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首页> 外文期刊>Plant, Soil and Environment >Rhizosphere bacteria induced by aluminum-tolerantand aluminum-sensitive soybeans in acid soil.
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Rhizosphere bacteria induced by aluminum-tolerantand aluminum-sensitive soybeans in acid soil.

机译:耐铝和铝敏感大豆在酸性土壤中诱导的根际细菌。

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Rhizosphere microbial communities play a major role in multiple soil functions. The aim of this study is to assess the relation of bacteria and organic acids in rhizosphere soil and community function induced by soybean genotypes, BX10 [aluminum (Al)-tolerant soybean] and BD2 (Al-sensitive soybean). Organic acid analysis in the rhizosphere soil indicates that BX10 increased the concentration of citric acid, whereas BD2 decreased it; malic acid was only found in the rhizosphere soil of BX10. Redundancy analysis results also showed that the two soybean genotypes induced distinct rhizosphere microbial communities, and citric acid and malic acid had a significantly positive correlation with rhizosphere bacteria of BX10. The community level physiological profiling showed that BX10 might have more influence than BD2 on the ability to metabolize organic C substrates. Sequence analysis indicates that two soybeans stimulate some rhizobacteria, such as species of Acinetobacter, Candidatus Amoebinatus, and uncultured proteobacterium. This study revealed that rhizobacteria of two soybeans may be related to their organic acid exudation.CAS Registry Numbers 77-92-9 6915-15-7
机译:根际微生物群落在多种土壤功能中起主要作用。本研究的目的是评估大豆基因型,BX10(耐铝(Al)的大豆)和BD2(铝敏感的大豆)诱导的根际土壤中细菌和有机酸与群落功能的关系。根际土壤中的有机酸分析表明,BX10增加了柠檬酸的浓度,而BD2降低了柠檬酸的浓度。苹果酸仅在BX10的根际土壤中发现。冗余分析结果还表明,这两种基因型分别诱导了不同的根际微生物群落,柠檬酸和苹果酸与BX10的根际细菌呈显着正相关。社区水平的生理学分析表明,BX10在代谢有机C底物的能力上可能比BD2更大。序列分析表明,两种大豆刺激某些根瘤菌,例如不动杆菌属,变形杆菌念珠菌和未培养的变形杆菌。这项研究表明,两种大豆的根际细菌可能与它们的有机酸渗出有关.CAS登记号77-92-9 6915-15-7

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