Guo Junjia, Qi Feiyan, Qin Li, Zhang Maoning, Sun Ziqi, Li Hongyan, Cui Mengjie, Zhang Mengyuan, Li Chenyu, Li Xiaona, Zhao Qi, Luo Dandan, Tian Mengdi, Liu Hua, Xu Jing, Miao Lijuan, Huang Bingyan, Dong Wenzhao, Han Suoyi, Zhang Xinyou
Henan Academy of Crops Molecular Breeding/Postgraduate T&R Base of Zhengzhou University/The Shennong Laboratory/Key Laboratory of Oil Crops in Huang-Huai-Hai Plains, Ministry of Agriculture/Henan Provincial Key Laboratory for Oil Crop Improvement/National Centre for Plant Breeding, Xinxiang, Henan, China.
Front Genet. 2023 Jan 4;13:1089389. doi: 10.3389/fgene.2022.1089389. eCollection 2022.
As an important factor affecting the edible quality of peanut kernels, sucrose content is a complex quantitative trait regulated by multiple factors. In this study, an F segregating population and a recombinant inbred line (RIL) population, derived from a cross between the high sucrose content variety Jihuatian 1 and the low sucrose content line PI478819, were used as materials to map a quantitative trait locus (QTL) associated with sucrose content in peanut kernels. Four QTLs were initially located on chromosomes A03 and A06 based on BSA-seq technology, and multiple kompetitive allele-specific PCR markers were developed based on single-nucleotide polymorphisms (SNPs) in the intervals. The markers were genotyped in the RIL population and finely mapped to a stable QTL, , located on chromosome A06 within a 0.29-Mb physical genomic interval (112367085-112662675 bp), which accounted for 31.95%-41.05% of the phenotypic variance explained. SNP and insertion/deletion annotations were performed on genes in the candidate interval, and having screened out those genes with mutations in exons, candidate genes were verified by qRT-PCR. The results revealed that may be the main gene regulating sucrose content. The QTL identified in this study will not only contribute to marker-assisted breeding for improvement of peanut sucrose content but also paves the way for identifying gene function.
作为影响花生仁食用品质的重要因素,蔗糖含量是一个受多种因素调控的复杂数量性状。本研究以高蔗糖含量品种冀花甜1号与低蔗糖含量品系PI478819杂交衍生的F分离群体和重组自交系(RIL)群体为材料,对花生仁中与蔗糖含量相关的数量性状位点(QTL)进行定位。基于BSA-seq技术,最初在A03和A06染色体上定位到4个QTL,并根据区间内的单核苷酸多态性(SNP)开发了多个竞争性等位基因特异性PCR标记。这些标记在RIL群体中进行基因分型,并精细定位到一个稳定的QTL,位于A06染色体上一个0.29-Mb的物理基因组区间(112367085-112662675 bp)内,解释的表型变异为31.95%-41.05%。对候选区间内的基因进行SNP和插入/缺失注释,筛选出那些外显子有突变的基因,通过qRT-PCR对候选基因进行验证。结果表明, 可能是调控蔗糖含量的主基因。本研究中鉴定的QTL不仅有助于花生蔗糖含量改良的分子标记辅助育种,也为基因功能鉴定铺平了道路。