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首页> 外文期刊>Phytopathology >Use of Cross-Flow Membrane Filtration in a Recirculating Hydroponic System to Suppress Root Disease in Pepper Caused by Pythium myriotylum
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Use of Cross-Flow Membrane Filtration in a Recirculating Hydroponic System to Suppress Root Disease in Pepper Caused by Pythium myriotylum

机译:横流膜过滤在循环水培系统中用于抑制腐霉菌引起的辣椒根系病

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摘要

ABSTRACT Zoosporic pathogens in the genera Pythium and Phytophthora cause extensive root disease epiphytotics in recirculating hydroponic vegetable-production greenhouses. Zoospore cysts of Pythium myriotylum Drechsler were used to evaluate the effectiveness of cross-flow membrane filters to control pythiaceous pathogens in recirculating hydroponic systems. Four membrane filter brands (Honeycomb, Polypure, Polymate, and Absolife) were tested alone or in combination to determine which filters would effectively remove infective propagules of P. myriotylum from solutions and reduce disease incidence and severity. Zoospore cysts of P. myriotylum generally measured 8 to 10 mum, and it was hypothesized that filters with pore-sizes <5 mum would be effective at removing 100% of the infective propagules and protect pepper plants from root infection. Single-filter assays with Honeycomb and Polypure brands removed 85 to 95% of zoospore cysts when pore sizes were rated at 1, 5, 10, 20, or 30 mum. Single-filter assays of Polymate and Absolife brands were more effective, exhibiting apparently 100% removal of zoospore cysts from nutrient solutions on filters rated at 1 to 10 mum. However, plant bioassays with Honeycomb and Polymate single filters failed to give long-term protection of pepper plants. Double-filter assays with 1- and 0.5-mum Polymate filters significantly increased the protection of pepper plants grown in nutrient film technique systems but, eventually, root disease and plant wilt could be observed. Insect transmissions by shore flies were not factors in disease development. Scanning electron microscopy images of zoospore cysts entrapped on Polymate filters revealed zoospore cysts that were either fully encysted, partially encysted, or of unusually small size (3 mum in diameter). It was concluded that either the atypically small or pliable pleomorphic zoospore cysts were able to penetrate filter membranes that theoretically should have captured them.
机译:摘要腐霉属和疫霉属中的动植物病原体在循环水培蔬菜生产温室中引起广泛的根系病害附生。腐霉霉菌Drechsler的游动孢子囊肿被用于评估横流膜滤池在循环水培系统中控制腐霉菌病原体的有效性。对四个膜过滤器品牌(蜂窝,Polypure,Polymate和Absolife)进行了单独测试或组合测试,以确定哪种过滤器可以有效地从溶液中去除感染性繁殖性黑斑病菌并降低疾病的发生率和严重程度。 P. myriotylum的游动孢子囊通常测量为8至10微米,并且假设孔径小于5微米的过滤器可有效去除100%的感染性繁殖体并保护胡椒植物免受根部感染。当孔径分别定为1、5、10、20或30微米时,使用Honeycomb和Polypure品牌的单滤器分析可去除85%至95%的游动孢子囊。 Polymate和Absolife品牌的单滤器测定更有效,在营养液中(额定值为1至10微米),游动孢子囊明显去除了100%。但是,使用蜂巢和Polymate单一过滤器进行植物生物测定无法长期保护胡椒植物。用1和0.5微米的Polymate过滤器进行的双重过滤分析显着提高了在营养膜技术系统中生长的辣椒植物的保护性,但最终可以观察到根部病害和植物枯萎。岸蝇的昆虫传播不是疾病发展的因素。捕获在Polymate滤膜上的游动孢子囊的扫描电子显微镜图像显示,游动孢子囊完全被包埋,部分被包埋或尺寸异常小(直径3毫米)。结论是,非典型小或柔韧的多形游动孢子囊肿能够穿透滤膜,而滤膜在理论上应该已经捕获了它们。

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