of four accessions (NJ, DB, IT97K-499-35 and Xiabao II) and identified 20,336 (70.5%) core genes present in all the accessions, 6,507 (55.56%) variable genes in two individuals, and 2,004 (6.95%) unique genes. The final pan genome is 616.35 Mb, and the core genome is 399.78 Mb. The variable genes are manifested mainly in stress response functions, ABC transporters, seed storage, and dormancy control. In the pan-genome sequence variation analysis, genes affected by presence/absence variants were enriched in biological processes associated with defense responses, immune system processes, signal transduction, and agronomic traits. The results of the present study provide genetic data that could facilitate efficient asparagus bean genetic improvement, especially in producing cold-adapted asparagus bean.

摘要

长豇豆是豇豆的一个重要亚种。我们组装了宁江3号(NJ,550.31 Mb)和迪拜豆(DB,564.12 Mb)的基因组用于比较基因组学分析。DB和NJ的全基因组复制事件分别发生在6455万年前和6481万年前,而大豆与之的分化发生在古近纪时期。NJ基因在响应温度和非生物胁迫时经历了正选择和扩增。在物种特异性基因家族中,NJ主要富集于对非生物胁迫的响应,而DB主要富集于呼吸作用和光合作用。我们构建了四个种质(NJ、DB、IT97K - 499 - 35和夏宝二号)的泛基因组,鉴定出所有种质中存在的20336个(70.5%)核心基因、两个个体中6507个(55.56%)可变基因以及2004个(6.95%)独特基因。最终的泛基因组为616.35 Mb,核心基因组为399.78 Mb。可变基因主要表现在胁迫响应功能、ABC转运蛋白、种子储存和休眠控制方面。在泛基因组序列变异分析中,受存在/缺失变异影响的基因在与防御反应、免疫系统过程、信号转导和农艺性状相关的生物学过程中富集。本研究结果提供了遗传数据,有助于高效开展长豇豆遗传改良,特别是培育适应寒冷环境的长豇豆。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e22/9802904/1991ac40a77b/fpls-13-1059804-g001.jpg

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