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首页> 外文期刊>Molecular Plant-Microbe Interactions >Hop stunt viroid: Effect on Host (Humulus lupulus) Transcriptome and Its Interactions With Hop Powdery Mildew (Podospheara macularis)
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Hop stunt viroid: Effect on Host (Humulus lupulus) Transcriptome and Its Interactions With Hop Powdery Mildew (Podospheara macularis)

机译:蛇麻草特技类病毒:对寄主(Hu)转录组的影响及其与蛇麻草白粉病(Podospheara macularis)的相互作用

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Viroids are the smallest known plant pathogens that exploit host systems for their replication and cause diseases in many hosts. In this study, the host response of hop plants to Hop stunt viroid (HSVd) infection was studied through transcriptome analysis. RNA sequence analysis of hop leaves infected with HSVd revealed dynamic changes in hop gene expression. Defense-related genes and genes involved in lipid and terpenoid metabolism are the major categories that showed differential expression due to HSVd infection. Additionally, the effect of HSVd on development of hop powdery mildew (Podospheara macularis) (HPM) was studied. Transcriptome analysis followed by quantitative reverse transcription-polymerase chain reaction analysis showed that transcript levels of pathogenesis-related (PR) genes such as PR protein 1, chitinase, and thaumatin-like protein genes are induced in leaves infected with HPM alone. The response in these genes to HPM is significantly down-regulated in leaves with HSVd-HPM mixed infection. These results confirm that HSVd alters host metabolism, physiology, and plant defense responses. Nevertheless, in detached leaf assays, HPM consistently expanded faster on HSVd-negative leaves relative to HSVd-positive leaves. Although HSVd infection suppresses elements associated with the host immunity response, infection by HSVd is antagonistic to HPM infection of hops.
机译:类病毒是已知的最小的植物病原体,它们利用宿主系统进行复制并在许多宿主中引起疾病​​。在这项研究中,通过转录组分析研究了啤酒花植物对啤酒花特技类病毒(HSVd)感染的宿主反应。感染HSVd的啤酒花叶片的RNA序列分析揭示了啤酒花基因表达的动态变化。与防御相关的基因以及涉及脂质和类萜代谢的基因是由于HSVd感染而表现出差异表达的主要类别。此外,研究了HSVd对啤酒花白粉病(Podospheara macularis)(HPM)发育的影响。转录组分析,然后进行定量逆转录-聚合酶链反应分析,结果表明,单独感染HPM的叶片诱导了与病程相关(PR)基因(例如PR蛋白1,几丁质酶和thaumatin样蛋白基因)的转录水平。这些基因对HPM的反应在HSVd-HPM混合感染的叶片中显着下调。这些结果证实,HSVd改变了宿主的代谢,生理和植物防御反应。然而,在离体叶片测定中,相对于HSVd阳性叶片,HPM在HSVd阴性叶片上持续扩展得更快。尽管HSVd感染抑制了与宿主免疫反应相关的元素,但是HSVd感染与啤酒花的HPM感染相反。

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