Asha Srinivasan, Soniya Eppurath V
Plant Molecular Biology, Rajiv Gandhi Centre for Biotechnology Thiruvananthapuram, India.
Front Plant Sci. 2016 Jun 1;7:767. doi: 10.3389/fpls.2016.00767. eCollection 2016.
Small RNAs derived from transfer RNAs were recently assigned as potential gene regulatory candidates for various stress responses in eukaryotes. In this study, we report on the cloning and identification of tRNA derived small RNAs from black pepper plants in response to the infection of the quick wilt pathogen, Phytophthora capsici. 5'tRFs cloned from black pepper were validated as highly expressed during P. capsici infection. A high-throughput systematic analysis of the small RNAome (sRNAome) revealed the predominance of 5'tRFs in the infected leaf and root. The abundance of 5'tRFs in the sRNAome and the defense responsive genes as their potential targets indicated their regulatory role during stress response in black pepper. The 5'Ala(CGC) tRF mediated cleavage was experimentally mapped at the tRF binding sites on the mRNA targets of Non-expresser of pathogenesis related protein (NPR1), which was down-regulated during pathogen infection. Comparative sRNAome further demonstrated sequence conservation of 5'Ala tRFs across the angiosperm plant groups, and many important genes in the defense response were identified in silico as their potential targets. Our findings uncovered the diversity, differential expression and stress responsive functional role of tRNA-derived small RNAs during Phytophthora infection in black pepper.
源自转运RNA的小RNA最近被认定为真核生物各种应激反应中潜在的基因调控候选物。在本研究中,我们报告了从黑胡椒植株中克隆和鉴定响应快速枯萎病原菌辣椒疫霉感染的tRNA衍生小RNA。从黑胡椒中克隆的5'tRFs在辣椒疫霉感染期间被验证为高表达。对小RNA组(sRNA组)的高通量系统分析揭示了感染叶片和根中5'tRFs占主导地位。sRNA组中5'tRFs的丰度以及作为其潜在靶标的防御反应基因表明了它们在黑胡椒应激反应中的调控作用。实验确定了5'Ala(CGC) tRF介导的切割发生在病程相关蛋白非表达子(NPR1)的mRNA靶标的tRF结合位点上,该蛋白在病原菌感染期间下调。比较sRNA组进一步证明了5'Ala tRFs在被子植物组中的序列保守性,并且在防御反应中的许多重要基因在计算机分析中被鉴定为它们的潜在靶标。我们的研究结果揭示了黑胡椒在疫霉感染期间tRNA衍生小RNA的多样性、差异表达和应激反应功能作用。