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2025年4月4日 星期五
农业生物技术学报  2020, Vol. 28 Issue (4): 605-615    DOI: 10.3969/j.issn.1674-7968.2020.04.004
  研究论文与报告 本期目录 | 过刊浏览 | 高级检索 |
甜瓜侧枝长度QTL定位及候选基因预测
杨森要1, 刘海英1, 高路银1, 杨路明1,2, 朱华玉1,2, 胡建斌1,2*, 马长生1, 孙守如1
1 河南农业大学 园艺学院,郑州 450002;
2 河南省果树瓜类生物学重点实验室,郑州 450002
QTL Mapping and Candidate Gene Prediction of Lateral Branch Length of Melon (Cucumis melo)
YANG Sen-Yao1, Liu Hai-Ying1, GAO Lu-Yin1, YANG Lu-Ming1,2, ZHU Hua-Yu1,2, HU Jian-Bin1,2*, MA Chang-Sheng1, SUN Shou-Ru1
1 College of Horticulture, Henan Agricultural University, Zhengzhou 450002, China;
2 Henan Key Laboratory of Fruit and Cucurbit Biology, Zhengzhou 450002, China
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摘要 侧枝长度是植物的重要株型性状之一,是改良蔓生植物株型的有效切入点。本研究以甜瓜(Cucumis melo)短侧枝材料D581为父本、长侧枝材料H465为母本构建F2及F2∶3群体,研究侧枝长度的变异规律,对其进行QTL定位并预测候选基因。研究结果表明,侧枝长度在F2和F2∶3群体中呈典型的正态分布,6个侧枝性状指标的广义遗传率高于60%。利用253个SSR和InDel标记构建一张包含12个连锁群、覆盖基因组全长1 433.3 cM的遗传图谱,标记间的平均遗传距离为5.67 cM。春秋两季共定位到31个QTL,单个QTL的表型贡献率为6.39%~16.46%,不同指标和不同环境下的7个QTL被共定位在LG8的SSR029716~ECM88区间,其累积贡献率达75.66%。通过对双亲进行深度重测序(>30×),并在共定位区段开发新的InDel标记,将这一区段缩小至185 kb,该区段注释有31个基因,其中3个基因参与了植物激素信号转导途径,是调控甜瓜侧枝发育最有可能的候选基因。本研究鉴定到的QTL和候选基因是当前甜瓜侧枝性状基因发掘研究的有益启示,也为甜瓜株型分子改良提供理论依据。
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杨森要
刘海英
高路银
杨路明
朱华玉
胡建斌
马长生
孙守如
关键词 甜瓜侧枝长度QTL定位候选基因    
Abstract:Lateral branch length, one of the most important architectural traits, acts as an effective breakthrough point for architecture improvement of vine plants, such as cucumber (Cucumis sativas), melon (C. melo), and watermelon (Citrullus lanatus). In this study, the short-lateral-branching material D581 (♀) and long-lateral-branching material H465 (♂) were used as parents to establish F2 and F2∶3 populations, which were further used to study the variation pattern of lateral branch length and then map the QTLs controlling the lateral branch length as well as predict the candidate genes related to this trait. The results showed that the variation of lateral branch length revealed a typical normal distribution in F2 and F2∶3 populations, and the estimated broad sense heritability of the 6 statistic indices of lateral branch traits exceeded 60%. A total of 253 SSR and InDel markers were adopted to construct a genetic map containing 12 linkage groups, covering 1 433.3 cM distance of the melon genome with an average distance of 5.67 cM between the markers. Totally, 31 QTLs were detected in spring and autumn with the phenotypic variance explained (PVE) for a single QTL varying from 6.39% to 16.46%. Seven QTLs detected by various statistic indices or in various environments were co-located in SSR029716-ECM88 region of LG8, with a cumulative PVE of 75.66%. Subsequently, by means of deep resequencing of the parents (>30×) and development of new InDels in the targeted region, this region was further delimited to a 185 kb region which contained 31 annotated genes. Of these genes, three genes were previously reported to participate in plant hormone signal transduction and predicted as the putative candidate genes controlling lateral branch development in melon. The QTLs and candidate genes identified in this study acted as helpful directions for the current gene discovery of lateral branch traits of melon, offering a theoretical basis for molecular improvement of plant architecture in melon.
Key wordsMelon    Lateral branch length    QTL mapping    Candidate genes
收稿日期: 2019-09-06     
ZTFLH:  S652  
基金资助:河南省高校科技创新人才支持计划项目(20HASTIT035); 国家自然科学基金(31101544)
通讯作者: * jianbinhu@henau.edu.cn   
引用本文:   
杨森要, 刘海英, 高路银, 杨路明, 朱华玉, 胡建斌, 马长生, 孙守如. 甜瓜侧枝长度QTL定位及候选基因预测[J]. 农业生物技术学报, 2020, 28(4): 605-615.
YANG Sen-Yao, Liu Hai-Ying, GAO Lu-Yin, YANG Lu-Ming, ZHU Hua-Yu, HU Jian-Bin, MA Chang-Sheng, SUN Shou-Ru. QTL Mapping and Candidate Gene Prediction of Lateral Branch Length of Melon (Cucumis melo). 农业生物技术学报, 2020, 28(4): 605-615.
链接本文:  
http://journal05.magtech.org.cn/Jwk_ny/CN/10.3969/j.issn.1674-7968.2020.04.004     或     http://journal05.magtech.org.cn/Jwk_ny/CN/Y2020/V28/I4/605
 
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