首页> 外文期刊>European Journal of Soil Biology >Greater fungal and bacterial biomass in soil large macropores under no-tillage than mouldboard ploughing
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Greater fungal and bacterial biomass in soil large macropores under no-tillage than mouldboard ploughing

机译:在无耕作下的土壤大麦克风中的更大的真菌和细菌生物量比割草板耕作

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摘要

Soil microorganisms inhabit pores of various shapes and sizes. No-tillage practices cause less disturbance and compaction of the soil profile than mouldboard ploughing, which could provide more habitat for soil microorganisms. The objective of this study was to determine how long-term no-tillage affected pore volume, microbial biomass and their relationship. Soil samples were collected from field plots that were continuously cropped with monoculture maize for 12 years under no-tillage or mouldboard ploughing in Dehui County, Jilin Province, China. No-tillage increased large macropore (> 100 mu m) volume in the 0-5 cm soil layer. Greater biomass of gram positive bacteria, gram negative bacteria, saprophytic fungi, and arbuscular mycorrhizal fungi was measured in the 0-5 cm soil layer of no-tillage than mouldboard ploughed plots. Microbial biomass expressed as PLFA was positively related to the soil large macropore (> 100 mu m) in the 0-20 cm soil layer in this field. We concluded that large macropores are better habitat for bacteria and fungi under no-tillage than mouldboard ploughing in this monoculture maize agroecosystem.
机译:土壤微生物栖息着各种形状和尺寸的毛孔。无耕作实践导致土壤剖面的干扰和压实比梅拉板犁,这可以为土壤微生物提供更多的栖息地。本研究的目的是确定多重耕作影响孔隙体积,微生物生物量及其关系。土壤样品由野外图中收集,在中国吉林省德汇县的无耕作或美德板下连续耕种12年的单殖民玉米。无耕作在0-5厘米土层中增加大宏观(>100μm)体积。在0-5厘米的无耕地的0-5厘米的土壤层中,测量革兰氏阳性细菌,革兰阴性细菌,嗜酸性真菌和丛生菌根真菌的更大的生物量。作为PLFA表示的微生物生物量与该领域的0-20cm土层中的土壤大宏观(>100μm)正相关。我们得出结论,大麦克波雷在无耕地下的细菌和真菌栖息地比耕种在这款单一型玉米玉米农业软骨系统中的耕作。

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