综合全基因组关联和转录组学研究揭示了大量大蒜种质资源球茎贮藏性的遗传结构。

IF 7.6 Q1 GENETICS & HEREDITY
园艺研究(英文) Pub Date : 2024-09-16 eCollection Date: 2024-12-01 DOI:10.1093/hr/uhae260
Yue Zhu, Huixia Jia, Jiangping Song, Tingting Zhang, Xiaohui Zhang, Wenlong Yang, Yumin Tan, Mengzhen Wang, Jiyan Zang, Haiping Wang
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引用次数: 0

摘要

大蒜是一种应用广泛的调味品和保健品。然而,大蒜球茎在采后容易出现品质劣化,导致经济价值下降。本研究通过连续两年对全球501份大蒜材料的腐烂指数(DI)、腐烂率、出芽率和芽瓣比的检测,对其贮藏性进行了评价。采用DI作为评价大蒜贮藏性的主要指标。其中43个品种在DI为0% ~ 5%的条件下具有较强的贮藏性。表型和细胞学观察表明,强储存性材料表现出发芽和腐烂延迟,营养物质转移到维管束的速度缓慢。通过全基因组关联研究(GWAS),发现234个单核苷酸多态性位点(SNPs)与耐贮性相关,这些位点位于401个基因或其附近,并标注了抗性、储存物质转运等功能。使用选择性扫描分析共筛选了44个基因。在储存能力强的8N035和储存能力弱的8N258中,分别在贮藏后4个时期进行转录组学分析。与8N035相比,8N258中上调基因在光合作用和胁迫响应中富集,而下调基因在生物和非生物胁迫和防御响应中富集。共表达网络和GWAS鉴定出三个枢纽基因作为关键调控基因。GWAS、选择性扫描和转录组学分析联合分析确定了21个重要的候选基因。这些发现为大蒜生物育种提供了优良的贮藏性资源和重要的贮藏性调控候选基因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated genome-wide association and transcriptomic studies reveal genetic architecture of bulb storability of plentiful garlic germplasm resources.

Garlic is a widely utilized condiment and health product. However, garlic bulbs are prone to quality deterioration resulting in decrease of economic value during postharvest. In this study, the storability of 501 garlic accessions worldwide was evaluated based on the examination of decay index (DI), decay rate, sprouting rate, and bud-to-clove ratio in two consecutive years. The DI was employed as a primary index for evaluating the storability of garlic. Among these garlic, 43 accessions exhibited strong storability with DI of 0%-5%. Phenotypic and cytological observations revealed that strong storability accessions displayed delayed sprouting and decay, a slow rate of nutrient transfer to vascular bundles. Through genome-wide association study (GWAS), 234 single-nucleotide polymorphism loci (SNPs) were associated with the storability, which were located in or near 401 genes, which were annotated the functions of resistance, storage substances transport, etc. A total of 44 genes were screened using selective sweep analysis. Transcriptomic analysis was performed at four periods after storage in the 8N035 accession with strong storability and 8N258 accession with weak storability. Compared with 8N035, the upregulated genes in the 8N258 were enriched in photosynthesis and stress response, whereas the downregulated genes were enriched in response of biotic and abiotic stress and defense response. A co-expression network and GWAS identified three hub genes as key regulatory genes. Conjoint analysis of GWAS, selective sweep, and transcriptomic analysis identified 21 important candidate genes. These findings provided excellent resources with storability and vital candidate genes regulating storability for biological breeding of garlic.

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