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十字花科植物产生的异硫氰酸盐作为尖孢镰刀菌的抑制剂

Isothiocyanates Produced by Brassicaceae Species as Inhibitors of Fusarium oxysporum.

作者信息

Smolinska U, Morra M J, Knudsen G R, James R L

机构信息

Research Institute of Vegetable Crops, Konstytucji 3 Maja 1/3, 96-100 Skierniewice, Poland.

Soil Science Division, University of Idaho, Moscow 83844-2339.

出版信息

Plant Dis. 2003 Apr;87(4):407-412. doi: 10.1094/PDIS.2003.87.4.407.

Abstract

Glucosinolates contained in members of the Brassicaceae release isothiocyanates potentially useful in controlling Fusarium oxysporum pathogens in conifer seedling nursery soils. Our objective was to determine the toxicity of individual isothiocyanates to different growth stages of the fungus. Bioassays with four F. oxysporum isolates were conducted using sealed containers in which 0.3 μl of 2-propenyl, ethyl, buty, phenylethyl, benzyl, or phenyl isothiocyanate was allowed to volatilize. Propenyl and ethyl isothiocyanates were the most fungistatic of those compounds tested. The same concentrations of propenyl and ethyl isothiocyanates that inhibited mycelial growth completely suppressed conidial and chlamydospore germination of all isolates. Other isothiocyanates including ethyl, benzyl, and phenethyl were also fungitoxic to F. oxysporum conidia and chlamydospores. Reduction in pathogen populations resulting from a green-manure crop are likely achievable since chlamydospores are sensitive to isothiocyanate. Pathogenic F. oxysporum isolates infesting nursery soils would likely be most suppressed by species of plants such as Brassica carinata, B. nigra, and B. juncea, which contain glucosi-nolates that release high concentrations of propenyl isothiocyanate.

摘要

十字花科植物中含有的硫代葡萄糖苷可释放异硫氰酸酯,这可能有助于控制针叶树幼苗苗圃土壤中的尖孢镰刀菌病原体。我们的目标是确定单个异硫氰酸酯对该真菌不同生长阶段的毒性。使用密封容器对四种尖孢镰刀菌分离株进行生物测定,在容器中让0.3微升的2-丙烯基、乙基、丁基、苯乙基、苄基或苯基异硫氰酸酯挥发。在所测试的这些化合物中,丙烯基异硫氰酸酯和乙基异硫氰酸酯的抑菌作用最强。抑制菌丝体生长的相同浓度的丙烯基异硫氰酸酯和乙基异硫氰酸酯完全抑制了所有分离株的分生孢子和厚垣孢子萌发。包括乙基、苄基和苯乙基在内的其他异硫氰酸酯对尖孢镰刀菌分生孢子和厚垣孢子也具有真菌毒性。由于厚垣孢子对异硫氰酸酯敏感,因此绿肥作物可能会减少病原体数量。侵染苗圃土壤的致病性尖孢镰刀菌分离株很可能会受到诸如埃塞俄比亚芥、黑芥和芥菜等植物种类的最大抑制,这些植物含有能释放高浓度丙烯基异硫氰酸酯的硫代葡萄糖苷。

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