瘤胃微生物对再生秸秆分解的影响。

Kailun Song, Zicheng Zhou, Jinhai Leng, Songwen Fang, Chunhuo Zhou, Guorong Ni, Lichun Kang, Xin Yin
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摘要

近年来,秸秆还田已被证明是解决土壤养分流失和农业污染的一种直接有效的方法。同时,秸秆的缓慢分解可能会损害下一季作物的生长。本试验旨在研究瘤胃微生物对秸秆分解、细菌微生物群落结构、土壤性质和土壤酶活性的影响。结果表明:秸秆还田后第30天,RMs显著提高了秸秆在土壤中的降解率,达到39.52%,比对照高41.37%;30 d后,对照组和试验组秸秆降解均呈显著减缓趋势。根据土壤理化参数,瘤胃液的施用加速了土壤物质转化和养分积累,使脲酶、蔗糖酶和纤维素酶活性提高了10% ~ 20%。对秸秆的定性分析表明,施用瘤胃液后,秸秆中纤维素的羟基官能团结构被严重破坏。土壤微生物群落结构分析表明,瘤胃液的添加导致了具有较强纤维素降解能力的放线菌的增殖,这是秸秆分解加速的主要原因。本研究表明,接种瘤胃液将秸秆还田是提高回收秸秆生物价值的有效措施,为解决秸秆分解缓慢的问题提供了可行的解决方案。
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Effects of rumen microorganisms on the decomposition of recycled straw residue.

Recently, returning straw to the fields has been proved as a direct and effective method to tackle soil nutrient loss and agricultural pollution. Meanwhile, the slow decomposition of straw may harm the growth of the next crop. This study aimed to determine the effects of rumen microorganisms (RMs) on straw decomposition, bacterial microbial community structure, soil properties, and soil enzyme activity. The results showed that RMs significantly enhanced the degradation rate of straw in the soil, reaching 39.52%, which was 41.37% higher than that of the control on the 30th day after straw return. After 30 d, straw degradation showed a significant slower trend in both the control and the experimental groups. According to the soil physicochemical parameters, the application of rumen fluid expedited soil matter transformation and nutrient buildup, and increased the urease, sucrase, and cellulase activity by 10%‒20%. The qualitative analysis of straw showed that the hydroxyl functional group structure of cellulose in straw was greatly damaged after the application of rumen fluid. The analysis of soil microbial community structure revealed that the addition of rumen fluid led to the proliferation of Actinobacteria with strong cellulose degradation ability, which was the main reason for the accelerated straw decomposition. Our study highlights that returning rice straw to the fields with rumen fluid inoculation can be used as an effective measure to enhance the biological value of recycled rice straw, proposing a viable solution to the problem of sluggish straw decomposition.

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