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首页> 外文期刊>The Plant Cell >Pectin Methylesterases Modulate Plant Homogalacturonan Status in Defenses against the Aphid Myzus persicae
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Pectin Methylesterases Modulate Plant Homogalacturonan Status in Defenses against the Aphid Myzus persicae

机译:果胶甲基酯酶调节植物同性恋肌室的防御状态对抗蚜虫Myzus persicae

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摘要

Because they suck phloem sap and act as vectors for phytopathogenic viruses, aphids pose a threat to crop yields worldwide. Pectic homogalacturonan (HG) has been described as a defensive element for plants during infections with phytopathogens. However, its role during aphid infestation remains unexplored. Using immunofluorescence assays and biochemical approaches, the HG methylesterification status and associated modifying enzymes during the early stage of Arabidopsis (Arabidopsis thaliana) infestation with the green peach aphid (Myzus persicae) were analyzed. Additionally, the influence of pectin methylesterase (PME) activity on aphid settling and feeding behavior was evaluated by free choice assays and the Electrical Penetration Graph technique, respectively. Our results revealed that HG status and HG-modifying enzymes are significantly altered during the early stage of the plant-aphid interaction. Aphid infestation induced a significant increase in total PME activity and methanol emissions, concomitant with a decrease in the degree of HG methylesterification. Conversely, inhibition of PME activity led to a significant decrease in the settling and feeding preference of aphids. Furthermore, we demonstrate that the PME inhibitor AtPMEI13 has a defensive role during aphid infestation, since pmei13 mutants are significantly more susceptible to M. persicae in terms of settling preference, phloem access, and phloem sap drainage.
机译:因为它们吸吮韧皮素SAP并充当植物疗法病毒的载体,所以蚜虫构成了全世界作物产量的威胁。 PECTIC同性恋肌室(HG)已被描述为植物植物病原体期间植物的防御元素。然而,它在蚜虫侵扰期间的作用仍然是未开发的。分析了使用免疫荧光测定和生化方法,分析了拟南芥早期阶段的Hg甲基酯化状态和相关的修饰酶与绿色桃蚜(Myzus PersiCae)的侵染。另外,通过自由选择测定和电渗透图技术分别评估果胶甲基酯酶(PME)活性对蚜虫沉降和喂养行为的影响。我们的研究结果表明,在植物蚜虫相互作用的早期阶段,HG状态和HG改性酶显着改变。蚜虫侵扰诱导总PME活性和甲醇排放的显着增加,伴随着Hg甲基酯的程度降低。相反,对PME活性的抑制导致蚜虫沉降和饲喂偏好的显着降低。此外,我们证明PME抑制剂ATPMEI13在蚜虫侵扰过程中具有防御性作用,因为在沉降偏好,韧皮血液释放和韧皮柱SAP排水方面,PMEI13突变体显着更容易受到M. Persicae。

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  • 来源
    《The Plant Cell》 |2019年第8期|共17页
  • 作者单位

    Univ Andres Bello Fac Ciencias Vida Ctr Biotecnol Vegetal Santiago 8370186 Chile;

    Univ Andres Bello Fac Ciencias Vida Ctr Biotecnol Vegetal Santiago 8370186 Chile;

    CSIC Inst Ciencias Agr Madrid 28006 Spain;

    Univ Leeds Fac Biol Sci Ctr Plant Sci Leeds LS2 9JT W Yorkshire England;

    Univ Andres Bello Fac Ciencias Vida Ctr Biotecnol Vegetal Santiago 8370186 Chile;

    Univ Andres Bello Fac Ciencias Vida Ctr Biotecnol Vegetal Santiago 8370186 Chile;

    Univ Andres Bello Fac Ciencias Vida Ctr Biotecnol Vegetal Santiago 8370186 Chile;

    Univ Andres Bello Fac Ciencias Vida Ctr Biotecnol Vegetal Santiago 8370186 Chile;

    Univ Andres Bello Fac Ciencias Vida Ctr Biotecnol Vegetal Santiago 8370186 Chile;

    Pontificia Univ Catolica Chile Fac Agron &

    Ingn Forestal Santiago 7820436 Chile;

    CSIC Inst Ciencias Agr Madrid 28006 Spain;

    Pontificia Univ Catolica Chile Fac Agron &

    Ingn Forestal Santiago 7820436 Chile;

    Univ Andres Bello Fac Ciencias Vida Ctr Biotecnol Vegetal Santiago 8370186 Chile;

    Univ Andres Bello Fac Ciencias Vida Ctr Biotecnol Vegetal Santiago 8370186 Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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