Wang Xuxu, Chen Xiude, Wang Qingjie, Chen Min, Liu Xiao, Gao Dongsheng, Li Dongmei, Li Ling
College of Horticulture Science and Engineering, Shandong Agricultural University, Taian, China.
State Key Laboratory of Crop Biology, Shandong Agricultural University, Taian, China.
Front Plant Sci. 2019 Nov 27;10:1473. doi: 10.3389/fpls.2019.01473. eCollection 2019.
Brassinosteroids (BRs) are a group of plant steroid hormones that play important roles in regulating plant development. In addition, BRs show considerable functional redundancy with other plant hormones such as gibberellins (GAs). BRASSINAZOLE RESISTANT1 (BZR1) and BRI1-EMS-SUPPRESSOR1 (BES1) transcription factors are negative feedback regulators of BR biosynthesis. This study provides evidence for the roles of and in promoting GA production. These results also show that BRs regulate GA biosynthesis to improve salt tolerance in apple calli. Moreover, this research proposes a regulatory model, in which MdBZR1 and MdBZR1-2like bind to the promoters of GA biosynthetic genes to regulate their expression in a BR-dependent manner. The expression of key GA biosynthetic genes, , , and in yeast helps to maintain normal growth even under intense salt stress. In summary, this study underscores the roles of MdBZR1 and MdBZR1-2like in improving salt tolerance by regulating GA biosynthesis in apple calli.
油菜素甾醇(BRs)是一类植物甾体激素,在调节植物发育过程中发挥着重要作用。此外,BRs与其他植物激素如赤霉素(GAs)表现出相当程度的功能冗余。油菜素唑抗性1(BZR1)和BRI1-EMS抑制因子1(BES1)转录因子是BR生物合成的负反馈调节因子。本研究为[具体内容1]和[具体内容2]在促进GA产生中的作用提供了证据。这些结果还表明,BRs通过调节GA生物合成来提高苹果愈伤组织的耐盐性。此外,本研究提出了一种调控模型,其中MdBZR1和MdBZR1-2like与GA生物合成基因的启动子结合,以BR依赖的方式调节它们的表达。关键GA生物合成基因[具体基因1]、[具体基因2]、[具体基因3]和[具体基因4]在酵母中的表达有助于即使在强烈盐胁迫下也能维持正常生长。总之,本研究强调了MdBZR1和MdBZR1-2like通过调节苹果愈伤组织中的GA生物合成来提高耐盐性的作用。