Shenyang Agricultural University, Liaoning Province Cruciferous Vegetables Genetic Breeding Primary Laboratory, Shenyang, Liaoning 110866, China.
Shenyang Agricultural University, Liaoning Province Cruciferous Vegetables Genetic Breeding Primary Laboratory, Shenyang, Liaoning 110866, China.
Gene. 2021 Jul 30;791:145711. doi: 10.1016/j.gene.2021.145711. Epub 2021 May 10.
Clubroot disease, caused by Plasmodiophora brassicae infection, occurs in cruciferous vegetable crops in many areas of the world, sometimes leading to yield loss. In this study, a differentially expressed protein (0305), was found between control and clubroot-diseased Chinese cabbage (Brassica rapa L.) roots through two-dimensional electrophoresis. Mass spectrometry analysis showed that Bra003466 was highly matched to protein 0305. Because the sequence of Bra003466 had 89% percent identity with ATG6 of Arabidopsis thaliana and other Brassica, the gene was named as BrATG6. However, 790 bp sequences were mismatched with the cDNA sequence of the Bra003466 gene from the Brassica database. In this study, we cloned the cDNA of Bra003466 and found the BrATG6 was highly expressed in roots among all organs. When plants were inoculated with P. brassicae Woronin, the expression of BrATG6 was significantly increased in infected roots of Chinese cabbage. This result was verified by reverse transcription-qPCR and in situ hybridization. Examination of disease resistance showed that, compared with wild type plants, A. thaliana ATG6 deletion mutants were more easily infected by P. brassicae than WT. This shows that BrATG6 may play a potential role in the resistance of B. rapa to P. brassicae infection.
根肿病是由芸薹根肿菌引起的,在世界许多地区的十字花科蔬菜作物中发生,有时会导致产量损失。在这项研究中,通过双向电泳发现受根肿病影响的中国白菜(Brassica rapa L.)根与对照之间存在差异表达蛋白(0305)。质谱分析表明,Bra003466 与蛋白 0305 高度匹配。由于 Bra003466 的序列与拟南芥和其他芸薹属的 ATG6 有 89%的同源性,因此该基因被命名为 BrATG6。然而,与 Brassica 数据库中 Bra003466 基因的 cDNA 序列相比,有 790bp 序列不匹配。在这项研究中,我们克隆了 Bra003466 的 cDNA,并发现 BrATG6 在所有器官中在根中表达量最高。当植物被芸薹根肿菌接种时,在白菜感染根中 BrATG6 的表达显著增加。这一结果通过反转录 qPCR 和原位杂交得到了验证。抗病性检测表明,与野生型植物相比,拟南芥 ATG6 缺失突变体比 WT 更容易被 P. brassicae 感染。这表明 BrATG6 可能在 B. rapa 对 P. brassicae 感染的抗性中发挥潜在作用。