首页> 外文期刊>European Journal of Soil Biology >Effects of amendments of ferulic acid on soil microbial communities in the rhizosphere of cucumber ( Cucumis sativus L.).
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Effects of amendments of ferulic acid on soil microbial communities in the rhizosphere of cucumber ( Cucumis sativus L.).

机译:阿魏酸改良剂对黄瓜(Cucumis sativus L.)根际土壤微生物群落的影响。

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摘要

Phenolic compounds are secondary metabolites often implicated in allelopathic interactions. However, how these compounds would affect soil microbial communities is not yet fully understood. In this experiment, effects of amendments of ferulic acid on soil dehydrogenase activity, microbial biomass carbon (MBC) content, and bacterial and fungal community structures and abundances in the rhizosphere of cucumber were evaluated. Polymerase chain reaction (PCR)-denaturing gradient gel electrophoresis (DGGE) and real-time PCR, on bacterial 16S rRNA genes or fungal ITS regions, were used to analyze bacterial and fungal community structures and sizes, respectively. Results showed that amendments of ferulic acid inhibited cucumber seedling growth, and stimulated soil dehydrogenase activity, MBC content, and bacterial and fungal community sizes. Amendments of ferulic acid also changed rhizosphere bacterial and fungal community structures. Bacterial and fungal communities responded differently to the ferulic acid amendment: numbers of visible bands and diversity indices of microbial community were lower in ferulic acid-amended soils than in the unamended soil for bacterial community, while were higher for fungal community. Overall, our results suggested that ferulic acid might account for the autotoxicity of cucumber through changing soil microbial communities.
机译:酚类化合物是次生代谢产物,通常与化感作用有关。但是,这些化合物如何影响土壤微生物群落尚未完全了解。在该实验中,评估了阿魏酸的改良剂对土壤脱氢酶活性,微生物生物量碳(MBC)含量以及黄瓜根际中细菌和真菌群落结构及丰度的影响。利用细菌16S rRNA基因或真菌ITS区的聚合酶链反应(PCR)-变性梯度凝胶电泳(DGGE)和实时PCR分别分析细菌和真菌的群落结构和大小。结果表明,阿魏酸的修饰会抑制黄瓜幼苗的生长,并刺激土壤脱氢酶活性,MBC含量以及细菌和真菌的群落大小。阿魏酸的修正也改变了根际细菌和真菌的群落结构。细菌和真菌群落对阿魏酸修正的反应不同:阿魏酸改良土壤中微生物群落的可见带数和多样性指数比未改良土壤中的细菌群落低,而真菌群落则更高。总体而言,我们的结果表明,阿魏酸可能通过改变土壤微生物群落来解释黄瓜的自毒作用。

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