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首页> 外文期刊>Soil Science and Plant Nutrition >Effect of pruned material, extracts, and polyphenols of tea on enzyme activities and microbial community structure in soil
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Effect of pruned material, extracts, and polyphenols of tea on enzyme activities and microbial community structure in soil

机译:茶叶茶素,提取物和多酚对土壤酶活性和微生物群落结构的影响

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Pruning is a regular management practice performed in tea fields, but its effects on soil properties and microbial community structures have not been well explored. Effects of tea pruned material, tea extracts, and tea polyphenols application on soil properties and microbial characteristics, including pH, soil enzyme activities, culturable microbial population, and bacterial community, were investigated in a pot-incubation experiment lasting for 10 weeks. Results indicated that returning of tea pruned material or its extracts significantly increased the soil pH as compared to control. The soil invertase and urease activities, as well as the culturable microbial population treated with pruned material were much higher than those in control, while polyphenol oxidase activity was similar among different treatments. Denaturing gradient gel electrophoresis analysis of bacterial community indicated that the Shannon's diversity index (H) of all nine treatments receiving additives slightly decreased as compared to control. Pruning returning specifically induced several beneficial bacterial species, including Brevibacterium sp. and Burkholderia sp. In conclusion, pruning returning alleviated soil acidification, induced soil enzyme activities, stimulated culturable microbial population, and reshaped the microbial community. This research suggests that this management could be applied as an alternative agricultural practice in tea cultivation.
机译:修剪是在茶田中进行的常规管理实践,但它对土壤性质和微生物群落结构的影响并未得到很好的探索。在孵育实验持续10周的持续10周内,研究了茶修剪材料,茶叶提取物和茶多酚对土壤性质和微生物特征的影响,包括pH,土壤酶活性,培养的微生物群体和细菌群体。结果表明,与对照相比,茶叶修剪材料或其提取物显着增加土壤pH pH。土壤转化酶和脲酶活性,以及​​用修剪材料处理的培养微生物种群远高于对照物中的培养微生物群,而多酚氧化酶活性在不同的处理中相似。变性梯度凝胶电泳分析细菌群落表明,与对照相比,所有9种治疗的Shannon的多样性指数(h)接受添加剂略微降低。修剪返回特异性诱导几种有益的细菌物种,包括Brevibacterium sp。和Burkholderia sp。总之,修剪恢复减轻土壤酸化,诱导土壤酶活性,刺激的培养微生物种群,并重塑微生物群落。该研究表明,该管理可以作为茶草种植的替代农业实践。

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