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

Author:

Song Weiyuan1ORCID,Xie Yang2ORCID,Liu Bin3ORCID,Huang Yuxiang1ORCID,Cheng Zhihua1ORCID,Zhao Zilong4ORCID,Tian Di1ORCID,Geng Yan1ORCID,Guo Jingyu1ORCID,Li Chuang1ORCID,She Daixi1ORCID,Zhong Yanting1ORCID,Li Min1ORCID,Liu Liu1ORCID,Chen Jiacai1ORCID,Sun Chengzhen2ORCID,Zhang Xuejun3ORCID,Zhou Zhaoyang1ORCID,Lai Jinsheng4ORCID,Xin Ming5ORCID,Yan Liying2ORCID,Zhao Jianyu1ORCID,Zhang Xiaolan1ORCID

Affiliation:

1. Department of Vegetable Sciences, Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, China Agricultural University , Beijing 100193 , P. R. China

2. Hebei Key Laboratory of Horticultural Germplasm Excavation and Innovative Utilization, Hebei Normal University of Science & Technology , Qinhuangdao 066004 , P. R. China

3. Hami-melon Research Center, Xinjiang Academy of Agricultural Sciences , Urumqi 830091 , P. R. China

4. Department of Plant Genetics and Breeding, State Key Laboratory of Maize Bio-breeding, National Maize Improvement Center, Frontiers Science Center for Molecular Design Breeding, China Agricultural University , Beijing 100193 , P. R. China

5. College of Horticulture and Landscape Architecture, Key Laboratory of Biology and Genetic Improvement of Horticultural Crops (Northeast Region), Northeast Agricultural University , Harbin 150030 , P. R. China

Abstract

Abstract 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 2 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 4 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), resulting 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.

Funder

National Natural Science Foundation of China

Pinduoduo-China Agricultural University Research Fund

S&T Program of Hebei

Publisher

Oxford University Press (OUP)

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