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首页> 外文期刊>Microbial Biotechnology >Bacterial communities associated with Brassica napus L. grown on trace element‐contaminated and non‐contaminated fields: a genotypic and phenotypic comparison
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Bacterial communities associated with Brassica napus L. grown on trace element‐contaminated and non‐contaminated fields: a genotypic and phenotypic comparison

机译:与甘蓝型油菜相关的细菌群落生长在被微量元素污染和未污染的田地上:基因型和表型的比较

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SummaryCultivable bacterial strains associated with field-grown Brassica napus L. (soil, rhizosphere and roots) from a trace elements (Cd, Zn and Pb) contaminated field and a non-contaminated control field were characterized genotypically and phenotypically. Correspondence analysis of the genotypic data revealed a correlation between soil and rhizosphere communities isolated from the same field, indicating that local conditions play a more important role in influencing the composition of (rhizosphere) soil bacterial communities than root exudates. In contrast, endophytic communities of roots showed a correlation between fields, suggesting that plants on the two fields contain similar obligate endophytes derived from a common seed endophytic community and/or can select bacteria from the rhizosphere. The latter seemed not very likely since, despite the presence of several potential endophytic taxa in the rhizosphere, no significant correlation was found between root and rhizosphere communities. The majority of Cd/Zn tolerant strains capable of phosphorus solubilization, nitrogen fixation, indole-3-acetic acid production and showing 1-aminocyclopropane-1-carboxylate deaminase capacity were found in the rhizosphere and roots of plants growing on the contaminated field.
机译:总结在基因型和表型上对与田间生长的甘蓝型油菜(土壤,根际和根系)的痕量元素(Cd,Zn和Pb)污染的田地和未污染的对照田地相关的可培养细菌菌株进行了表征。基因型数据的对应分析表明,同一田间土壤和根际土壤群落之间存在相关性,这表明局部条件在影响(根际)土壤细菌群落组成方面比根系分泌物更重要。相反,根的内生群落在田间显示出相关性,这表明这两个田地上的植物含有相似的专性内生菌,它们来源于共同的种子内生群落和/或可以从根际中选择细菌。后者似乎不太可能,因为尽管在根际存在几种潜在的内生植物分类群,但在根与根际群落之间未发现显着相关性。在受污染田地的植物根际和根系中发现了大多数能够耐受磷的溶解,固氮,吲哚-3-乙酸产生并显示1-氨基环丙烷-1-羧酸脱氨酶能力的对Cd / Zn耐受的菌株。

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