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Inhibition of the apple scab pathogen Venturia inaequalis and the grapewine downy mildew pathogen Plasmopara viticola by extracts of green waste compost

机译:绿色废料堆肥对苹果黑星病病原体Venturia inaequalis和葡萄霜霉病原体Plasmopara viticola的抑制作用

摘要

Extracts of green waste compost have been shown to inhibit plant diseases. In this study, the factors influencing the mechanism of inhibition of apple scab (Venturia inaequalis) and grapevine downy mildew (Plasmopara viticola) were studied. Extracts were prepared from samples of 30 composts from commercial composting plants. Composts were extracted with 1:2 or 1:5 water for 2 or 7 days. Extracts were applied to seedling of apple and grapevine. The seedlings were artificially inoculated with V. inaequalis or P. viticola, respectively and incubated under controlled conditions. After inoculation, severity of diseases and lesion diameter were measured. The incubation time and the compost/water ratio did not influence the capacity of the extracts to protect the apple plants. All treatments with compost extracts reduced disease severity in both host pathogen systems, and there was no difference in efficacy between autoclaved, sterile filtrated (0. 2 µm) and untreated extracts. From this, we conclude that the inhibition by compost extracts is not linked to their microbial activity. Rinsing apple seedling leaves 1 and 48 hours after application of the compost extracts did not diminish the protective effect against V. inaequalis. On the other hand, the severity of P. viticola increased, when the seedlings were rinsed after the application of compost extracts, and was similar to the untreated control. Compost extracts enhanced in vitro germination of conidia of V. inaequalis and showed no fungicidal effect. Thus, inhibition apparently acts indirectly in this host-pathogen system. On the other hand, the activity of zoospores of P. viticola was inhibited by 70 % compared to the control. The salt content of the extracts and their effect on the zoospores were positively correlated. For this host-pathogen system, there is thus evidence for a direct inhibition by compost extracts. We conclude that the active principle against V. inaequalis and P. viticola must be a water soluble, heat-stable metabolite produced in the compost before its extraction. The mechanism of inhibition in both plant-pathogen systems is different.
机译:绿色废物堆肥的提取物已显示出抑制植物病害的作用。在这项研究中,研究了影响抑制苹果黑星病(Venturia inaequalis)和葡萄霜霉病(Plasmopara viticola)的机制的因素。从商业堆肥厂的30种堆肥样品中提取提取物。用1:2或1:5的水提取堆肥2或7天。提取物用于苹果和葡萄的幼苗。将幼苗分别用不等边弧菌或葡萄假单胞菌人工接种,并在控制条件下孵育。接种后,测量疾病的严重程度和病变直径。孵育时间和堆肥/水比不影响提取物保护苹果植物的能力。用堆肥提取物进行的所有处理均降低了两种宿主病原体系统的疾病严重程度,并且高压灭菌,无菌过滤(0.2 µm)和未处理的提取物的功效没有差异。由此得出的结论是,堆肥提取物的抑制作用与其微生物活性无关。施用堆肥提取物后1到48小时冲洗苹果幼苗叶片不会减弱对不等边弧菌的保护作用。另一方面,当施用堆肥提取物漂洗幼苗时,葡萄球菌的严重性增加,并且与未处理的对照相似。堆肥提取物可增强不等分枝孢子的体外萌发,且无杀真菌作用。因此,抑制作用显然在该宿主-病原体系统中间接起作用。另一方面,与对照相比,葡萄球菌的游动孢子的活性被抑制了70%。提取物的盐含量及其对游动孢子的影响呈正相关。因此,对于这种宿主-病原体系统,有证据表明堆肥提取物具有直接抑制作用。我们得出的结论是,对抗不平等弧菌和葡萄球菌的活性成分必须是堆肥中提取前在堆肥中产生的水溶性热稳定代谢产物。在两种植物-病原体系统中的抑制机理是不同的。

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