Liu Qing, Ding Jierong, Huang Wenjie, Yu Hang, Wu Shaowen, Li Wenyan, Mao Xingxue, Chen Wenfeng, Xing Junlian, Li Chen, Yan Shijuan
Guangdong Key Laboratory of New Technology in Rice Breeding, Guangdong Rice Engineering Laboratory, Rice Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou, 510640, China.
Guangdong Key Laboratory for Crop Germplasm Resources Preservation and Utilization, Agro-Biological Gene Research Center, Guangdong Academy of Agricultural Sciences, Guangzhou, 510640, China.
Rice (N Y). 2022 Jul 2;15(1):34. doi: 10.1186/s12284-022-00581-5.
Although type 2C protein phosphatases (PP2Cs) have been demonstrated to play important roles in regulating plant development and various stress responses, their specific roles in rice abiotic stress tolerance are still largely unknown. In this study, the functions of OsPP65 in rice osmotic and salt stress tolerance were investigated. Here, we report that OsPP65 is responsive to multiple stresses and is remarkably induced by osmotic and salt stress treatments. OsPP65 was highly expressed in rice seedlings and leaves and localized in the nucleus and cytoplasm. OsPP65 knockout rice plants showed enhanced tolerance to osmotic and salt stresses. Significantly higher induction of genes involved in jasmonic acid (JA) and abscisic acid (ABA) biosynthesis or signaling, as well as higher contents of endogenous JA and ABA, were observed in the OsPP65 knockout plants compared with the wild-type plants after osmotic stress treatment. Further analysis indicated that JA and ABA function independently in osmotic stress tolerance conferred by loss of OsPP65. Moreover, metabolomics analysis revealed higher endogenous levels of galactose and galactinol but a lower content of raffinose in the OsPP65 knockout plants than in the wild-type plants after osmotic stress treatment. These results together suggest that OsPP65 negatively regulates osmotic and salt stress tolerance through regulation of the JA and ABA signaling pathways and modulation of the raffinose family oligosaccharide metabolism pathway in rice. OsPP65 is a promising target for improvement of rice stress tolerance using gene editing.
尽管2C型蛋白磷酸酶(PP2Cs)已被证明在调节植物发育和各种应激反应中发挥重要作用,但其在水稻非生物胁迫耐受性中的具体作用仍在很大程度上未知。在本研究中,研究了OsPP65在水稻渗透和盐胁迫耐受性中的功能。在此,我们报道OsPP65对多种胁迫有响应,并在渗透和盐胁迫处理下显著诱导表达。OsPP65在水稻幼苗和叶片中高度表达,定位于细胞核和细胞质。OsPP65基因敲除的水稻植株对渗透和盐胁迫的耐受性增强。与野生型植株相比,在渗透胁迫处理后,OsPP65基因敲除植株中参与茉莉酸(JA)和脱落酸(ABA)生物合成或信号传导的基因诱导表达显著更高,并且内源JA和ABA含量也更高。进一步分析表明,JA和ABA在OsPP65缺失赋予的渗透胁迫耐受性中独立发挥作用。此外,代谢组学分析显示,在渗透胁迫处理后,OsPP65基因敲除植株中的半乳糖和棉子糖含量高于野生型植株,但棉子糖含量较低。这些结果共同表明,OsPP65通过调节JA和ABA信号通路以及调控水稻中棉子糖家族寡糖代谢途径来负向调节渗透和盐胁迫耐受性。OsPP65是利用基因编辑提高水稻胁迫耐受性的一个有前景的靶点。