Singh Shweta, Sharma Rajan, Nepolean Thirunavukkarasu, Nayak Spurthi N, Pushpavathi Bheemavarapu, Khan Aamir W, Srivastava Rakesh K, Varshney Rajeev K
International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru, Telangana, India.
Professor Jayashankar Telangana State Agricultural University (PJTSAU), Hyderabad, Telangana, India.
Front Plant Sci. 2022 Sep 23;13:981295. doi: 10.3389/fpls.2022.981295. eCollection 2022.
Blast [ (Herbert) Barr] is an economically important disease in Asian pearl millet production ecologies. The recurrent occurrence of blast in the past one decade has caused enormous strain on grain and forage production. Identification of resistance genes is an important step to develop durable varieties. The present study is the first attempt to use RNA-Seq to investigate the transcript dynamics in a pearl millet inbred ICMB 93333, which had a unique differential reaction to two isolates-Pg 45 (avirulent) and Pg 174 (virulent) of The inbred was inoculated by both isolates and samples taken at six different time intervals for genome-wide RNA-Seq experiment. The transcriptome results revealed the differential expression of more than 2,300 genes. The time-specific comparison showed activation or repression of specific genes in various pathways. Genes and transcriptions factors related to pathogenesis-related proteins, reactive oxygen species generating and its scavenging genes, cell wall defense, primary and secondary metabolic pathways, and signaling pathways were identified by comparing the host-plant compatible and incompatible interactions. The genes identified from this experiment could be useful to understand the host-plant resistance and design novel strategies to manage blast disease in pearl millet.
稻瘟病[(赫伯特)巴尔型]是亚洲珍珠粟生产生态系统中一种具有经济重要性的病害。在过去十年中,稻瘟病的反复发生给谷物和饲料生产带来了巨大压力。鉴定抗性基因是培育持久抗病品种的重要一步。本研究首次尝试利用RNA测序技术研究珍珠粟自交系ICMB 93333中的转录动态,该自交系对两种分离株——Pg 45(无毒)和Pg 174(有毒)具有独特的差异反应。用这两种分离株对该自交系进行接种,并在六个不同时间间隔采集样本用于全基因组RNA测序实验。转录组结果显示2300多个基因存在差异表达。时间特异性比较显示了各种途径中特定基因的激活或抑制。通过比较寄主植物的亲和与非亲和互作,鉴定出了与病程相关蛋白、活性氧产生及其清除基因、细胞壁防御、初级和次级代谢途径以及信号传导途径相关的基因和转录因子。从本实验中鉴定出的基因可能有助于理解寄主植物抗性,并设计新的策略来防治珍珠粟的稻瘟病。