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Volatiles from biofumigant plants have a direct effect on carpogenic germination of sclerotia and mycelial growth of Sclerotinia sclerotiorum\ud

机译:来自生物熏蒸植物的挥发物直接影响菌核的生根发芽和菌核菌的菌丝生长\ ud

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摘要

Aims\udSclerotia of Sclerotinia sclerotiorum survive in soil and germinate to produce apothecia which release airborne ascospores. Current control methods rely predominantly on the use of fungicides to kill ascospores. The aim of this research was to identify potential biofumigation treatments which suppress sclerotial germination, providing a potential alternative and long-term approach to disease management.\udMethods\udMicrocosm and in vitro experiments were conducted using dried and milled plant material from six different biofumigant crop plants to determine effects on carpogenic germination of sclerotia and mycelial growth of S. sclerotiorum.\udResults\udAll biofumigant plants significantly reduced germination of S. sclerotiorum sclerotia in the microcosm experiments, but were less effective against larger sclerotia. In vitro experiments showed a direct effect of biofumigant volatiles on both the mycelial growth of S. sclerotiorum, and carpogenic germination of sclerotia, where the most effective treatment was B. juncea ‘Vittasso’.\udConclusions\udIt was clear from this study that biofumigant crop plants have potential as part of an integrated disease management system for control of S. sclerotiorum. The microcosm experiments described here provide a straightforward and reliable screening method for evaluating different biofumigants for activity.
机译:目的核盘菌核盘菌在土壤中存活并发芽,产生可释放空气中的子囊孢子的紫杉。当前的控制方法主要依赖于使用杀真菌剂来杀死子囊孢子。这项研究的目的是确定潜在的抑制熏蒸硬化的生物熏蒸处理方法,为疾病管理提供一种潜在的替代方法和长期方法。\ udMethods \ ud使用来自六种不同生物熏蒸剂作物的干燥和磨碎的植物材料进行了微观和体外实验\ ud结果\ ud所有生物熏蒸植物都在微观实验中显着减少了S. sclerotiorum菌核的发芽,但对较大的Sclerotia无效。体外实验表明,生物熏蒸剂挥发物对菌核菌的菌丝体生长和菌核的生根发芽都有直接作用,其中最有效的治疗方法是芥菜芽孢杆菌“ Vittasso”。\ ud结论\ ud从这项研究中可以清楚地看出,生物熏蒸剂作为控制病菌的综合疾病管理系统的一部分,农作物具有潜力。这里描述的微观实验提供了一种简单而可靠的筛选方法,用于评估不同的生物熏蒸剂的活性。

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