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TaMDAR6作为植物细胞死亡的负调控因子,在小麦条锈菌互作过程中间接参与气孔调节。

TaMDAR6 acts as a negative regulator of plant cell death and participates indirectly in stomatal regulation during the wheat stripe rust-fungus interaction.

作者信息

Abou-Attia Mohamed Awaad, Wang Xiaojie, Nashaat Al-Attala Mohamed, Xu Qiang, Zhan Gangming, Kang Zhensheng

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas and College of Plant Protection, Northwest A&F University, Shaanxi, People's Republic of China.

Identification of Microorganisms and Biological Control Unit, Plant Pathology Research Institute, Agricultural Research Center, Giza, Egypt.

出版信息

Physiol Plant. 2016 Mar;156(3):262-77. doi: 10.1111/ppl.12355. Epub 2015 Jul 14.

Abstract

We identified a new monodehydroascorbate reductase (MDAR) gene from wheat, designated TaMDAR6, which is differentially affected by wheat-Puccinia striiformis f. sp. tritici (Pst) interactions. TaMDAR6 is a negative regulator of plant cell death (PCD) triggered by the Bax gene and Pst. Transcript levels of TaMDAR6 are significantly upregulated during a compatible wheat-Pst interaction, indicating that TaMDAR6 may contribute to plant susceptibility. In addition, H2 O2 production and PCD are significantly induced and initial pathogen development is significantly reduced in the TaMDAR6 knocked-down plants upon Pst infection. Thus, the suppression of TaMDAR6 enhances wheat resistance to Pst. Besides, the suppression of TaMDAR6 during an incompatible interaction induces a change in the morphology of stomata, which leads to poor stoma recognition and as a consequence to reduced infection efficiency. The percentage of infection sites that develop substomatal vesicles decreases in the TaMDAR6 knocked-down plants during the incompatible interaction presumably due to the increase in ROS accumulation, which is likely to activate other resistance mechanisms that have a negative effect on substomatal vesicle formation. TaMDAR6 can therefore be considered a negative regulator of PCD and of wheat defense to Pst.

摘要

我们从小麦中鉴定出一个新的单脱氢抗坏血酸还原酶(MDAR)基因,命名为TaMDAR6,它受小麦-条锈菌(Puccinia striiformis f. sp. tritici,Pst)互作的影响存在差异。TaMDAR6是由Bax基因和Pst触发的植物细胞死亡(PCD)的负调控因子。在小麦与Pst的亲和互作过程中,TaMDAR6的转录水平显著上调,表明TaMDAR6可能促使植物感病。此外,在Pst侵染后,TaMDAR6基因沉默的植株中H2O2的产生和PCD显著诱导,而病原菌的初始发育显著减少。因此,TaMDAR6的抑制增强了小麦对Pst的抗性。此外,在不亲和互作过程中抑制TaMDAR6会导致气孔形态发生变化,从而导致气孔识别能力变差,进而降低侵染效率。在不亲和互作过程中,TaMDAR6基因沉默的植株中形成气孔下囊泡的侵染位点百分比降低,这可能是由于活性氧积累增加所致,活性氧积累可能会激活其他对气孔下囊泡形成有负面影响的抗性机制。因此,TaMDAR6可被视为PCD以及小麦对Pst防御的负调控因子。

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