Jiangsu Coastal Area Institute of Agricultural Sciences, Yancheng City, Jiangsu Province, 224002, P. R. China.
BMC Genomics. 2020 Mar 19;21(1):245. doi: 10.1186/s12864-020-6645-6.
Sheath blight (SB), caused by Rhizoctonia solani, is a common rice disease worldwide. Currently, rice cultivars with robust resistance to R. solani are still lacking. To provide theoretic basis for molecular breeding of R. solani-resistant rice cultivars, the changes of transcriptome profiles in response to R. solani infection were compared between a moderate resistant cultivar (Yanhui-888, YH) and a susceptible cultivar (Jingang-30, JG).
In the present study, 3085 differentially express genes (DEGs) were detected between the infected leaves and the control in JG, with 2853 DEGs in YH. A total of 4091 unigenes were significantly upregulated in YH than in JG before infection, while 3192 were significantly upregulated after infection. Further analysis revealed that YH and JG showed similar molecular responses to R. solani infection, but the responses were earlier in JG than in YH. Expression levels of trans-cinnamate 4-monooxygenase (C4H), ethylene-insensitive protein 2 (EIN2), transcriptome factor WRKY33 and the KEGG pathway plant-pathogen interaction were significantly affected by R. solani infection. More importantly, these components were all over-represented in YH cultivar than in JG cultivar before and/or after infection.
These genes possibly contribute to the higher resistance of YH to R. solani than JG and were potential target genes to molecularly breed R. solani-resistant rice cultivar.
由立枯丝核菌引起的鞘腐病是一种世界性的常见水稻病害。目前,仍缺乏对立枯丝核菌具有强抗性的水稻品种。为了为培育抗立枯丝核菌的水稻品种提供分子育种的理论基础,比较了中抗品种(盐惠 888,YH)和感病品种(金刚 30,JG)对立枯丝核菌感染的转录组谱变化。
在本研究中,在 JG 中检测到感染叶片与对照之间的 3085 个差异表达基因(DEGs),在 YH 中检测到 2853 个 DEGs。在感染前,YH 中有 4091 个基因的表达水平显著高于 JG,而在感染后,有 3192 个基因的表达水平显著高于 JG。进一步分析表明,YH 和 JG 对立枯丝核菌感染表现出相似的分子反应,但 JG 的反应早于 YH。肉桂酸 4-单加氧酶(C4H)、乙烯不敏感蛋白 2(EIN2)、转录因子 WRKY33 和 KEGG 途径植物-病原体相互作用的表达水平均受到立枯丝核菌感染的显著影响。更重要的是,这些成分在感染前后在 YH 品种中的表达水平均高于 JG 品种。
这些基因可能对立枯丝核菌的抗性高于 JG 品种,并可能成为培育抗立枯丝核菌的水稻品种的潜在目标基因。