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甜瓜果实相关性状的分子图谱构建以及种子大小候选基因的联合鉴定与选择性清除分析

Molecular mapping for fruit-related traits, and joint identification of candidate genes and selective sweeps for seed size in melon.

作者信息

Zhang Hong, Zhang Xuejun, Li Meihua, Yang Yong, Li Zhiqiang, Xu Yuhui, Wang Haojie, Wang Dengming, Zhang Yongbing, Wang Huaisong, Fu Qiushi, Zheng Jing, Yi Hongping

机构信息

Hami Melon Research Center, Xinjiang Academy of Agricultural Sciences, Urumqi, Xinjiang 830091, China.

Hami Melon Research Center, Xinjiang Academy of Agricultural Sciences, Urumqi, Xinjiang 830091, China.

出版信息

Genomics. 2022 Mar;114(2):110306. doi: 10.1016/j.ygeno.2022.110306. Epub 2022 Feb 4.

Abstract

Melon is a popular fruit vegetable crop worldwide with diverse morphological variation. We report a high-density genetic map of melon and nine major QTLs with physical region ranging from 43.47 kb to 1.89 Mb. Importantly, two seed-related trait QTLs were repeatedly detected in two environments, and the mapping region was narrowed to 522 kb according to a regional linkage analysis. A total of 40 annotated genes were screened for nonsynonymous variations, of which EVM0009818, involved in cytokinin-activated signaling, was differentially expressed in the young fruits of parents based on RNA-seq. Selective sweep analysis identified 152 sweep signals for seed size, including the two seed-related QTLs and nine homologs that have been verified to regulate seed size in Arabidopsis or rice. This work illustrates the power of a joint analysis combining resequencing-based genetic map for QTL mapping and a combination of KASP genotyping and RNA-seq analysis to facilitate QTL fine mapping.

摘要

甜瓜是一种在全球范围内广受欢迎的果菜作物,具有多样的形态变异。我们报告了一份甜瓜的高密度遗传图谱以及9个主要QTL,其物理区域范围从43.47 kb到1.89 Mb。重要的是,在两种环境中反复检测到两个与种子相关的性状QTL,并且根据区域连锁分析将定位区域缩小到522 kb。总共筛选了40个注释基因的非同义变异,其中参与细胞分裂素激活信号传导的EVM0009818在基于RNA测序的亲本幼果中差异表达。选择性扫描分析确定了152个种子大小的扫描信号,包括两个与种子相关的QTL和9个已被证实可调节拟南芥或水稻种子大小的同源基因。这项工作说明了联合分析的作用,该联合分析将基于重测序的遗传图谱用于QTL定位,以及将KASP基因分型和RNA测序分析相结合以促进QTL精细定位。

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