National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan 430070, China.
National Center of Plant Gene Research, Huazhong Agricultural University, Wuhan 430070, China.
Proc Natl Acad Sci U S A. 2020 Feb 18;117(7):3867-3873. doi: 10.1073/pnas.1918994117. Epub 2020 Feb 5.
In plants, enhanced defense often compromises growth and development, which is regarded as trade-offs between growth and defense. Here we identified a gene, , that functions as a master regulator of the growth-defense trade-off in rice. OsALDH2B1 has its primary function as an aldehyde dehydrogenase and a moonlight function as a transcriptional regulator. Loss of function of greatly enhanced resistance to broad-spectrum pathogens, including fungal blast, bacterial leaf blight, and leaf streak, but caused severe phenotypic changes such as male sterility and reduced plant size, grain size, and number. We showed that its primary function as a mitochondrial aldehyde dehydrogenase conditions male fertility. Its moonlight function of transcriptional regulation, featuring both repressing and activating activities, regulates a diverse range of biological processes involving brassinolide, G protein, jasmonic acid, and salicylic acid signaling pathways. Such regulations cause large impacts on the morphology and immunity of rice plants. The versatile functions of OsALDH2B1 provide an example of the genic basis of growth-defense trade-offs in plants.
在植物中,增强的防御往往会损害生长和发育,这被认为是生长和防御之间的权衡。在这里,我们鉴定了一个基因 ,它在水稻的生长-防御权衡中起主要的调控作用。OsALDH2B1 的主要功能是作为醛脱氢酶,而在月光下作为转录调节剂。OsALDH2B1 功能丧失极大地增强了对广谱病原体的抗性,包括真菌性枯萎病、细菌性叶斑病和叶条斑病,但导致了严重的表型变化,如雄性不育和植物大小、粒大小和数量减少。我们表明,它作为线粒体醛脱氢酶的主要功能是调节雄性育性。其作为转录调节的月光功能,具有抑制和激活两种活性,调节涉及油菜素内酯、G 蛋白、茉莉酸和水杨酸信号通路的多种生物过程。这些调节对水稻植株的形态和免疫产生了巨大影响。OsALDH2B1 的多功能性为植物生长-防御权衡的基因基础提供了一个范例。