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Disease severity enhancement by an esterase from non-phytopathogenic yeast Pseudozyma antarctica and its potential as adjuvant for biocontrol agents

机译:非植物病原性南极假单胞菌的酯酶增强疾病严重性及其作为生物防治剂佐剂的潜力

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摘要

The phylloplane yeast Pseudozyma antarctica secretes an esterase, named PaE, and xylanase when cultivated with xylose. We previously observed that the lipophilic layer of Micro-Tom tomato leaves became thinner after the culture filtrate treatment. The leaves developed reduced water-holding ability and became wilted. In this study, the purified enzymes were spotted on Micro-Tom leaves. PaE, but not xylanase, thinned the lipophilic layer of leaves and decreased leaf resistance to the phytopathogenic fungus Botrytis cinerea. Disease severity increased significantly in detached leaves and potted plants treated with the culture filtrate and B. cinerea spores compared with those treated with inactivated enzyme and B. cinerea alone. Spore germination ratios, numbers of penetrating fungal hyphae in the leaves, and fungal DNA contents also increased significantly on the detached leaves. Japanese knotweed (Fallopia japonica), a serious invasive alien weed in Europe and North America, also became susceptible to infection by the rust pathogen Puccinia polygoni-amphibii var. tovariae following the culture filtrate treatment. The culture filtrate treatment increased disease development in plants induced by both phytopathogenic fungi. Our results suggest that P. antarctica culture filtrate could be used as an adjuvant for sustainable biological weed control using phytopathogenic fungi.
机译:当用木糖培养时,叶平面酵母南极假单胞菌分泌一种酯酶,称为PaE和木聚糖酶。先前我们观察到Micro-Tom番茄叶片的亲脂层在培养滤液处理后变薄。叶片的持水能力降低并枯萎。在这项研究中,纯化的酶被点在Micro-Tom叶片上。 PaE,而不是木聚糖酶,可使叶片的亲脂层变薄,并且降低了叶片对植物病原性灰葡萄孢的抵抗力。与单独用灭活酶和灰质芽孢杆菌处理相比,用培养物滤液和灰质芽孢杆菌孢子处理的离体叶片和盆栽植物的病害严重程度显着增加。孢子的发芽率,叶片中穿透真菌的菌丝数量以及真菌DNA含量在分离的叶片上也显着增加。日本虎杖(Fallopia japonica)是欧洲和北美的一种严重入侵外来杂草,也易受锈病病原体Puccinia polyi-amphibii var感染。培养滤液处理后的番茄。培养物滤液处理增加了由两种植物病原性真菌诱导的植物中疾病的发展。我们的结果表明,南极体育培养液可用作使用植物致病性真菌进行可持续生物除草的佐剂。

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