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Effects of two root-secreted phenolic compounds from a subalpine coniferous species on soil enzyme activity and microbial biomass

机译:亚高山针叶树种两种根系分泌酚类化合物对土壤酶活性和微生物量的影响

摘要

In order to evaluate the ecological consequences and potential mechanisms of specific C compounds on soil microbial processes under climate warming, we injected solutions of two modelled root exudates, 2,6-di-tert-butyl-4-methylphenol (BHT) and 1,2-benzenedicarboxylic acid, dibutyl ester (DBP), respectively, into soil at two concentrations (20 and 1000 mu gg(-1) soil). For all treatments, soils amended with the two phenolic compounds were incubated at two temperatures (20 degrees C and 30 degrees C) for 30 days. The responses of soil enzyme activity and microbial property to modelled root exudates to some extent depended on temperature regime, exudation component, and addition concentration. For example, the addition of BHT tended to decrease the soil enzyme activities. However, DBP addition generally increased the two metabolic enzyme activities at 30 degrees C, and tended to decrease the two enzyme activities at 20 degrees C, but a significant reduction was observed only at a high concentration at 20 degrees C. The microbial biomass and enzyme activity were generally lower at 30 degrees C compared to those at 20 degrees C, when averaged across all treatment combinations. Taken together, our results indicated that the amounts and quality of liable root-derived C can differentially affect microbial processes, and various environmental changes will greatly complicate root-microbe-soil interactions in forests.
机译:为了评估气候变暖下特定C化合物对土壤微生物过程的生态影响和潜在机理,我们注入了两种模拟的根系分泌物,即2,6-二叔丁基-4-甲基苯酚(BHT)和1, 2-苯二甲酸二丁酯(DBP)分别以两种浓度进入土壤(20和1000 mu gg(-1)土壤)。对于所有处理,将用两种酚类化合物改性的土壤在两种温度(20摄氏度和30摄氏度)下孵育30天。土壤酶活性和微生物特性对模拟的根系分泌物的响应在一定程度上取决于温度,分泌物成分和添加浓度。例如,BHT的添加倾向于降低土壤酶活性。但是,添加DBP通常会在30摄氏度时增加两种代谢酶的活性,并倾向于在20摄氏度时降低两种酶的活性,但是仅在20摄氏度时在高浓度下才观察到显着的降低。当将所有处理组合的平均值平均时,与20摄氏度时相比,30摄氏度时的活性通常较低。综上所述,我们的结果表明,可靠的根系C的数量和质量可以差异地影响微生物过程,而各种环境变化将使森林中根系-微生物与土壤的相互作用大大复杂化。

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