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首页> 外文期刊>Global change biology >Remarkable effects of microbial factors on soil phosphorus bioavailability: A country-scale study
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Remarkable effects of microbial factors on soil phosphorus bioavailability: A country-scale study

机译:微生物因子对土壤磷生物利用度的显著影响:一项国家规模的研究

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Low soil phosphorus (P) bioavailability causes the widespread occurrence of P-limited terrestrial ecosystems around the globe. Exploring the factors influencing soil P bioavailability at large spatial scales is critical for managing these ecosystems. However, previous studies have mostly focused on abiotic factors. In this study, we explored the effects of microbial factors on soil P bioavailability of terrestrial ecosystems using a country-scale sampling effort. Our results showed that soil microbial biomass carbon (MBC) and acid phosphatase were important predictors of soil P bioavailability of agro- and natural ecosystems across China although they appeared less important than total soil P. The two microbial factors had a positive effect on soil P bioavailability of both ecosystem types and were able to mediate the effects of several abiotic factors (e.g., mean annual temperature). Meanwhile, we revealed that soil phytase could affect soil P bioavailability at the country scale via ways similar to those of soil MBC and acid phosphatase, a pattern being more pronounced in agroecosystems than in natural ecosystems. Moreover, we obtained evidence for the positive effects of microbial genes encoding these enzymes on soil P bioavailability at the country scale although their effect sizes varied between the two ecosystem types. Taken together, this study demonstrated the remarkable effects of microbial factors on soil P bioavailability at a large spatial scale, highlighting the importance to consider microbial factors in managing the widespread P-limited terrestrial ecosystems.
机译:土壤磷(P)生物利用度低导致全球范围内广泛存在磷限制的陆地生态系统。探索大空间尺度上影响土壤磷生物利用度的因素对于管理这些生态系统至关重要。然而,以前的研究主要集中在非生物因素上。在这项研究中,我们通过国家尺度的采样工作探讨了微生物因子对陆地生态系统土壤磷生物利用性的影响。结果表明,土壤微生物生物量碳(MBC)和酸性磷酸酶是中国农业和自然生态系统土壤磷生物有效性的重要预测因子,但其重要性似乎不如土壤总磷重要。两种微生物因子对两种生态系统类型的土壤磷生物利用度均有正向影响,并能够介导多种非生物因子(如年平均温度)的影响。同时,我们发现土壤植酸酶可以通过与土壤MBC和酸性磷酸酶相似的方式影响土壤磷的生物有效性,这种模式在农业生态系统中比在自然生态系统中更为明显。此外,我们获得了编码这些酶的微生物基因在国家尺度上对土壤磷生物利用度的积极影响的证据,尽管它们的效应大小在两种生态系统类型之间有所不同。综上所述,本研究证明了微生物因子在大空间尺度上对土壤磷生物利用度的显著影响,凸显了在管理广泛的限磷陆地生态系统中考虑微生物因子的重要性。

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