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Influence of straw degrading microbial compound on wheat straw decomposition and soil biological properties

机译:秸秆降解微生物化合物对小麦秸秆分解及土壤生物学特性的影响

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The main challenge to successful use of wheat straw as soil amendment is its slow decomposition rate as compared to other crop residues. In order to solve this problem and increase farmers’ acceptability, inoculation of straw amended soil with microbial compounds to hasten decomposition is being promoted in China. In this experiment, the effect of three types of industrially produced composite microbial system (Renyuan shengwu (RW), Taigubio (TB) and China green health (GH)) were investigated under two straw placement options (incorporation I and layered L) on wheat straw decomposition and soil biological properties. The result indicates significant differences for all the parameters measured at p ≤ 0.05. RW had highest total CO2?emission during the incubation period (61 days). There was a correlation between total CO2?emission and cellulase activity (R2?= 0.81) and dehydrogenase activity (R2?= -0.66). Placement option had effect on soil total organic carbon (TOC), microbial biomass carbon (MBC), fungi, actinomycetes and bacteria population, and cellulase activity. Both inoculation and straw returning to the soil increased TOC, micro flora and cellulase activity. The results show that direct inoculation of straw amended soil could improve straw decomposition rate and soil biological properties if suitable microbial strains are used.
机译:成功使用小麦秸秆作为土壤改良剂的主要挑战是与其他农作物残留相比,其分解速度慢。为了解决该问题并提高农民的接受度,在中国正在推广用微生物化合物接种秸秆改良土壤以加速分解。在本实验中,研究了两种稻草放置方式(掺入I和分层L)下三种工业生产的复合微生物系统(人源生武(RW),太古比(TB)和中国绿色健康(GH))的作用。秸秆分解与土壤生物学特性。结果表明,所有参数在p≤0.05时均存在显着差异。在潜伏期(61天)内,RW具有最高的总CO2排放量。总的CO2排放量和纤维素酶活性(R2α= 0.81)与脱氢酶活性(R2α= -0.66)之间存在相关性。放置方式对土壤总有机碳(TOC),微生物生物量碳(MBC),真菌,放线菌和细菌种群以及纤维素酶活性有影响。接种和秸秆还田均增加了总有机碳,微生物区系和纤维素酶的活性。结果表明,如果使用合适的微生物菌株,直接接种秸秆改良土壤可以提高秸秆分解速率和土壤生物学特性。

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