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豇豆([L.] Walp)地方品种中与产量相关性状相关的新基因组区域的鉴定。

Identification of novel genomic regions associated with yield-related traits in cowpea ( [L.] Walp) landraces.

作者信息

Han Lei, Wang Baogen, Wu Xiaohua, Chen Xiaoyang, Li Xiao, Wang Ying, Wang Jian, Tang Qingya, Lu Zhongfu, Li Guojing, He Yong, Wu Xinyi

机构信息

Discipline of Facility Horticulture, College of Horticulture Science, Zhejiang A&F University, Hangzhou, 311300 Zhejiang China.

State Key Laboratory for Quality and Safety of Agro-Products, Xianghu Laboratory, Key Laboratory of Vegetable Legumes Germplasm Enhancement and Molecular Breeding in Southern China (Co-Construction By Ministry and Province), Ministry of Agriculture and Rural Affairs, Key Laboratory of Vegetable Germplasm Innovation and Quality Breeding in the Province, Institute of VegetablesZhejiang, Academy of Agricultural Sciences, Hangzhou, 310021 Zhejiang China.

出版信息

Mol Breed. 2025 Jul 29;45(8):65. doi: 10.1007/s11032-025-01585-x. eCollection 2025 Aug.

Abstract

UNLABELLED

Cowpea is an important multipurpose legume crop that used for food, feed and vegetable worldwide. Developing the high yield cultivars is the first target in cowpea breeding, however, the genetic basis of this complex trait is not yet well understood. To discover the genetic architecture of cowpea yield, a total of 215 cowpea landraces collected from Zhejiang Province were evaluated for four yield-related traits including branch number per plant (BNP), grain number per pod (GNP), pod length (PL), and pod number per plant (PNP). By resequencing this diversity panel, total of 3,880,169 high-confidence single nucleotide polymorphisms (SNPs) were identified, population structure analysis showed that these cowpea landraces were classified into four subpopulations and the subpopulation division was highly related to the pod length and pod-type. Through conducting a GWAS on the four traits, 24 genomic regions significantly associated with cowpea yield were detected and haplotype analysis showed the favorable genotypes of each locus has stronger genetic effect on the yield-related traits. Based on the cowpea G98 reference genome, six predicated genes (, , , , , ) were identified as the likely candidate genes for BNP_6.2, BNP_9.1, GNP_1.1, PL_1.1, PNP_1.2 and PNP_7.1, respectively, which involving in multiple pathways such as auxin response and regulation, cell expansion and ovary development. These results will facilitate the molecular breeding of high yield cultivars in cowpea and benefit for improving the global food security and the nutritional structure of human diets.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s11032-025-01585-x.

摘要

未标注

豇豆是一种重要的多用途豆类作物,在全球范围内用于食品、饲料和蔬菜。培育高产品种是豇豆育种的首要目标,然而,这种复杂性状的遗传基础尚未得到很好的理解。为了揭示豇豆产量的遗传结构,对从浙江省收集的215份豇豆地方品种进行了四个产量相关性状的评估,包括单株分枝数(BNP)、每荚粒数(GNP)、荚长(PL)和单株荚数(PNP)。通过对这个多样性群体进行重测序,共鉴定出3,880,169个高可信度单核苷酸多态性(SNP),群体结构分析表明这些豇豆地方品种被分为四个亚群,亚群划分与荚长和荚型高度相关。通过对这四个性状进行全基因组关联研究(GWAS),检测到24个与豇豆产量显著相关的基因组区域,单倍型分析表明每个位点的有利基因型对产量相关性状具有更强的遗传效应。基于豇豆G98参考基因组,分别鉴定出六个预测基因(,,,,,)作为BNP_6.2、BNP_9.1、GNP_1.1、PL_1.1、PNP_1.2和PNP_7.1的可能候选基因,这些基因涉及生长素反应和调控、细胞扩张和子房发育等多种途径。这些结果将有助于豇豆高产品种的分子育种,并有利于改善全球粮食安全和人类饮食的营养结构。

补充信息

在线版本包含可在10.1007/s11032-025-0158

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