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首页> 外文期刊>Journal of proteomics >Proteomic analysis of mycelium and secretome of different Botrytis cinerea wild-type strains
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Proteomic analysis of mycelium and secretome of different Botrytis cinerea wild-type strains

机译:不同灰葡萄孢野生型菌株菌丝体和分泌组的蛋白质组学分析

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摘要

The necrotrophic fungus Botrytis cinerea is a very damaging phytopathogen of wide host range and environmental persistence. It is difficult to control because of its genetic versatility, expressed in the many phenotypical differences among isolates. The genomes of the B. cinerea B05.10 and T4 strains have been recently sequenced, becoming a model system for necrotrophic pathogens, and thus opening new alternatives for functional genomics analysis. In this work, the mycelium and secreted proteome of six wild-type strains with different host range, and grown in liquid minimal medium, have been analyzed by using complementary gel-based (1-DE and 2-DE) and gel-free/label-free (nUPLC-MSE) approaches. We found differences in the protein profiles among strains belonging to both the mycelium and the secretome. A total of 47 and 51 variable proteins were identified in the mycelium and the secretome, respectively. Some of them, such as malate dehydrogenase or peptidyl-prolyl cis-trans isomerase from the mycelium, and endopolygalacturonase, aspartic protease or cerato-platanin protein from the secretome have been reported as virulence factors, which are involved in host-tissue invasion, pathogenicity or fungal development. Biological significance: The necrotrophic fungus Botrytis cinerea is an important phytopathogen of wide host range and environmental persistence, causing substantial economic losses worldwide. In this work, the mycelium and secreted proteome of six B. cinerea wild-type strains with different host range have been analyzed by using complementary gel-based and gel-free/label-free approaches. Fungal genetic versatility was confirmed at the proteome level for both mycelium proteome and secreted proteins. A high number of hypothetical proteins with conserved domains related to toxin compounds or to unknown functions were identified, having qualitative differences among strains. The identification of hypothetical proteins suggests that the B. cinerea strains differ mostly in processes involved in adaptation to a particular environment or a growth condition, rather than in essential metabolic reactions. Proteomics can help in the identification of variable proteins related to the infection and colonization of host plant tissues, as well as of virulence and aggressiveness factors among different B. cinerea wild-type strains.This article is part of a Special Issue entitled: Trends in Microbial Proteomics.
机译:坏死性真菌灰葡萄孢(Botrytis cinerea)是具有很大宿主范围和环境持久性的非常有害的植物病原体。由于其遗传多样性,很难控制,这在分离株之间存在许多表型差异。灰葡萄芽孢杆菌B05.10和T4菌株的基因组最近已测序,成为坏死性病原体的模型系统,从而为功能基因组分析提供了新的选择。在这项工作中,通过使用互补的基于凝胶的(1-DE和2-DE)和无凝胶/ DNA互补型分析了六种具有不同宿主范围并在液体基本培养基中生长的野生型菌株的菌丝体和分泌的蛋白质组。无标签(nUPLC-MSE)方法。我们发现了属于菌丝体和分泌组的菌株之间蛋白质谱的差异。在菌丝体和分泌组中分别鉴定出总共47种和51种可变蛋白。据报道其中一些是毒力因子,它们与宿主组织的侵袭,致病性有关,例如来自菌丝体的苹果酸脱氢酶或肽基-脯氨酰顺反异构酶,以及来自内分泌组的内聚半乳糖醛酸酶,天冬氨酸蛋白酶或cerato-platanin蛋白。或真菌发育。生物学意义:坏死性真菌灰葡萄孢是一种重要的植物病原体,具有广泛的寄主范围和环境持久性,在全球范围内造成重大的经济损失。在这项工作中,通过使用互补的基于凝胶的方法和无凝胶/无标签方法,对六种具有不同宿主范围的灰葡萄孢野生型菌株的菌丝体和分泌的蛋白质组进行了分析。在菌丝体蛋白质组和分泌蛋白中,在蛋白质组水平上均确认了真菌的遗传多样性。鉴定出大量具有与毒素化合物或未知功能有关的保守结构域的假想蛋白质,其菌株之间具有质的差异。假设蛋白的鉴定表明,灰葡萄芽孢杆菌菌株在适应特定环境或生长条件的过程中差异最大,而不是必需的代谢反应。蛋白质组学可以帮助鉴定与宿主植物组织的感染和定殖有关的可变蛋白质,以及不同的灰质芽孢杆菌野生型菌株之间的毒力和侵袭性因子。本文是《特刊》的一部分。微生物蛋白质组学。

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