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基于同源四倍体马铃薯基因组对马铃薯自然群体中块茎形状和芽眼深度的遗传决定因素的洞察。

Insights into the genetic determination of tuber shape and eye depth in potato natural population based on autotetraploid potato genome.

作者信息

Zhao Long, Zou Meiling, Deng Ke, Xia Chengcai, Jiang Sirong, Zhang Chenji, Ma Yongzhen, Dong Xiaorui, He Miaohua, Na Tiancang, Wang Jian, Xia Zhiqiang, Wang Fang

机构信息

Academy of Agriculture and Forestry Sciences, Qinghai University, Xining, China.

National Key Laboratory of Sanjiangyuan Ecology and Plateau Agriculture and Animal Husbandry, Qinghai University, Xining, China.

出版信息

Front Plant Sci. 2023 Mar 28;14:1080666. doi: 10.3389/fpls.2023.1080666. eCollection 2023.

Abstract

Potato is one of the world's most important food crops, with a time-consuming breeding process. In this study, we performed a genome-wide association (GWAS) analysis of the two important traits of potato tuber shape and eye depth, using the tetraploid potato genome (2n=4x=48) as a reference. A total of 370 potatoes were divided into three subgroups based on the principal component analysis and evolutionary tree analysis. The genetic diversity within subgroups is low (5.18×10, 4.36×10 and 4.24×10). Genome-wide linkage disequilibrium (LD) analysis showed that their LD is about 60 Kb. GWAS analysis identified that 146 significant single nucleotide polymorphism (SNP) loci at Chr01A1:34.44-35.25 Mb and Chr02A1:28.35-28.54 Mb regions are significantly associated with potato tuber shape, and that three candidate genes that might be related to potato tuber traits, transcription factor, and DNA-binding domain, are in the association region of Chr02A1. GWAS analysis identified 53 significant SNP loci at Chr05A2: 49.644-50.146 Mb and Chr06A2: 25.866-26.384 Mb regions with robust associations with potato tuber eye depth. Hydrolase and methyltransferases are present in the association region of Chr05A2, and three CYPs are present in the association region of Chr06A2. Our findings suggested that these genes are closely associated with potato tuber shape and eye depth. Our study identified molecular markers and candidate genes for improving tetraploid potato tuber shape and eye depth and provided ideas and insights for tetraploid potato breeding.

摘要

马铃薯是世界上最重要的粮食作物之一,其育种过程耗时较长。在本研究中,我们以四倍体马铃薯基因组(2n = 4x = 48)为参考,对马铃薯块茎形状和芽眼深度这两个重要性状进行了全基因组关联(GWAS)分析。基于主成分分析和进化树分析,共将370份马铃薯分为三个亚组。亚组内的遗传多样性较低(5.18×10、4.36×10和4.24×10)。全基因组连锁不平衡(LD)分析表明,它们的LD约为60 Kb。GWAS分析确定,在Chr01A1:34.44 - 35.25 Mb和Chr02A1:28.35 - 28.54 Mb区域的146个显著单核苷酸多态性(SNP)位点与马铃薯块茎形状显著相关,并且在Chr02A1的关联区域中有三个可能与马铃薯块茎性状相关的候选基因,即转录因子和DNA结合结构域。GWAS分析确定,在Chr05A2: 49.644 - 50.146 Mb和Chr06A2: 25.866 - 26.384 Mb区域的53个显著SNP位点与马铃薯块茎芽眼深度有强烈关联。水解酶和甲基转移酶存在于Chr05A2的关联区域,三个细胞色素P450(CYPs)存在于Chr06A2的关联区域。我们的研究结果表明,这些基因与马铃薯块茎形状和芽眼深度密切相关。我们的研究鉴定了用于改良四倍体马铃薯块茎形状和芽眼深度的分子标记和候选基因,并为四倍体马铃薯育种提供了思路和见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bae/10086151/838d50d8c2a3/fpls-14-1080666-g001.jpg

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