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首页> 外文期刊>Canadian journal of microbiology >Studies on exudate-depleted sclerotial development in Sclerotium rolfsii and the effect of oxalic acid, sclerotial exudate, and culture filtrate on phenolic acid induction in chickpea (Cicer arietinum)
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Studies on exudate-depleted sclerotial development in Sclerotium rolfsii and the effect of oxalic acid, sclerotial exudate, and culture filtrate on phenolic acid induction in chickpea (Cicer arietinum)

机译:罗氏菌菌中分泌物耗尽的硬化发育以及草酸,硬化渗出物和培养滤液对鹰嘴豆酚酸诱导的影响的研究

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摘要

Exudate depletion from developing sclerotia of Sclerotium rolfsii Sacc. in culture caused reduced size and weight of sclerotia. Germination of exudate-depleted sclerotia was delayed on Cyperus rotundus rhizome meal agar medium when compared with that of control sclerotia. The exudate-depleted sclerotia caused infection in chickpea (Cicer arietinum) plants in a glasshouse. Different temperatures and incubation periods had no effect on the germination ability of the exudate-depleted sclerotia. Oxalic acid, sclerotial exudate, and culture filtrate of S. rolfsii induced the synthesis of phenolic acids, including gallic, ferulic, chlorogenic, and cinnamic acids, as well as salicylic acid, in treated chickpea leaves. Gallic acid content was increased in treated leaves compared with the untreated controls. Maximum induction of gallic acid was seen in both leaves treated with oxalic acid followed by exudate and leaves treated with culture filtrate. Cinnamic and salicylic acids were not induced in exudate-treated leaves. Ethyl acetate fractionation indicated that the sclerotial exudates consisted of gallic, oxalic, ferulic, chlorogenic, and cinnamic acids, whereas the culture filtrate consisted of gallic, oxalic, and cinnamic acids along with many other unidentified compounds.
机译:菌核菌Sclerotium rolfsii Sacc的菌核发育中的分泌物耗竭。在培养中导致菌核的大小和重量减少。与对照菌核相比,在莎草根状茎膳食琼脂培养基上延迟了分泌液耗尽菌核的萌发。分泌液耗尽的菌核在温室的鹰嘴豆(Cicer arietinum)植物中引起感染。不同的温度和潜伏期对分泌液耗尽的菌核的发芽能力没有影响。草酸,硬化渗出液和罗氏链球菌的培养滤液诱导了处理过的鹰嘴豆叶片中酚酸的合成,包括没食子酸,阿魏酸,绿原酸和肉桂酸以及水杨酸。与未处理的对照相比,处理过的叶子中没食子酸含量增加了。在用草酸处理过的叶子和渗出液中以及用培养滤液处理过的叶子中都观察到了没食子酸的最大诱导作用。肉桂酸和水杨酸未在渗出液处理过的叶片中诱导。乙酸乙酯分级分离表明硬化性分泌物由没食子酸,草酸,阿魏酸,绿原酸和肉桂酸组成,而培养物滤液由没食子酸,草酸和肉桂酸以及许多其他未鉴定的化合物组成。

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