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Distinct Weathering Ability and Populations of Culturable Mineral-Weathering Bacteria in the Rhizosphere and Bulk Soils of Morus Alba

机译:桑树根际和疏松土壤中独特的风化能力和可培养的矿物风化细菌种群

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In this study, we isolated and compared the weathering effectiveness and population of mineral-weathering bacteria from the rhizosphere and bulk soils of Morus alba grown in a mineral-rich soil. Eighty-four isolates could release Si, Al, K, and Fe from potash feldspar. Weathering effectiveness and pattern of the isolates differed between the rhizosphere and bulk soils. The proportion of the highly effective Si, Al, K, and Fe solubilizers was significantly higher in the rhizosphere soils than in the bulk soils. Notably, the proportion of the highly effective acid-producing isolates was also significantly higher in the rhizosphere soils. The 84 mineral-weathering isolates were affiliated with 15 bacterial genera. Distinct mineral-weathering genera were observed between the rhizosphere and bulk soils. The results suggested that the highly effective mineral-weathering bacteria were selected in the rhizosphere soils and the mineral-weathering bacteria from the rhizosphere and bulk soils might weather potash feldspar through different mechanisms.
机译:在这项研究中,我们从富含矿物质的土壤中生长的桑树的根际和块状土壤中分离并比较了其耐候性和矿物耐候细菌的种群。八十四种分离物可以从钾长石中释放出Si,Al,K和Fe。根际土壤和块状土壤的分离物的耐候性和模式不同。在根际土壤中,高效的Si,Al,K和Fe增溶剂的比例明显高于散装土壤。值得注意的是,在根际土壤中,高效产酸菌株的比例也明显更高。 84个矿物风化分离株与15个细菌属有关。在根际和块状土壤之间观察到独特的矿物风化属。结果表明,在根际土壤中选择了高效的矿物风化细菌,在根际土壤和块状土壤中的矿物风化细菌可能通过不同的机制使钾长石风化。

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