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肌动蛋白细胞骨架功能和EDS1活性的丧失共同严重损害了拟南芥对小麦白粉病的非寄主抗性。

Loss of actin cytoskeletal function and EDS1 activity, in combination, severely compromises non-host resistance in Arabidopsis against wheat powdery mildew.

作者信息

Yun Byung-Wook, Atkinson Helen A, Gaborit Charlotte, Greenland Andy, Read Nick D, Pallas Jacqueline A, Loake Gary J

机构信息

Institute of Cell and Molecular Biology, University of Edinburgh, King's Buildings, Edinburgh EH9 3JH, UK.

出版信息

Plant J. 2003 Jun;34(6):768-77. doi: 10.1046/j.1365-313x.2003.01773.x.

DOI:10.1046/j.1365-313x.2003.01773.x
PMID:12795697
Abstract

Plant immunity against the majority of the microbial pathogens is conveyed by a phenomenon known as non-host resistance (NHR). This defence mechanism affords durable protection to plant species against given species of phytopathogens. We investigated the genetic basis of NHR in Arabidopsis against the wheat powdery mildew fungus Blumeria graminis f. sp. tritici (Bgt). Both primary and appressorial germ tubes were produced from individual Bgt conidia on the surface of the Arabidopsis leaves. Attempted infection occasionally resulted in successful penetration, which led to the development of an abnormal unilateral haustorium. Inoculation of a series of Arabidopsis defence-related mutants with Bgt resulted in the attenuation of reactive oxygen intermediate (ROI) production and salicylic acid (SA)-dependent defence gene expression in eds1, pad4 and nahG plants, which are known to be defective in some aspects of host resistance. Furthermore, Bgt often developed bilateral haustoria in the mutant Arabidopsis lines that closely resembled those formed in wheat. A similar decrease in NHR was observed following treatment of the wild-type Arabidopsis plants with cytochalasin E, an inhibitor of actin microfilament polymerisation. In eds1 mutants, inhibition of actin polymerisation severely compromised NHR in Arabidopsis against Bgt. This permitted completion of the Bgt infection cycle on these plants. Therefore, actin cytoskeletal function and EDS1 activity, in combination, are major contributors to NHR in Arabidopsis against wheat powdery mildew.

摘要

植物对大多数微生物病原体的免疫是通过一种称为非寄主抗性(NHR)的现象来实现的。这种防御机制为植物物种提供了对特定种类植物病原体的持久保护。我们研究了拟南芥对小麦白粉病菌禾本科布氏白粉菌(Bgt)的非寄主抗性的遗传基础。单个Bgt分生孢子在拟南芥叶片表面产生初生和附着胞芽管。尝试感染偶尔会导致成功穿透,进而形成异常的单侧吸器。用Bgt接种一系列拟南芥防御相关突变体,导致eds1、pad4和nahG植株中活性氧中间体(ROI)产生和水杨酸(SA)依赖性防御基因表达减弱,已知这些植株在寄主抗性的某些方面存在缺陷。此外,Bgt在突变的拟南芥品系中常常形成双侧吸器,与在小麦中形成的吸器非常相似。用细胞松弛素E(一种肌动蛋白微丝聚合抑制剂)处理野生型拟南芥植株后,也观察到类似的非寄主抗性降低。在eds1突变体中,肌动蛋白聚合的抑制严重损害了拟南芥对Bgt的非寄主抗性。这使得Bgt在这些植株上完成感染循环。因此,肌动蛋白细胞骨架功能和EDS1活性共同是拟南芥对小麦白粉病非寄主抗性的主要贡献因素。

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