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Slow sand filters effectively reduce Phytophthora after a pathogen switch from Fusarium and a simulated pump failure

机译:慢砂滤池可有效减少病原菌从镰刀菌中转移并模拟泵故障后的疫霉菌

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Slow sand filtration has been shown to effectively reduce Phytophthora zoospores in irrigation water. This experiment tested the reduction of Phytophthora colony forming units (CFUs) by slow sand filtration systems after switching the pathogen contaminating plant leachate from Fusarium to Phytophthora and the resilience of the system to a short period without water, as might be caused by a pump failure. The slow sand filtration system greatly reduced Phytophthora CFUs and transmission after switching the pathogens. In addition, Phytophthora reduction by the slow sand filter was equally effective before and after the simulated pump failure. Reduction of Fusarium was not seen by the SSFs, before or after the simulated pump failure. The results suggest that slow sand filters are effective at reducing larger organisms, such as Phytophthora zoospores, even after a pump failure or a change in pathogens.
机译:缓慢的砂滤已被证明可以有效减少灌溉水中的疫霉菌孢子。该实验测试了将病原体污染的植物渗滤液从镰刀菌转化为疫霉菌后,通过慢速砂滤系统减少疫霉菌菌落形成单位(CFU)的情况,以及该系统在短时间内没有水的情况下的复原力,这可能是由泵故障引起的。缓慢的砂滤系统极大地减少了病原菌转移后疫霉菌的CFU和传播。此外,在模拟泵故障之前和之后,通过慢速砂滤池减少疫霉菌效果相同。在模拟泵故障之前或之后,SSF均未见镰刀菌减少。结果表明,即使在泵故障或病原体发生变化后,慢速砂滤池也能有效减少大型生物,例如疫霉疫霉菌。

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