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首页> 外文期刊>Virus Research: An International Journal of Molecular and Cellular Virology >Proteomic analysis of fungal host factors differentially expressed by Fusarium graminearum infected with Fusarium graminearum virus-DK21.
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Proteomic analysis of fungal host factors differentially expressed by Fusarium graminearum infected with Fusarium graminearum virus-DK21.

机译:感染禾谷镰刀菌病毒DK21的禾谷镰刀菌差异表达的真菌宿主因子的蛋白质组学分析。

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摘要

Fusarium graminearum virus-DK21 (FgV-DK21), which infects the plant pathogenic F. graminearum, perturbs host developmental processes such as sporulation, morphology, pigmentation, and attenuates the virulence (hypovirulence) of the host. To identify the differentially expressed F. graminearum proteins by FgV-DK21 infection, we have used two-dimensional electrophoresis with mass spectrometry using proteins extracted from virus-free and FgV-DK21-infected strains. A total of 148 spots showing an altered expression were identified by PDQuest program. Among these spots, 33 spots were exclusively analyzed including 14 spots from FgV-DK21-infected and 19 spots from virus-free strains by ESI-MS/MS analyses and successfully identified 23 proteins. Seven proteins including sporulation-specific gene SPS2, triose phosphate isomerase, nucleoside diphosphate kinase, and woronin body major protein precursor were induced or significantly up-regulated by FgV-DK21 infection. A significant decrease or down regulation of 16 proteins including enolase, saccharopine dehydrogenase, flavohemoglobin, mannitol dehydrogenase and malate dehydrogenase caused by FgV-DK21 infection was also identified. Variations of protein expression were also further investigated at the mRNA level by real-time RT-PCR analysis, which confirmed the proteomic data for 9 out of the representative 11 selected proteins including 5 proteins from up-regulated group and 6 proteins from down-regulated group. Further investigation of these differentially expressed proteins will provide novel insights into the molecular responses of F. graminearum to FgV-DK21 infection.
机译:感染植物病原性禾本科镰刀菌的禾本科镰刀菌病毒DK21(FgV-DK21)扰乱了宿主的发育过程,例如孢子形成,形态,色素沉着,并减弱了宿主的毒力(低毒力)。为了鉴定由FgV-DK21感染引起的差异表达的禾谷镰刀菌蛋白质,我们使用了二维电泳质谱法,使用了从无病毒和FgV-DK21感染菌株中提取的蛋白质。通过PDQuest程序总共鉴定了显示表达改变的148个斑点。在这些斑点中,通过ESI-MS / MS分析专门分析了33个斑点,包括FgV-DK21感染的14个斑点和无病毒菌株的19个斑点,并成功鉴定出23种蛋白质。 FgV-DK21感染诱导或显着上调了七种蛋白质,包括孢子形成特异性基因SPS2,磷酸三糖磷酸异构酶,核苷二磷酸激酶和沃龙素体主要蛋白质前体。还确定了由FgV-DK21感染引起的16种蛋白质的显着减少或下调,包括烯醇酶,糖精脱氢酶,黄素血红蛋白,甘露醇脱氢酶和苹果酸脱氢酶。还通过实时RT-PCR分析在mRNA水平上进一步研究了蛋白质表达的变化,这证实了代表的11种选定蛋白质中有9种的蛋白质组学数据,包括上调组的5种蛋白质和下调组的6种蛋白质。组。这些差异表达的蛋白质的进一步研究将提供对禾谷镰刀菌对FgV-DK21感染的分子反应的新见解。

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