Bashyal Bishnu Maya, Rawat Kirti, Parmar Pooja, Gupta Ashish Kumar, Gupta Sangeeta, Krishnan S Gopala, Choudhary Ravish, Ercisli Sezai, Kovacevic Antonija, Aggarwal Rashmi
Division of Plant Pathology, ICAR-Indian Agricultural Research Institute, 110012, New Delhi, India.
ICAR-National Institute of Plant Biotechnology, 110012, New Delhi, India.
Mol Biol Rep. 2022 Dec;49(12):11959-11972. doi: 10.1007/s11033-022-07877-1. Epub 2022 Oct 21.
Fusarium fujikuroi causing bakanae is one of the most significant pathogens of rice and much responsible for yield losses thereby emerging as a major risk to food security.
In the present study transcriptomic analysis was conducted between two contrasting resistant (C101A51) and susceptible (Rasi) genotypes of rice with the combinations of C101A51 control (CC) vs. C101A51 inoculated (CI); Rasi control (RC) vs. Rasi inoculated (RI) and C101A51 inoculated (CI) vs. Rasi inoculated (RI).
In CC vs. CI commonly expressed genes were 12,764. Out of them 567 (4%) were significantly upregulated and 1399 (9%) genes were downregulated. For the RC vs. RI 14, 333 (79%) genes were commonly expressed. For CI vs. RI 13,662 (72%) genes were commonly expressed. Genes related to cysteine proteinase inhibitor 10, disease resistance protein TAO1-like, oleosin 16 kDa-like, pathogenesis-related protein (PR1), (PR4), BTB/POZ and MATH domain-containing protein 5-like, alpha-amylase isozyme were upregulated in resistant genotype C101A51. Whereas, genes related to GDSL esterase/lipase, serine glyoxylate aminotransferase, CASP-like protein 2C1, WAT1-related protein, Cytoplasmic linker associated proteins, xyloglucan endotransglucosylase/hydrolase protein and β-D xylosidase 7 were upregulated in susceptible genotype Rasi. Gene ontology analysis showed functions related to defence response (GO:0006952), regulation of plant hypersensitive type response (GO:0010363), Potassium ion transmembrane activity (GO:0015079), chloroplast (GO:0009507), response to wounding (GO:0009611), xylan biosynthetic process (GO:0045492) were upregulated in resistant genotype C101A51 under inoculated conditions.
Real time PCR based validation of the selected DEGs showed that the qRT-PCR was consistent with the RNA-Seq results. This is the first transcriptomic study against bakanae disease of rice in Indian genotypes. Further, functional studies on identified genes and their utilization through different methodology will be helpful for the development of bakanae disease management strategies.
引起水稻恶苗病的藤仓镰孢菌是水稻最重要的病原菌之一,对产量损失负有很大责任,因此成为粮食安全的重大风险。
在本研究中,对两种对比鲜明的水稻抗性(C101A51)和感病(拉西)基因型进行了转录组分析,组合为C101A51对照(CC)与接种C101A51(CI);拉西对照(RC)与接种拉西(RI)以及接种C101A51(CI)与接种拉西(RI)。
在CC与CI中,共同表达的基因有12,764个。其中567个(4%)显著上调,1399个(9%)基因下调。对于RC与RI,14,333个(79%)基因共同表达。对于CI与RI,13,662个(72%)基因共同表达。与半胱氨酸蛋白酶抑制剂10、抗病蛋白TAO1样、16 kDa油质蛋白样、病程相关蛋白(PR1)、(PR4)、含BTB/POZ和MATH结构域蛋白5样、α-淀粉酶同工酶相关的基因在抗性基因型C101A51中上调。而与GDSL酯酶/脂肪酶、丝氨酸乙醛酸氨基转移酶、类CASP蛋白2C1、WAT1相关蛋白、细胞质连接相关蛋白、木葡聚糖内转糖基酶/水解酶蛋白和β-D木糖苷酶7相关的基因在感病基因型拉西中上调。基因本体分析表明,在接种条件下,抗性基因型C101A51中与防御反应(GO:0006952)、植物超敏反应类型调节(GO:0010363)、钾离子跨膜活性(GO:0015079)、叶绿体(GO:0009507)、伤口反应(GO:0009611)、木聚糖生物合成过程(GO:0045492)相关的功能上调。
基于实时PCR对所选差异表达基因的验证表明,qRT-PCR与RNA-Seq结果一致。这是首次针对印度基因型水稻恶苗病的转录组研究。此外,对已鉴定基因的功能研究及其通过不同方法的利用将有助于制定恶苗病管理策略。