PtoMYB142是一种杨树R2R3-MYB转录因子,它通过调节蜡的生物合成来提高耐旱性。

IF 2.7 2区 社会学 Q1 INTERNATIONAL RELATIONS American Journal of International Law Pub Date : 2022-10-07 DOI:10.1093/treephys/tpac060
Qin Song, Lingfei Kong, Xuerui Yang, Bo Jiao, Jian Hu, Zhichao Zhang, Changzheng Xu, Keming Luo
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引用次数: 0

摘要

干旱是限制植物发育和生长的主要环境因素之一。因此,植物进化出了防止干旱胁迫下水分损失的策略,如气孔关闭、维持根部吸水、增强茎部水分运输以及合成和沉积角质蜡。然而,在木本植物中,有关干旱胁迫下角质蜡生物合成调控的分子证据非常有限。在这里,我们发现了一种 MYB 转录因子,即杨树(Populus tomentosa Carr.MYB转录因子(PtoMYB142)。过量表达 PtoMYB142(PtoMYB142-OE)可增加杨树叶片的蜡积累,并显著增强抗旱性。我们发现,在干旱胁迫下,蜡生物合成基因 CER4 和 3-ketoacyl CoA 合成酶(KCS)的表达被明显诱导,并在 PtoMYB142-OE 株系中显著上调。生化分析证实,PtoMYB142 可直接与 CER4 和 KCS6 的启动子结合,并调控它们在番茄中的表达。综上所述,本研究揭示了 PtoMYB142 调控角蜡生物合成以适应缺水条件。
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PtoMYB142, a poplar R2R3-MYB transcription factor, contributes to drought tolerance by regulating wax biosynthesis.

Drought is one of the main environmental factors that limit plant development and growth. Accordingly, plants have evolved strategies to prevent water loss under drought stress, such as stomatal closure, maintenance of root water uptake, enhancement of stem water transport, and synthesis and deposition of cuticular wax. However, the molecular evidence of cuticular wax biosynthesis regulation in response to drought is limited in woody plants. Here, we identified an MYB transcription factor, Populus tomentosa Carr. MYB transcription factor (PtoMYB142), in response to drought stress from P. tomentosa. Over-expression of PtoMYB142 (PtoMYB142-OE) resulted in increased wax accumulation in poplar leaves, and significantly enhanced drought resistance. We found that the expression of wax biosynthesis genes CER4 and 3-ketoacyl CoA synthase (KCS) were markedly induced under drought stress, and significantly up-regulated in PtoMYB142-OE lines. Biochemical analysis confirmed that PtoMYB142 could directly bind to the promoter of CER4 and KCS6, and regulate their expression in P. tomentosa. Taken together, this study reveals that PtoMYB142 regulates cuticular wax biosynthesis to adapt to water-deficient conditions.

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