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首页> 外文期刊>Plant and Soil >Effects of condensed tannins in conifer leaves on the composition and activity of the soil microbial community in a tropical montane forest
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Effects of condensed tannins in conifer leaves on the composition and activity of the soil microbial community in a tropical montane forest

机译:针叶中单宁浓缩对热带山地森林土壤微生物群落组成和活性的影响

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Condensed tannins, a dominant class of plant secondary metabolites, play potentially important roles in plant-soil feedbacks by influencing the soil microbial community. Effects of condensed tannins on the soil microbial community and activity were examined by a short-term tannin-addition experiment under field and laboratory conditions. Condensed tannins were extracted from the leaves of a dominant conifer (Dacrydium gracilis) in a tropical montane forest on Mt. Kinabalu, Borneo. The extracted tannins were added to soils beneath the conifer and a dominant broadleaf (Lithocarpus clementianus) to evaluate the dependence of the response to tannin addition on the initial composition of the soil microbial community. Enzyme activities in the field tannin-addition treatment were lower than in the deionized-water treatment. Carbon and nitrogen mineralization were also inhibited by tannin-addition. The fungi-to-bacteria ratio after tannin-addition was higher compared with the distilled-water treatment in the laboratory experiment. Based on our results, we suggest that the higher concentration of condensed tannins in the leaf tissues of Dacrydium than in those of Lithocarpus is a factor influencing the microbial community and activity. This may have influences on subsequent plant performance, which induces plant-soil feedback processes that can control dynamics of the tropical montane forest ecosystem.
机译:缩合单宁酸是植物次生代谢产物的主要类别,它通过影响土壤微生物群落,在植物-土壤反馈中发挥潜在的重要作用。在田间和实验室条件下,通过短期单宁添加实验研究了缩合单宁对土壤微生物群落和活性的影响。浓缩的单宁酸是从山上热带山地森林中的一个主要针叶树(Dacrydium gracilis)的叶子中提取的。婆罗洲京那巴鲁。将提取的单宁添加到针叶树和优势阔叶树(Lithocarpus clementianus)下的土壤中,以评估对单宁添加的响应对土壤微生物群落初始组成的依赖性。单宁添加处理中的酶活性低于去离子水处理中的酶活性。单宁的添加也抑制了碳和氮的矿化。在实验室实验中,单宁添加后的真菌与细菌的比率高于蒸馏水处理。根据我们的研究结果,我们认为,金合欢叶片组织中的单宁浓缩浓度高于石栎叶片中的单宁浓缩浓度是影响微生物群落和活性的一个因素。这可能会影响随后的植物生长,从而引发植物-土壤反馈过程,从而可以控制热带山地森林生态系统的动态。

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