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对多样化草莓种质资源进行的全基因组关联研究揭示了控制农艺性状和果实品质性状的基因座。

Genome-wide association studies in a diverse strawberry collection unveil loci controlling agronomic and fruit quality traits.

作者信息

Muñoz Pilar, Roldán-Guerra Francisco Javier, Verma Sujeet, Ruiz-Velázquez Mario, Torreblanca Rocío, Oiza Nicolás, Castillejo Cristina, Sánchez-Sevilla José F, Amaya Iraida

机构信息

Centro IFAPA de Málaga, Instituto Andaluz de Investigación y Formación Agraria y Pesquera (IFAPA), Málaga, Spain.

Department of Horticultural Sciences, IFAS Gulf Coast Research and Education Center, University of Florida, Wimauma, Florida, USA.

出版信息

Plant Genome. 2024 Dec;17(4):e20509. doi: 10.1002/tpg2.20509. Epub 2024 Oct 15.

Abstract

Strawberries (Fragaria sp.) are cherished for their organoleptic properties and nutritional value. However, breeding new cultivars involves the simultaneous selection of many agronomic and fruit quality traits, including fruit firmness and extended postharvest life. The strawberry germplasm collection here studied exhibited extensive phenotypic variation in 26 agronomic and fruit quality traits across three consecutive seasons. Phenotypic correlations and principal component analysis revealed relationships among traits and accessions, emphasizing the impact of plant breeding on fruit weight and firmness to the detriment of sugar or vitamin C content. Genetic diversity analysis on 124 accessions using 44,408 markers denoted a population structure divided into six subpopulations still retaining considerable diversity. Genome-wide association studies for the 26 traits unveiled 121 significant marker-trait associations distributed across 95 quantitative trait loci (QTLs). Multiple associations were detected for fruit firmness, a key breeding target, including a prominent locus on chromosome 6A. The candidate gene FaPG1, controlling fruit softening and postharvest shelf life, was identified within this QTL region. Differential expression of FaPG1 confirmed its role as the primary contributor to natural variation in fruit firmness. A kompetitive allele-specific PCR assay based on the single nucleotide polymorphism (SNP) AX-184242253, associated with the 6A QTL, predicts a substantial increase in fruit firmness, validating its utility for marker-assisted selection. In essence, this comprehensive study provides insights into the phenotypic and genetic landscape of the strawberry collection and lays a robust foundation for propelling the development of superior strawberry cultivars through precision breeding.

摘要

草莓(草莓属)因其感官特性和营养价值而备受珍视。然而,培育新品种需要同时选择许多农艺和果实品质性状,包括果实硬度和延长的采后寿命。这里研究的草莓种质资源在连续三个季节的26个农艺和果实品质性状上表现出广泛的表型变异。表型相关性和主成分分析揭示了性状和种质之间的关系,强调了植物育种对果实重量和硬度的影响,而对糖分或维生素C含量产生了不利影响。使用44,408个标记对124份种质进行的遗传多样性分析表明,群体结构分为六个亚群,仍保留着相当大的多样性。对这26个性状的全基因组关联研究揭示了121个显著的标记-性状关联,分布在95个数量性状位点(QTL)上。对于关键育种目标果实硬度检测到多个关联,包括6A染色体上的一个突出位点。在这个QTL区域内鉴定出控制果实软化和采后货架期的候选基因FaPG1。FaPG1的差异表达证实了其作为果实硬度自然变异主要贡献者的作用。基于与6A QTL相关的单核苷酸多态性(SNP)AX-184242253的竞争性等位基因特异性PCR分析预测果实硬度将大幅增加,验证了其在标记辅助选择中的效用。本质上,这项全面的研究为草莓种质的表型和遗传格局提供了见解,并为通过精准育种推动优良草莓品种的开发奠定了坚实基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c519/11628880/ef4bb39910d6/TPG2-17-e20509-g004.jpg

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