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首页> 外文期刊>Scientia horticulturae >Dissemination of Phytophthora cactorum, cause of crown rot in strawberry, in open and closed soilless growing systems and the potential for control using slow sand filtration
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Dissemination of Phytophthora cactorum, cause of crown rot in strawberry, in open and closed soilless growing systems and the potential for control using slow sand filtration

机译:在开放和封闭的无土栽培系统中,传播疫霉,草莓冠腐病的原因以及使用慢砂过滤进行控制的潜力

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摘要

Closed (recirculating) growing systems provide a greater potential for the dispersal of water-borne plant pathogens and disease expression compared to open (run-to-waste) systems. Here we studied the effects of three soilless growing systems (open, closed, and closed with slow sand filtration) on the dispersion of Phytophthora cactorum propagules and the severity of the crown rot disease in strawberry (Fragaria x ananassa Duch.). The plant-growth medium used was coir fiber. The three growing systems showed the same density of P. cactorum propagules in the water drained from the growing media. However, propagules of this pathogen were not detected by the baits in the filtered solution recovered from slow sand filtration. In all systems Phytophthora propagules dispersed from the inoculated plant to adjacent uninoculated plants. At the end of the first crop no differences in the severity of crown rot were found between the different systems of crop culture. However, at the end of the second crop cycle, crown rot in the closed soilless system without slow sand filtration was more severe than in the other two systems. These results demonstrated that the commercial potential of slow sand filtration to prevent propagule dispersal and hence suppress crown rot in strawberry crops grown in a closed culture system
机译:与开放式(运行至废物处理)系统相比,封闭式(循环)生长系统为水性植物病原体的扩散和疾病表达提供了更大的潜力。在这里,我们研究了三种无土栽培系统(开放,封闭和缓慢砂滤封闭)对疫霉菌繁殖体的分布和草莓冠腐病严重程度的影响(Fragaria x ananassa Duch。)。使用的植物生长培养基是椰壳纤维。这三个生长系统在从生长介质中排出的水中显示出相同密度的仙人掌繁殖体。然而,通过缓慢砂滤回收的过滤溶液中的毒饵未检测到该病原体的繁殖。在所有系统中,疫霉菌的繁殖体从接种的植物散布到相邻的未接种的植物。在第一批作物结束时,在不同的作物栽培体系之间未发现冠腐严重程度的差异。但是,在第二个作物周期结束时,没有缓慢砂滤的封闭无土系统中的冠腐病比其他两个系统中的冠腐病更为严重。这些结果表明,慢速砂滤的商业潜力在于防止繁殖体扩散,从而抑制密闭栽培系统中种植的草莓作物的冠腐病。

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