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Genetic variation of temperature-regulated curd induction in cauliflower: elucidation of floral transition by genome-wide association mapping and gene expression analysis

机译:花椰菜中温度调节的凝乳诱导的遗传变异:通过全基因组关联映射和基因表达分析阐明花卉过渡

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摘要

Cauliflower (Brassica oleracea var. botrytis) is a vernalization-responsive crop. High ambient temperatures delay harvest time. The elucidation of the genetic regulation of floral transition is highly interesting for a precise harvest scheduling and to ensure stable market supply. This study aims at genetic dissection of temperature-dependent curd induction in cauliflower by genome-wide association studies and gene expression analysis. To assess temperature dependent curd induction, two greenhouse trials under distinct temperature regimes were conducted on a diversity panel consisting of 111 cauliflower commercial parent lines, genotyped with 14,385 SNPs. Broad phenotypic variation and high heritability (0.93) were observed for temperature-related curd induction within the cauliflower population. GWA mapping identified a total of 18 QTL localized on chromosomes O1, O2, O3, O4, O6, O8, and O9 for curding time under two distinct temperature regimes. Among those, several QTL are localized within regions of promising candidate flowering genes. Inferring population structure and genetic relatedness among the diversity set assigned three main genetic clusters. Linkage disequilibrium (LD) patterns estimated global LD extent of r(2) = 0.06 and a maximum physical distance of 400 kb for genetic linkage. Transcriptional profiling of flowering genes FLOWERING LOCUS C (BoFLC) and VERNALIZATION 2 (BoVRN2) was performed, showing increased expression levels of BoVRN2 in genotypes with faster curding. However, functional relevance of BoVRN2 and BoFLC2 could not consistently be supported, which probably suggests to act facultative and/or might evidence for BoVRN2/BoFLC-independent mechanisms in temperature regulated floral transition in cauliflower. Genetic insights in temperature-regulated curd induction can underpin genetically informed phenology models and benefit molecular breeding strategies toward the development of thermo-tolerant cultivars.
机译:花椰菜(Brassica oleracea var。botrytis)是春化反应性作物。较高的环境温度会延迟收获时间。阐明花卉过渡的遗传调控对于精确的收获计划和确保稳定的市场供应非常有趣。本研究旨在通过全基因组关联研究和基因表达分析对花椰菜中温度依赖性凝乳诱导的遗传解剖进行研究。为了评估温度依赖性的凝乳诱导,在由111种花椰菜商品亲本系,以14,385个SNP基因型组成的多样性小组上,在不同温度下进行了两次温室试验。在花椰菜种群中与温度相关的凝乳诱导观察到广泛的表型变异和高遗传力(0.93)。 GWA映射确定了总共18个QTL,它们位于两个不同温度模式下的凝缩时间,分别位于O1,O2,O3,O4,O6,O8和O9染色体上。其中,几个QTL位于有希望的候选开花基因区域内。推断多样性集之间的种群结构和遗传相关性分配了三个主要的遗传簇。连锁不平衡(LD)模式估计全局LD范围为r(2)= 0.06,最大遗传距离为400 kb。进行开花基因FLOWERING LOCUS C(BoFLC)和VERNALIZATION 2(BoVRN2)的转录谱分析,显示基因型中BoVRN2的表达水平增加,并且固化速度更快。然而,不能始终如一地支持BoVRN2和BoFLC2的功能相关性,这可能表明在花椰菜中温度调节的花期过渡中,BoVRN2 / BoFLC独立机制发挥了兼性作用和/或证据。温度调节凝乳诱导的遗传学见识可以支撑遗传学上的物候模型,并有助于分子育种策略发展耐热品种。

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