Gutierrez Natalia, Pégard Marie, Solis Ignacio, Sokolovic Dejan, Lloyd David, Howarth Catherine, Torres Ana M
Área de Mejora Vegetal y Biotecnología, IFAPA Centro "Alameda del Obispo", Córdoba, Spain.
INRA, Centre Nouvelle-Aquitaine-Poitiers, UR4 (URP3F), Lusignan, France.
Front Plant Sci. 2024 Mar 13;15:1328690. doi: 10.3389/fpls.2024.1328690. eCollection 2024.
Yield is the most complex trait to improve crop production, and identifying the genetic determinants for high yield is a major issue in breeding new varieties. In faba bean ( L.), quantitative trait loci (QTLs) have previously been detected in studies of biparental mapping populations, but the genes controlling the main trait components remain largely unknown. In this study, we investigated for the first time the genetic control of six faba bean yield-related traits: shattering (SH), pods per plant (PP), seeds per pod (SP), seeds per plant (SPL), 100-seed weight (HSW), and plot yield (PY), using a genome-wide association study (GWAS) on a worldwide collection of 352 homozygous faba bean accessions with the aim of identifying markers associated with them. Phenotyping was carried out in field trials at three locations (Spain, United Kingdom, and Serbia) over 2 years. The faba bean panel was genotyped with the Affymetrix faba bean SNP-chip yielding 22,867 SNP markers. The GWAS analysis identified 112 marker-trait associations (MTAs) in 97 candidate genes, distributed over the six faba bean chromosomes. Eight MTAs were detected in at least two environments, and five were associated with multiple traits. The next step will be to validate these candidates in different genetic backgrounds to provide resources for marker-assisted breeding of faba bean yield.
产量是提高作物产量最复杂的性状,确定高产的遗传决定因素是培育新品种的一个主要问题。在蚕豆(Vicia faba L.)中,之前在双亲作图群体的研究中已检测到数量性状位点(QTL),但控制主要性状组成部分的基因仍大多未知。在本研究中,我们首次利用全基因组关联研究(GWAS),对来自世界各地的352份纯合蚕豆种质进行研究,以确定与六个蚕豆产量相关性状(裂荚(SH)、单株荚数(PP)、每荚种子数(SP)、单株种子数(SPL)、百粒重(HSW)和小区产量(PY))相关的标记,从而研究这些性状的遗传控制。表型分析在西班牙、英国和塞尔维亚三个地点进行了为期两年的田间试验。利用Affymetrix蚕豆SNP芯片对蚕豆群体进行基因分型,获得了22,867个SNP标记。GWAS分析在97个候选基因中鉴定出112个标记-性状关联(MTA),分布在蚕豆的6条染色体上。在至少两个环境中检测到8个MTA,5个与多个性状相关。下一步将在不同遗传背景下验证这些候选基因,为蚕豆产量的标记辅助育种提供资源。