Beijing Vegetable Research Center (BVRC), Beijing Academy of Agriculture and Forestry Science (BAAFS), Beijing, 100097, China.
National Engineering Research Center for Vegetables, Beijing, 100097, China.
Plant Cell Environ. 2019 Nov;42(11):3044-3060. doi: 10.1111/pce.13612. Epub 2019 Aug 1.
Tipburn is an irreversible physiological disorder of Chinese cabbage that decreases crop value. Because of a strong environmental component, tipburn-resistant cultivars are the only solution, although tipburn resistance genes are unknown in Chinese cabbage. We studied three populations of Chinese cabbage over four growing seasons under field conditions: (a) 194 diverse inbred lines, (b) a doubled haploid (DH100) population, and (c) an F population. The 194 lines were genotyped using single nucleotide polymorphism markers, and genome-wide-association mapping showed that 24 gQTLs were significantly associated with tipburn disease index. Analysis of the DH100 and F populations identified a shared tipburn-associated locus, gqbTRA06, that was found to cover the region defined by one of the 24 gQTLs. Of 35 genes predicted in the 0.14-Mb quantitative trait locus region, Bra018575 (calreticulin family protein, BrCRT2) showed higher expression levels during disease development. We cloned the two BrCRT2 alleles from tipburn-resistant (BrCRT2 ) and tipburn-susceptible (BrCRT2 ) lines and identified a 51-bp deletion in BrCRT2 . Overexpression of BrCRT2 increased Ca storage in the Arabidopsis crt2 mutant and also reduced cell death in leaf tips and margins under Ca -depleted conditions. Our results suggest that BrCRT2 is a possible candidate gene for controlling tipburn in Chinese cabbage.
白菜干烧心是一种不可逆的生理性病害,降低了作物的价值。由于强烈的环境因素,抗干烧心品种是唯一的解决办法,尽管白菜中还没有发现抗干烧心的基因。我们在田间条件下研究了四个生长季节的三个白菜群体:(a)194 个多样化的自交系,(b)一个双单倍体(DH100)群体,和(c)一个 F1 群体。194 个系用单核苷酸多态性标记进行了基因型分析,全基因组关联图谱表明,有 24 个 gQTL 与干烧心病指数显著相关。对 DH100 和 F1 群体的分析确定了一个与干烧心相关的共同位点 gqbTRA06,该位点覆盖了 24 个 gQTL 之一定义的区域。在 0.14-Mb 数量性状基因座区域预测的 35 个基因中,Bra018575(钙网蛋白家族蛋白,BrCRT2)在疾病发展过程中表现出较高的表达水平。我们从抗干烧心(BrCRT2)和干烧心敏感(BrCRT2)系中克隆了两个 BrCRT2 等位基因,并鉴定出 BrCRT2 中的一个 51-bp 缺失。在拟南芥 crt2 突变体中过表达 BrCRT2 增加了 Ca 储存,同时在 Ca 缺乏条件下减少了叶片尖端和边缘的细胞死亡。我们的研究结果表明,BrCRT2 可能是控制白菜干烧心的候选基因。