Single nucleotide polymorphisms in SEPALLATA 2 underlie fruit length variation in cucurbits

生物 黄瓜 甜瓜 单核苷酸多态性 基因 突变体 遗传学 作物 表型 人口 栽培 植物 园艺 基因型 农学 社会学 人口学
作者
Weiyuan Song,Yang Xie,Bin Liu,Yuxiang Huang,Zhihua Cheng,Zilong Zhao,Di Tian,Yan Geng,Jingyu Guo,Chuang Li,D Y She,Yanting Zhong,Min Li,Liu Liu,Jiacai Chen,Chengzhen Sun,Xuejun Zhang,Zhaoyang Zhou,Jinsheng Lai,Ming Xin,Liying Yan,Jianyu Zhao,Xiaolan Zhang
出处
期刊:The Plant Cell [Oxford University Press]
标识
DOI:10.1093/plcell/koae228
摘要

Complete disruption of critical genes is generally accompanied by severe growth and developmental defects, which dramatically hinder its utilization in crop breeding. Identifying subtle changes, such as single nucleotide polymorphisms (SNPs), in critical genes that specifically modulate a favorable trait is a prerequisite to fulfill breeding potential. Here, we found two SNPs in the E-class floral organ identity gene cucumber (Cucumis sativus) SEPALLATA2 (CsSEP2) that specifically regulate fruit length. Haplotype (HAP) 1 (8G2667A) and HAP2 (8G2667T) exist in natural populations, whereas HAP3 (8A2667T) is induced by ethyl methanesulfonate mutagenesis. Phenotypic characterization of four near-isogenic lines and a mutant line showed that HAP2 fruits are significantly longer than those of HAP1, and those of HAP3 are 37.8% longer than HAP2 fruit. The increasing fruit length in HAP1-3 was caused by a decreasing inhibitory effect on CRABS CLAW (CsCRC) transcription (a reported positive regulator of fruit length), resultinged in enhanced cell expansion. Moreover, a 7638G/A-SNP in melon (Cucumis melo) CmSEP2 modulates fruit length in a natural melon population via the conserved SEP2-CRC module. Our findings provide a strategy for utilizing essential regulators with pleiotropic effects during crop breeding.
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