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构建辣椒属辣椒和辣椒种间杂交的高密度遗传图谱及花部性状 QTL 分析。

Construction of a high density genetic map of an interspecific cross of Capsicum chinense and Capsicum annuum and QTL analysis of floral traits.

机构信息

Key Laboratory of Horticultural Crop Biology and Germplasm innovation in South China, College of Horticulture, South China Agricultural University, Guangzhou, 510642, China.

出版信息

Sci Rep. 2019 Jan 31;9(1):1054. doi: 10.1038/s41598-018-38370-0.

Abstract

The yield of pepper plants (Capsicum spp.) is their most important trait and is affected by the flower number and flowering time. Capsicum annuum produces a single flower per node and has an early flowering habit. By contrast, Capsicum chinense yields multiple flowers per node and has a late flowering character. However, the genetic mechanism underlying the control of these floral traits remains largely unknown. In this study, 150 F populations from an interspecific cross between the inbred lines 740 (C. chinense) and CA1 (C. annuum) and their parents were used to construct a molecular genetic linkage map using the specific length amplified fragment sequencing (SLAF-seq) technique. This linkage map, spanning 1,586.78 cM in length, contained 9,038 markers on 12 chromosomes, with a mean marker distance of 0.18 cM. Phenotypic data on the flowering time and flower number per node were collected over multiple years, and QTL analysis identified 6 QTLs for the flowering time and flower number per node by composite interval mapping (CIM) and genome-wide composite interval mapping (GCIM) methods at least in two environments. The candidate genes within the major QTL were predicted. In the major flowering time QTL, the candidate gene Capana02g000700, which encodes the homeotic protein APETALA2, was identified. Quantitative reverse-transcription PCR (qRT-PCR) analysis indicated that its expression level in 740 was higher than that in CA1. Gene expression analysis indicated that the expression of Capana02g000700 was significantly upregulated in flowers, and many floral development-related genes were found to be coexpressed with Capana02g000700, supporting the function of this gene in association with flowering time in C. chinense and C. annuum species.

摘要

辣椒植株的产量是其最重要的性状,受花数和开花时间的影响。甜椒(Capsicum annuum)每节只产生一朵花,具有早花习性。相比之下,辣椒(Capsicum chinense)每节产生多朵花,具有晚花特性。然而,控制这些花部性状的遗传机制在很大程度上仍然未知。在这项研究中,利用来自自交系 740(辣椒)和 CA1(甜椒)及其亲本的种间杂交的 150 个 F 群体,使用特异长度扩增片段测序(SLAF-seq)技术构建了一个分子遗传连锁图谱。这个连锁图谱覆盖了 1586.78cM 的长度,包含 12 条染色体上的 9038 个标记,平均标记距离为 0.18cM。在多年的时间里,收集了开花时间和每节花数的表型数据,通过复合区间作图(CIM)和全基因组复合区间作图(GCIM)方法,在至少两个环境下,共鉴定到 6 个控制开花时间和每节花数的 QTL。预测了主要 QTL 内的候选基因。在主要的开花时间 QTL 中,鉴定到候选基因 Capana02g000700,它编码同源异型蛋白 APETALA2。定量反转录 PCR(qRT-PCR)分析表明,它在 740 中的表达水平高于 CA1。基因表达分析表明,Capana02g000700 的表达在花中显著上调,并且发现许多与花发育相关的基因与 Capana02g000700 共表达,支持该基因在与辣椒和甜椒物种的开花时间相关联中的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc4c/6355862/6e6f7d7127ed/41598_2018_38370_Fig1_HTML.jpg

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