Song Gengxing, Dong Shiyao, Liu Chuanhong, Zou Jiaqi, Ren Jie, Feng Hui
College of Horticulture, Shenyang Agricultural University, Shenyang, 110866, People's Republic of China.
Theor Appl Genet. 2023 Sep 30;136(10):216. doi: 10.1007/s00122-023-04464-1.
BrKCS6 encoding 3-ketoacyl-CoA synthases was cloned through MutMap and KASP analysis, and its function was verified via allelic mutants in Chinese cabbage. Bright and glossy green appearance is an attractive commodity character for leafy vegetables and is mainly caused by the absence of epicuticular wax crystals. In this study, two allelic epicuticular wax crystal deficiency mutants, wdm9 and wdm10, were obtained from an EMS mutagenesis population of Chinese cabbage (Brassica rapa L. ssp. pekinensis). Genetic analysis revealed that the mutant phenotype was controlled by a recessive nuclear gene. BrKCS6 encoding 3-ketoacyl-CoA synthases was identified as the candidate gene by MutMap and KASP analysis. A SNP (G to A) on BrKCS6 in wdm9 led to the amino acid substitution from serine (S) to phenylalanine (F), and another SNP (G to A) in wdm10 resulted in the amino acid substitution from serine (S) to leucine (L). Both SNPs are located in the ACP_syn_III_C conserved domain, corresponding to two highly conserved sites among BrKCS6 and its homologs. These two amino acid substitutions changed the secondary structure and the three-dimensional structure of BrKCS6 protein. qRT-PCR results showed that the relative expression of BrKCS6 significantly decreased in the flower, stem, and leaves in mutant, and the relative expressions of the downstream key genes of BrKCS6 were down-regulated in mutant. We were the first to clone the precious glossy bright gene BrKCS6 which has a great potential for commodity quality breeding in Chinese cabbage.
通过MutMap和KASP分析克隆了编码3-酮脂酰辅酶A合酶的BrKCS6,并通过大白菜的等位基因突变体验证了其功能。叶片亮绿有光泽的外观是叶菜类蔬菜吸引人的商品性状,主要是由于表皮蜡质晶体缺失所致。在本研究中,从大白菜(Brassica rapa L. ssp. pekinensis)的EMS诱变群体中获得了两个等位的表皮蜡质晶体缺失突变体wdm9和wdm10。遗传分析表明,突变体表型受一个隐性核基因控制。通过MutMap和KASP分析,将编码3-酮脂酰辅酶A合酶的BrKCS6鉴定为候选基因。wdm9中BrKCS6上的一个SNP(G突变为A)导致氨基酸从丝氨酸(S)替换为苯丙氨酸(F),wdm10中的另一个SNP(G突变为A)导致氨基酸从丝氨酸(S)替换为亮氨酸(L)。这两个SNP均位于ACP_syn_III_C保守结构域,对应于BrKCS6及其同源物中的两个高度保守位点。这两个氨基酸替换改变了BrKCS6蛋白的二级结构和三维结构。qRT-PCR结果表明,突变体中BrKCS6在花、茎和叶中的相对表达显著降低,BrKCS6下游关键基因的相对表达在突变体中下调。我们首次克隆了珍贵的亮绿基因BrKCS6,其在大白菜商品品质育种中具有巨大潜力。