College of Plant Science and Technology, HuaZhong Agricultural University, Wuhan 430070, China.
Biomass and Bioenergy Research Centre, HuaZhong Agricultural University, Wuhan 430070, China.
J Exp Bot. 2017 Mar 1;68(7):1479-1491. doi: 10.1093/jxb/erx061.
Stress induces changes of modified nucleosides in tRNA, and these changes can influence codon-anticodon interaction and therefore the translation of target proteins. Certain nucleoside modification genes are associated with regulation of stress tolerance and immune response in plants. In this study, we found a dramatic increase of 2'-O-methyladenosine (Am) nucleoside in rice seedlings subjected to salt stress and abscisic acid (ABA) treatment. We identified LOC_Os03g61750 (OsTRM13) as a rice candidate methyltransferase for the Am modification. OsTRM13 transcript levels increased significantly upon salt stress and ABA treatment, and the OsTrm13 protein was found to be located primarily to the nucleus. More importantly, OsTRM13 overexpression plants displayed improved salt stress tolerance, and vice versa, OsTRM13 RNA interference (RNAi) plants showed reduced tolerance. Furthermore, OsTRM13 complemented a yeast trm13Δ mutant, deficient in Am synthesis, and the purified OsTrm13 protein catalysed Am nucleoside formation on tRNA-Gly-GCC in vitro. Our results show that OsTRM13, encoding a rice tRNA nucleoside methyltransferase, is an important regulator of salt stress tolerance in rice.
应激诱导 tRNA 中修饰核苷的变化,这些变化会影响密码子-反密码子相互作用,从而影响靶蛋白的翻译。某些核苷修饰基因与植物的应激耐受和免疫反应的调节有关。在这项研究中,我们发现盐胁迫和脱落酸(ABA)处理后水稻幼苗中 2'-O-甲基腺苷(Am)核苷显著增加。我们鉴定出 LOC_Os03g61750(OsTRM13)是水稻 Am 修饰的候选甲基转移酶。盐胁迫和 ABA 处理后 OsTRM13 转录本水平显著增加,OsTrm13 蛋白主要定位于核内。更重要的是,OsTRM13 过表达植物表现出增强的耐盐性,反之,OsTRM13 RNA 干扰(RNAi)植物表现出耐盐性降低。此外,OsTRM13 互补了酵母 trm13Δ突变体,该突变体缺乏 Am 合成,纯化的 OsTrm13 蛋白在体外催化 tRNA-Gly-GCC 上的 Am 核苷形成。我们的结果表明,编码水稻 tRNA 核苷甲基转移酶的 OsTRM13 是水稻耐盐性的重要调节因子。