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森林土壤中的磷枯竭会促使细菌群落朝着磷回收系统发展。

Phosphorus depletion in forest soils shapes bacterial communities towards phosphorus recycling systems.

机构信息

Research Unit Environmental Genomics, Helmholtz Zentrum München, Ingolstädter Landstr. 1, 85764, Neuherberg, Germany.

Scientific Computing Research Unit, Helmholtz Zentrum München, Ingolstädter Landstr. 1, 85764, Neuherberg, Germany.

出版信息

Environ Microbiol. 2016 Jun;18(6):1988-2000. doi: 10.1111/1462-2920.13188. Epub 2016 Feb 5.

Abstract

Phosphorus (P) is an important macronutrient for all biota on earth but similarly a finite resource. Microorganisms play on both sides of the fence as they effectively mineralize organic and solubilize precipitated forms of soil phosphorus but conversely also take up and immobilize P. Therefore, we analysed the role of microbes in two beech forest soils with high and low P content by direct sequencing of metagenomic deoxyribonucleic acid. For inorganic P solubilization, a significantly higher microbial potential was detected in the P-rich soil. This trait especially referred to Candidatus Solibacter usiatus, likewise one of the dominating species in the data sets. A higher microbial potential for efficient phosphate uptake systems (pstSCAB) was detected in the P-depleted soil. Genes involved in P starvation response regulation (phoB, phoR) were prevalent in both soils. This underlines the importance of effective phosphate (Pho) regulon control for microorganisms to use alternative P sources during phosphate limitation. Predicted genes were primarily harboured by Rhizobiales, Actinomycetales and Acidobacteriales.

摘要

磷(P)是地球上所有生物的重要大量营养素,但也是一种有限的资源。微生物在这两个方面都起着重要作用,因为它们可以有效地将有机磷矿化并溶解土壤中沉淀的磷形式,但反过来,它们也会吸收和固定 P。因此,我们通过直接对宏基因组脱氧核糖核酸进行测序,分析了高磷和低磷含量的两种山毛榉林土壤中微生物的作用。对于无机磷的溶解,在富磷土壤中检测到了更高的微生物潜力。这一特征尤其与 Solibacter usiatus 有关,它同样也是数据集中的主要物种之一。在磷匮乏的土壤中,检测到了更高的有效磷酸盐摄取系统(pstSCAB)的微生物潜力。参与磷饥饿反应调节的基因(phoB、phoR)在两种土壤中都很普遍。这强调了有效磷酸盐(Pho)调控子控制对微生物在磷酸盐限制期间利用替代磷源的重要性。预测基因主要由根瘤菌科、放线菌科和酸杆菌科携带。

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