首页> 外文期刊>Journal of Agricultural and Food Chemistry >Effect of spores of saprophytic fungi on phytoalexin accumulation in seeds of frog-eye leaf spot and stem canker-resistant and -susceptible soybean (Glycine max L.) cultivars.
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Effect of spores of saprophytic fungi on phytoalexin accumulation in seeds of frog-eye leaf spot and stem canker-resistant and -susceptible soybean (Glycine max L.) cultivars.

机译:腐生真菌的孢子对蛙眼叶斑病和抗茎萎病和敏感大豆(Glycine max L.)品种种子中植物抗毒素的积累的影响。

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摘要

Two saprophytic fungi (Mucor ramosissimus and Rhizopus sp.) were tested for their ability to induce phytoalexin production by seeds of frog-eye leaf spot and stem canker-resistant and -susceptible soybean (Glycine max L.) cultivars. Only M. ramosissimus was shown to elicit a response and qualitative differences in phytoalexin accumulation were found between the susceptible and resistant cultivars. Glyceollins I, II, and III and glycinol were isolated from the susceptible cultivar, whereas Glyceollins I, II, and III, glycinol, glyceocarpin, genistein, isoformononetin, and N-acetyltyramine accumulated in the resistant cultivar in response to the same fungal elicitor. Genistein was found to be an inducibly formed isoflavonoid instead of a constitutive metabolite in the resistant cultivar, whereas N-acetyltyramine is described for the first time as a soybean phytoalexin. All the compounds, except genistein, showed fungitoxic activity against Cladosporium sphaerospermum. Spectral data of the pterocarpan phytoalexins, genistein, and N-acetyltyramine are also given in this work.
机译:测试了两种腐生真菌(Mucor ramosissimus和Rhizopus sp。)通过蛙眼叶斑病种子和抗茎萎病和易感大豆(Glycine max L.)品种的种子诱导产生植物抗毒素的能力。结果表明,仅易感分枝杆菌能引起应答,并且在易感和抗性品种之间植物抗毒素的积累存在质的差异。从易感品种中分离出糖脂I,II和III和甘醇,而针对同一真菌激发子,在抗性品种中积累了糖醇I,II和III,甘醇,糖葫芦素,染料木黄酮,异福宁酮和N-乙酰酪胺。发现金雀异黄素是诱导型异黄酮,而不是抗性品种的组成型代谢物,而N-乙酰酪胺首次被描述为大豆植物抗毒素。除染料木黄酮外,所有化合物均对球形芽孢杆菌有杀真菌活性。这项研究还给出了罗汉松植物抗毒素,染料木黄酮和N-乙酰酪胺的光谱数据。

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