Metabolic, transcriptomic, and genetic analyses of candidate genes for seed size in watermelon

Xiqing Wang, Wen Yan, Núria Real, Yunhe Jia, Yongkai Fu, Xuejun Zhang, Haibo You, Yi Cai, Bin Liu
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Abstract

Seed size (SS) constitutes a pivotal trait in watermelon breeding. In this study, we present findings from an examination of two watermelon accessions, namely, BW85 and F211. Seeds from BW85 exhibited a significant enlargement compared to those of F211 at 13 days after pollination (DAP), with the maximal disparity in seed length and width manifesting at 17 DAP. A comprehensive study involving both metabolic and transcriptomic analyses indicated a significant enrichment of the ubiquinone and other terpenoid-quinone biosynthesis KEGG pathways. To detect the genetic region governing seed size, a BSA-seq analysis was conducted utilizing the F2 (BW85 × F211) population, which resulted in the identification of two adjacent QTLs, namely, SS6.1 and SS6.2, located on chromosomes 6. SS6.1 spanned from Chr06:4847169 to Chr06:5163486, encompassing 33 genes, while SS6.2 ranged from Chr06:5379337 to Chr06:5419136, which included only one gene. Among these genes, 11 exhibited a significant differential expression between BW85 and F211 according to transcriptomic analysis. Notably, three genes (Cla97C06G113960, Cla97C06G114180, and Cla97C06G114000) presented a differential expression at both 13 and 17 DAP. Through annotation, Cla97C06G113960 was identified as a ubiquitin-conjugating enzyme E2, playing a role in the ubiquitin pathway that mediates seed size control. Taken together, our results provide a novel candidate gene influencing the seed size in watermelon, shedding light on the mechanism underlying seed development.
西瓜种子大小候选基因的代谢、转录组和遗传分析
种子大小(SS)是西瓜育种中的一个关键性状。在本研究中,我们介绍了对两个西瓜品种(即 BW85 和 F211)的研究结果。在授粉后 13 天,BW85 的种子比 F211 的种子明显增大,在授粉后 17 天,种子长度和宽度的差异达到最大。一项涉及代谢和转录组分析的综合研究表明,泛醌和其他萜类-醌类生物合成 KEGG 通路显著富集。为了检测控制种子大小的遗传区域,利用 F2(BW85 × F211)群体进行了 BSA-seq 分析,结果发现了两个相邻的 QTL,即 SS6.1 和 SS6.2,它们位于第 6 号染色体上。SS6.1 从 Chr06:4847169 到 Chr06:5163486,包含 33 个基因;SS6.2 从 Chr06:5379337 到 Chr06:5419136,只包含 1 个基因。根据转录组分析,在这些基因中,有 11 个基因在 BW85 和 F211 之间表现出显著的表达差异。值得注意的是,有 3 个基因(Cla97C06G113960、Cla97C06G114180 和 Cla97C06G114000)在 13 和 17 DAP 均表现出差异表达。通过注释,Cla97C06G113960 被鉴定为泛素结合酶 E2,在介导种子大小控制的泛素途径中发挥作用。综上所述,我们的研究结果提供了一个影响西瓜种子大小的新候选基因,揭示了种子发育的内在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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