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Biocontrol Activity and Induction of Systemic Resistance in Pepper by Compost Water Extracts Against Phytophthora capsici

机译:堆肥水提取物对辣椒疫霉的生防活性和诱导的系统抗性

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We investigated the effects of water extracts of composts (CWE) from commercial compost facilities for controlling root and foliar infection of pepper plants by Phytophthora capsici. Among 47 CWE tested, CWE from composts Iljuk-3, Iljuk-7, Shinong-8, and Shinong-9 significantly (P < 0.05) inhibited zoospore germination, germ tube elongation, mycelial growth, and population of P capsici. All selected CWE significantly (P < 0.05) reduced the disease incidence and severity in the seedling and plant assays compared with the controls. However, there were no significant differences in zoospore germination, disease incidence, and disease severity between treatments of untreated, autoclaved, and filtered CWE. In addition, CWE significantly (P < 0.05) suppressed leaf infection of P capsici through induced systemic resistance (ISR) in plants root-drenched with CWE. The tested CWE enhanced the expression of the pathogenesis-related genes, CABPRI, CABGLU, C4Chi2, CaPR-4, CAPOl, or CaPR-10 as well as beta-1,3-glucanase, chitinase, and peroxidase activities, which resulted in enhanced plant defense against P capsici in pepper plants. Moreover, the CWE enhanced the chemical and structural defenses of the plants, including H2O2 generation in the leaves and lignin accumulation in the stems. The CWE could also suppress other fungal pathogens (Colletotrichum coccodes in pepper leaves and C. orbiculare in cucumber leaves) through ISR; however, it failed to inhibit other bacterial pathogens (Xanthomonas campestris pv. vesicatoria in pepper leaves and Pseudomonas syringae pv. lachrymans in cucumber leaves). These results suggest that a heat-stable chemical(s) in the CWE can suppress root and foliar infection by P. capsici in pepper plants. In addition, these suppressions might result from direct inhibition of development and population of P capsici for root infection, as well as indirect inhibition of foliar infection through ISR with broad-spectrum protection.
机译:我们调查了来自商业堆肥设施的堆肥水提取物(CWE)的作用,以控制辣椒疫霉对辣椒植物的根部和叶面的感染。在测试的47个CWE中,来自堆肥Iljuk-3,Iljuk-7,Shinong-8和Shinong-9的CWE显着(P <0.05)抑制游动孢子的萌发,胚芽管伸长,菌丝体生长和辣椒辣椒的种群。与对照组相比,所有选择的CWE均显着(P <0.05)降低了幼苗和植物试验中的发病率和严重程度。但是,未经处理,高压灭菌和过滤的CWE处理之间的游动孢子萌发,疾病发生率和疾病严重性之间无显着差异。此外,CWE通过诱导根系滴灌的植物体内的全身抗性(ISR)显着(P <0.05)抑制辣椒的叶片感染。测试的CWE增强了与病程相关的基因CABPRI,CABGLU,C4Chi2,CaPR-4,CAPO1或CaPR-10的表达,以及β-1,3-葡聚糖酶,几丁质酶和过氧化物酶的活性,从而增强了对辣椒植物中的辣椒辣椒的植物防御。此外,CWE增强了植物的化学和结构防御能力,包括叶片中生成H2O2和茎中木质素积累。 CWE还可以通过ISR抑制其他真菌病原体(辣椒叶中的炭疽菌和黄瓜叶中的圆球梭菌)。但是,它不能抑制其他细菌性病原体(辣椒叶中的黄单胞菌(Xanthomonas campestris)pv。vesicatoria和黄瓜叶中的丁香假单胞菌(Pseudomonas syringae)pv。lachrymans。这些结果表明,CWE中的热稳定化学物质可以抑制辣椒植物中辣椒的根和叶感染。此外,这些抑制作用可能是由于直接抑制辣椒根腐病的发展和种群对根部感染的抑制,以及通过具有广谱保护作用的ISR间接抑制叶感染所致。

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