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Nature Communications:利马豆基因组

已有 1478 次阅读 2021-2-3 08:58 |个人分类:每日摘要|系统分类:论文交流

Comprehensive genomic resources related to domestication and crop improvement traits in Lima bean

第一作者Tatiana Garcia

第一单位哥伦比亚国立大学

通讯作者Maria Isabel Chacón-Sánchez


 Abstract 


背景回顾Lima bean (Phaseolus lunatus L.), one of the five domesticated Phaseolus bean crops, shows a wide range of ecological adaptations along its distribution range from Mexico to Argentina. These adaptations make it a promising crop for improving food security under predicted scenarios of climate change in Latin America and elsewhere.


主要研究:In this work, we combine long and short read sequencing technologies with a dense genetic map from a biparental population to obtain the chromosome-level genome assembly for Lima bean.


结果1-基因注释:Annotation of 28,326 gene models show high diversity among 1917 genes with conserved domains related to disease resistance.


结果2-利马豆-普通菜豆比较基因组:Structural comparison across 22,180 orthologs with common bean reveals high genome synteny and five large intrachromosomal rearrangements. 


结果3-群体遗传结构Population genomic analyses show that wild Lima bean is organized into six clusters with mostly non-overlapping distributions and that Mesomerican landraces can be further subdivided into three subclusters. 


结果4-生物学特性:RNA-seq data reveal 4275 differentially expressed genes, which can be related to pod dehiscence and seed development.


结论:We expect the resources presented here to serve as a solid basis to achieve a comprehensive view of the degree of convergent evolution of Phaseolus species under domestication and provide tools and information for breeding for climate change resiliency.


 摘 要 


利马豆是五种菜豆属驯化作物之一,其分布范围广,从墨西哥到阿根廷都有种植,表现出了较强的生态适应能力。这使得利马豆成为拉丁美洲以及其他地区在气候变迁大背景下,提升粮食安全的潜力作物。本文中,作者结合了长读长和短读长测序技术,以及来自双亲群体的高密度遗传图谱,获得了利马豆染色体级别的基因组组装。作者共注释了28326的蛋白编码基因,其中1917个基因含有与疾病抗性相关的结构域。与普通菜豆之间22180个直系同源基因的结构比较揭示了利马豆与普通菜豆之间存在较高水平的基因组共线性,并且作者发现了五个大的染色体内重排。群体基因组分析显示,野生利马豆可以划分为6个类群,不同类群之间几乎不存在交集,并且中美洲地方品种可进一步细分为三个亚类群。RNA-seq数据揭示4275个差异表达基因,可能与荚果开裂和种子发育有关。本文所提供的资源为全面了解驯化条件下菜豆属物种的趋同演化程度提供基础,并为培育具有适应气候变化能力的现代育种提供工具和信息。


 通讯作者 

**Maria Isabel Chacón-Sánchez**

个人简介:

危地马拉狄瓦耶大学,学士;

英国雷丁大学,博士


研究方向:作物进化、遗传资源、系统地理学、元基因组学


doi: https://doi.org/10.1038/s41467-021-20921-1


Journal: Nature Communications

Published date: Jan 29, 2021



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