首页> 外文期刊>World Journal of Microbiology & Biotechnology >Impact of rhizobial inoculation on Acacia senegal (L.) Willd. growth in greenhouse and soil functioning in relation to seed provenance and soil origin.
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Impact of rhizobial inoculation on Acacia senegal (L.) Willd. growth in greenhouse and soil functioning in relation to seed provenance and soil origin.

机译:根瘤菌接种对塞内加尔相思(L.)Willd的影响。与种子出处和土壤起源有关的温室生长和土壤功能。

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摘要

Rhizobial inoculation has a positive impact on plants growth; however, there is little information about its effect on soil microbial communities and their activity in the rhizosphere. It was therefore necessary to test the effect of inoculation of Acacia senegal (L.) Willd. seedlings with selected rhizobia on plant growth, structure and diversity of soil bacterial communities and soil functioning in relation to plant provenance and soil origin. In order to carry out this experiment, three A. senegal seeds provenance from Kenya, Niger, and Senegal were inoculated with selected rhizobial strains. They have been further grown during 4 months in greenhouse conditions in two non-disinfected soils, Dahra and Goudiry coming respectively from arid and semi-arid areas. The principal component analysis (ACP) showed an inoculation effect on plant growth, rhizospheric bacterial diversity and soil functioning. However, the performances of the rhizobial strains varied in relation to the seed provenance and the soil origin. The selected rhizobial strains, the A. senegal provenance and the soil origin have modified the structure and the diversity of soil bacterial communities as measured by principal component analysis/denaturing gradient gel electrophoresis analyses. It is interesting to note that bacterial communities of Dahra soil were highly structured according to A. senegal provenance, whereas they were structured in relation to rhizobial inoculation in Goudiry soil. Besides, the impact of inoculation on soil microbial activities measured by fluorescein diacetate analyses varied in relation to plant provenance and soil origin. Nevertheless, total microbial activity was about two times higher in Goudiry, arid soil than in Dahra, semi-arid soil. Our results suggest that the rhizobial inoculation is a suitable tool for improving plants growth and soil fertility. Yet, the impact is dependent on inoculants, plant provenance and soil origin. It will, therefore, be crucial to identify the appropriate rhizobial strains and plant provenance or species in relation to the soil type.
机译:根瘤菌接种对植物生长有积极影响;然而,关于它对土壤微生物群落的影响及其在根际中的活性的信息很少。因此有必要测试塞内加尔相思(L.)Willd的接种效果。根瘤菌对植物生长,土壤细菌群落结构和多样性以及土壤功能的影响与植物来源和土壤起源有关。为了进行该实验,需要三个 A。肯尼亚,尼日尔和塞内加尔的塞内加尔种子种源接种了选定的根瘤菌菌株。它们已经在温室条件下的四个月中分别在两个未消毒的土壤中生长,分别来自干旱和半干旱地区的Dahra和Goudiry。主成分分析(ACP)显示了接种对植物生长,根际细菌多样性和土壤功能的影响。然而,根瘤菌菌株的性能与种子出处和土壤来源有关。选定的根瘤菌菌株, A。塞内加尔的起源和土壤起源改变了土壤细菌群落的结构和多样性,这是通过主成分分析/变性梯度凝胶电泳分析来测量的。有趣的是,根据A,Dahra土壤的细菌群落具有高度结构化。塞内加尔的产地,而其结构与古迪里土壤中的根瘤菌接种有关。此外,接种荧光二乙酸荧光素分析对土壤微生物活性的影响随植物来源和土壤来源的不同而变化。然而,古迪里干旱土壤的总微生物活性约为半干旱土壤达拉的两倍。我们的结果表明,根瘤菌接种是改善植物生长和土壤肥力的合适工具。但是,影响取决于孕育剂,植物出处和土壤来源。因此,确定与土壤类型相关的适当的根瘤菌菌株和植物种源或物种至关重要。

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