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甲基托布津:用于菌根抑制实验的新型苯菌灵。

Topsin-M: the new benomyl for mycorrhizal-suppression experiments.

作者信息

Wilson G W T, Williamson M M

机构信息

Department of Natural Resource Ecology and Management, 008C Agricultural Hall, Oklahoma State University, Stillwater, Oklahoma 74078-6013, USA.

出版信息

Mycologia. 2008 Jul-Aug;100(4):548-54. doi: 10.3852/08-024r.

Abstract

The fungicide benomyl was the most commonly used biocide for both field and greenhouse experiments in which arbuscular mycorrhizal fungal (AMF) suppression is desired. Unfortunately benomyl is no longer manufactured and therefore is not available for experimental use and no fungicide has been proposed as a successful alternative for experimentally suppressing mycorrhizal fungi. In this study we examined the potential for the fungicide Topsin M (topsin) to suppress mycorrhizal symbiosis in both field and greenhouse experiments. Topsin reduced AMF colonization of the obligately mycotrophic, warm-season grass Andropogon gerardii with a large and significant reduction in plant biomass production. Topsin reduced AMF colonization of the facultatively mycotrophic, cool-season grass Pascopyron smithii but did not significantly reduce biomass production. Fertilization with nitrogen and phosphorus was able to compensate for reductions in biomass due to the application of fungicide because biomass production of plants that received topsin fungicide was not significantly different from fertilized controls not receiving topsin. While we are not advocating that topsin fungicide is a universal mechanism for mycorrhizal-suppressed controls, in systems where benomyl was found to be successful topsin appears to be a useful, available and successful alternative.

摘要

杀菌剂苯菌灵是田间和温室实验中最常用的杀生物剂,这些实验需要抑制丛枝菌根真菌(AMF)。不幸的是,苯菌灵已不再生产,因此无法用于实验,而且还没有一种杀菌剂被提议作为实验性抑制菌根真菌的成功替代品。在本研究中,我们在田间和温室实验中研究了杀菌剂甲基托布津(托布津)抑制菌根共生的潜力。托布津减少了专性菌根营养型暖季草糙隐子草的AMF定殖,植物生物量产量大幅显著降低。托布津减少了兼性菌根营养型冷季草蓝茎冰草的AMF定殖,但没有显著降低生物量产量。氮磷施肥能够弥补因施用杀菌剂而导致的生物量减少,因为施用托布津杀菌剂的植物的生物量产量与未施用托布津的施肥对照没有显著差异。虽然我们并不主张托布津杀菌剂是菌根抑制对照的通用机制,但在发现苯菌灵成功的系统中,托布津似乎是一种有用、可用且成功的替代品。

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