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Soil ionomic and enzymatic responses and correlations to fertilizations amended with and without organic fertilizer in long-term experiments

机译:在长期实验中使用和无有机肥的施肥和酶反应和相关性与有机肥的相关性

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To investigate potential interactions between the soil ionome and enzyme activities affected by fertilization with or without organic fertilizer, soil samples were collected from four long-term experiments over China. Irrespective of variable interactions, fertilization type was the major factor impacting soil ionomic behavior and accounted for 15.14% of the overall impact. Sampling site was the major factor affecting soil enzymatic profile and accounted for 34.25% of the overall impact. The availabilities of Pb, La, Ni, Co, Fe and Al were significantly higher in soil with only chemical fertilizer than the soil with organic amendment. Most of the soil enzyme activities, including α-glucosidase activity, were significantly activated by organic amendment. Network analysis between the soil ionome and the soil enzyme activities was more complex in the organic-amended soils than in the chemical fertilized soils, whereas the network analysis among the soil ions was less complex with organic amendment. Moreover, α-glucosidase was revealed to generally harbor more corrections with the soil ionic availabilities in network. We concluded that some of the soil enzymes activated by organic input can make the soil more vigorous and stable and that the α-glucosidase revealed by this analysis might help stabilize the soil ion availability.
机译:为了研究土壤离子组和受精菌受精影响的酶活性的潜在相互作用,从中国的四次长期实验中收集土样。无论可变相互作用如何,施肥型是影响土壤离子行为的主要因素,占总撞击的15.14%。抽样网站是影响土壤酶促概况的主要因素,占整体影响的34.25%。土壤中Pb,La,Ni,Co,Fe和Al的可用性仅高于具有有机修正的土壤的化肥。其中大多数土壤酶活性,包括α-葡糖苷酶活性,通过有机修正显着激活。在有机修正的土壤中,土壤离子和土壤酶活性之间的网络分析比在化学施肥的土壤中更复杂,而土壤离子之间的网络分析与有机修正较差。此外,α-葡糖苷酶被揭示为通常涉及网络中的土壤离子可用性的更多矫正。我们得出结论,有机输入激活的一些土壤酶可以使土壤更加蓬勃且稳定,并且该分析显示的α-葡糖苷酶可能有助于稳定土壤离子可用性。

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