...
首页> 外文期刊>Molecular Microbiology >Antifungal mechanisms of a plant defensin MtDef4 are not conserved between the ascomycete fungi Neurospora crassa and Fusarium graminearum
【24h】

Antifungal mechanisms of a plant defensin MtDef4 are not conserved between the ascomycete fungi Neurospora crassa and Fusarium graminearum

机译:植物防御素MtDef4的抗真菌机制在子囊真菌Neurospora crassa和镰孢镰刀菌之间并不保守。

获取原文
获取原文并翻译 | 示例
           

摘要

Defensins play an important role in plant defense against fungal pathogens. The plant defensin, MtDef4, inhibits growth of the ascomycete fungi, Neurospora crassa and Fusarium graminearum, at micromolar concentrations. We have reported that MtDef4 is transported into the cytoplasm of these fungi and exerts its antifungal activity on intracellular targets. Here, we have investigated whether the antifungal mechanisms of MtDef4 are conserved in these fungi. We show that N. crassa and F. graminearum respond differently to MtDef4 challenge. Membrane permeabilization is required for the antifungal activity of MtDef4 against F. graminearum but not against N. crassa. We find that MtDef4 is targeted to different subcellular compartments in each fungus. Internalization of MtDef4 in N. crassa is energy-dependent and involves endocytosis. By contrast, MtDef4 appears to translocate into F. graminearum autonomously using a partially energy-dependent pathway. MtDef4 has been shown to bind to the phospholipid phosphatidic acid (PA). We provide evidence that the plasma membrane localized phospholipase D, involved in the biosynthesis of PA, is needed for entry of this defensin in N. crassa, but not in F. graminearum. To our knowledge, this is the first example of a defensin which inhibits the growth of two ascomycete fungi via different mechanisms.
机译:防御素在植物抵抗真菌病原体的防御中起着重要作用。植物防御素MtDef4在微摩尔浓度下可抑制子囊真菌,神经孢霉和禾谷镰刀菌的生长。我们已经报道,MtDef4被运输到这些真菌的细胞质中,并在细胞内靶标上发挥其抗真菌活性。在这里,我们研究了MtDef4的抗真菌机制在这些真菌中是否保守。我们显示N. crassa和F. graminearum对MtDef4挑战的反应不同。 MtDef4对禾谷镰刀菌(F. graminearum)的抗真菌活性需要膜通透性,而对N. crassa则没有。我们发现MtDef4靶向每种真菌中的不同亚细胞区室。 MtDef4在猪笼草中的内在化是能量依赖性的,并且涉及胞吞作用。相比之下,MtDef4似乎使用部分能量依赖的途径自动转移到禾谷镰刀菌中。 MtDef4已显示与磷脂磷脂酸(PA)结合。我们提供的证据表明,这种防御素进入猪笼草(N. crassa)而不是禾谷镰刀菌(F. graminearum)的过程中,需要参与PA生物合成的质膜局部磷脂酶D。据我们所知,这是防御素通过不同机制抑制两种子囊真菌生长的第一个例子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号