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首页> 外文期刊>European Journal of Plant Pathology >Green-odour compounds have antifungal activity against the rice blast fungus Magnaporthe oryzae.
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Green-odour compounds have antifungal activity against the rice blast fungus Magnaporthe oryzae.

机译:绿味化合物对稻瘟病菌稻瘟病菌具有抗真菌活性。

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摘要

Four green-odour compounds - trans-2-hexenal, cis-3-hexenol, n-hexanal, and cis-3-hexenal - were applied (0.85 micro g ml-1 as vapour) to rice plants in laboratory conditions to observe their biological activity against the phytopathogenic fungus Maganporthe oryzae, which causes rice blast disease worldwide. Two compounds, trans-2-hexenal and cis-3-hexenal, showed remarkable disease suppression efficacy (99.7% and 100% suppression, respectively), while n-hexanal had moderate (86.5%) and cis-3-hexenol had weak (20.8%) disease-suppressing effects. Pre-application and post-application of trans-2-hexenal or cis-3-hexenal had slight effects on blast incidence, suggesting that these compounds had direct effects to suppress M. oryzae infection. In fact, trans-2-hexenal and cis-3-hexenal exhibited a growth suppression effect on M. oryzae. Interestingly, these two compounds inhibited appressorium formation at lower concentrations than the growth suppression. Studies on the hypersensitive response (HR)-like reaction and plant beta -1,3-glucanase activity in rice plant confirmed that induced resistance was not the major factor involved in the disease suppression mechanism. Results of this study conclusively showed that trans-2-hexenal and cis-3-hexenal possess potent inhibitory activities against the growth and the appressorium formation of M. oryzae and could be used as antifungal agents to significantly reduce M. oryzae infections in rice.
机译:四种绿色气味化合物-反式 -2-己烯醛,顺式 -3-己烯醇, n -己醛和顺式 -3-hexenal-(0.85微克ml -1 作为蒸气)施用于水稻植株,观察其对植物致病性真菌 Maganporthe oryzae 的生物活性。导致全世界稻瘟病。两种化合物, trans -2-hexenal和 cis -3-hexenal,显示出显着的疾病抑制功效(分别为99.7%和100%抑制),而 n -hexanal具有中度(86.5%),而 cis -3-己烯醇具有弱的(20.8%)抑制疾病作用。反式 -2- -3-hexenal的施用前和施用后对胚泡的发生率有轻微的影响,表明这些化合物对抑制<我> M。米粉感染。实际上,反式 -2-己烯醛和顺式 -3-己烯醛对 M具有生长抑制作用。米粉。有趣的是,这两种化合物以比生长抑制更低的浓度抑制了食堂的形成。对水稻中超敏反应(HR)样反应和植物β-1,3-葡聚糖酶活性的研究证实,诱导的抗性不是抑制疾病的主要因素。这项研究结果最终表明,反式 -2-己烯醛和顺式 -3-己烯醛具有有效的抑制活性,抑制 M的生长和附着。稻米,并可用作抗真菌剂以显着降低 M。水稻中的稻米感染。

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