首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Shifts in microbial biomass and community composition in subtropical paddy soils under a gradient of manure amendment
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Shifts in microbial biomass and community composition in subtropical paddy soils under a gradient of manure amendment

机译:修正施肥梯度下亚热带稻田土壤微生物量和群落组成的变化

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To study the responses of microbial community composition to excessive manure amendment and their relationships with soil nutrients, a pot experiment was conducted using soils of different fertilities under a gradient (0-44.8 Mg ha(-1)) of manure amendment. After four rice-growing seasons, the soil nutrients were enriched by intense manure amendment, especially the phosphorus (P) content, and the P-related nutrient stoichiometry was altered. The total P content increased by 1.51 and 1.09 g kg(-1) with the highest manure input in fertile and infertile soils, respectively. For the two soils, both the carbon (C)-to-P and nitrogen (N)-to-P ratios decreased up to around 55 and 4, respectively, by increasing amendment rates from 0 to 44.8 Mg ha(-1). The microbial biomass C (MBC) in the infertile soil increased steadily from 330.73 to 445.93 mg kg(-1) under amendment rates increasing from 2.8 to 44.8 Mg ha(-1). In fertile soil, MBC increased significantly from 590.46 to 784.54 mg kg(-1) and slowly to 875.56 mg kg(-1) before remaining constant. The metabolic quotient (qCO(2)) increased about 2.5-fold when the amendment rate increased from 11.2 to 44.8 Mg ha(-1). The fungal-to-bacterial ratio doubled with the highest manure amendment rate at the expense of actinomycetes, and the community composition shifted at amendment rates a parts per thousand yen22.4 Mg ha(-1). Changes in the composition of microbial communities were associated with the increase in the soil P content and reduced C-to-P and N-to-P ratios. In conclusion, an imbalance in P accumulation with excessive manure amendment may affect the functions of the soil ecosystem by reshaping the soil microbial communities.
机译:为了研究微生物群落组成对过量肥料改良的响应及其与土壤养分的关系,在肥料改良梯度(0-44.8 Mg ha(-1))下,使用不同肥力的土壤进行盆栽试验。在四个水稻生长季节之后,通过强烈的肥料改良,尤其是磷(P)含量,土壤养分得以富集,磷相关养分的化学计量也发生了变化。在肥沃和不肥沃的土壤中,总磷含量分别增加了1.51和1.09 g kg(-1),其中肥料输入量最高。对于这两种土壤,通过将修正率从0增加到44.8 Mg ha(-1),碳(C)与磷的比率和氮(N)与P的比率分别降低至大约55和4。在修正率从2.8 Mg ha(-1)增加到44.8 Mg ha(-1)的情况下,不育土壤中的微生物生物量C(MBC)稳定地从330.73增加到445.93 mg kg(-1)。在肥沃的土壤中,MBC显着增加,从590.46毫克增加到784.54 mg kg(-1),然后缓慢增加到875.56 mg kg(-1),然后保持不变。当修正率从11.2增加到44.8 Mg ha(-1)时,代谢商(qCO(2))增加约2.5倍。真菌对细菌的比率以最高的粪肥修正率增加了一倍,而放线菌的损失却很大,而群落组成以修正率每千日元22.4 Mg ha(-1)转移。微生物群落组成的变化与土壤磷含量的增加以及碳磷比和氮磷比的降低有关。总之,过量施肥会导致磷积累不平衡,可能会通过重塑土壤微生物群落而影响土壤生态系统的功能。

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