Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing, 100193, China; College of Agro-grassland Sciences, Nanjing Agricultural University, Nanjing, Jiangsu, 210095, China.
College of Grassland Science, Beijing Forestry University, Beijing, 100083, China.
Plant Physiol Biochem. 2021 Jun;163:154-165. doi: 10.1016/j.plaphy.2021.04.003. Epub 2021 Apr 4.
Related to ABI3/VP1 (RAV) transcription factors play important roles in regulating plant growth and stress tolerance, which have been studied in many plant species, but have remained largely unidentified in legumes. To functionally characterize RAV in legumes, MtRAV3 from legume model plant Medicago truncatula was isolated and its function was investigated by overexpressing MtRAV3 in M. truncatula. Expression analysis demonstrated that MtRAV3 was markedly induced by NaCl and polyethylene glycol (PEG). MtRAV3 overexpression enhanced tolerance of transgenic M. truncatula to mannitol, drought and salt stresses, and induced the expression of adversity-related genes, including MtWRKY76, MtMYB61, cold-acclimation specific protein 31 (MtCAS31), alternative oxidase 1 (MtAOX1) and ethylene response factor 1 (MtERF1). There were lower relative electrolyte leakage and higher chlorophyll content of leaves in the MtRAV3 overexpression plants than in wild type plants under both salt and drought stress. MtRAV3 overexpression M. truncatula were featured by some phenotypes of dwarfing, late flowering, more branches, smaller flower and leaf organs. Further investigations showed that the expression levels of DWARF14 (MtD14), CAROTENOID CLEAVAGE DIOXYGENASES 7 (MtCCD7) and GA3-oxidase1 (MtGA3ox1), which related to dwarf and branch phenotype, were obviously reduced, as well as MtGA3ox1' (MTR_1g011580), GA20-oxidase1 (MtGA20ox1), MtGA20ox1' (MTR_1g102070) and GA20-oxidase2 (MtGA20ox2) involved in gibberellins (GAs) pathway. Overall, our results revealed that MtRAV3 exerted an important role in adversity response and plant growth, was a multifunctional gene in M. truncatula, which provided reference for genetic improvement of alfalfa (Medicago sativa).
与 ABI3/VP1(RAV)转录因子相关的蛋白在调控植物生长和逆境耐受方面发挥着重要作用,这些转录因子在许多植物物种中已经得到了研究,但在豆科植物中仍然很大程度上没有被识别。为了在豆科植物中对 RAV 进行功能表征,从豆科模式植物蒺藜苜蓿中分离出 MtRAV3,并通过在蒺藜苜蓿中过表达 MtRAV3 来研究其功能。表达分析表明,MtRAV3 明显受到 NaCl 和聚乙二醇(PEG)的诱导。MtRAV3 的过表达增强了转基因蒺藜苜蓿对甘露醇、干旱和盐胁迫的耐受性,并诱导逆境相关基因的表达,包括 MtWRKY76、MtMYB61、冷驯化特异蛋白 31(MtCAS31)、交替氧化酶 1(MtAOX1)和乙烯响应因子 1(MtERF1)。在盐和干旱胁迫下,MtRAV3 过表达植株的相对电解质渗漏率较低,叶片叶绿素含量较高。MtRAV3 过表达的蒺藜苜蓿表现出矮小、晚花、多分枝、小花和小叶器官的特征。进一步的研究表明,与矮化和分枝表型相关的 DWARF14(MtD14)、CAROTENOID CLEAVAGE DIOXYGENASES 7(MtCCD7)和 GA3-氧化酶 1(MtGA3ox1)的表达水平明显降低,以及与赤霉素(GA)途径相关的 MtGA3ox1'(MTR_1g011580)、GA20-氧化酶 1(MtGA20ox1)、MtGA20ox1'(MTR_1g102070)和 GA20-氧化酶 2(MtGA20ox2)的表达水平也降低了。总的来说,我们的研究结果表明,MtRAV3 在逆境响应和植物生长中发挥着重要作用,是蒺藜苜蓿中的一个多功能基因,为紫花苜蓿的遗传改良提供了参考。