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Carbon dioxide emission and soil microbial respiration activity of Chernozems under anthropogenic transformation of terrestrial ecosystems

机译:陆地生态系统人为转化下黑樱桃的二氧化碳排放和土壤微生物呼吸活性

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The total soil CO2 emission (EM) and portion of microbial respiration were measured (in situ; May, June, July 2015) in Chernozems typical of virgin steppe, oak forest, bare fallow and urban ecosystems (Kursk region, Russia). In soil samples (upper 10 cm layer), the soil microbial biomass carbon (Cmic), basal respiration (BR) and fungi-to-bacteria ratio were determined and the specific microbial respiration (BR / Cmic = qCO2) was calculated. The EM was varied from 2.0 (fallow) to 23.2 (steppe) g СО2 m-2 d-1. The portion of microbial respiration in EM was reached in average 83, 51 and 60% for forest, steppe and urban, respectively. The soil Cmic and BR were decreased along a gradient of ecosystems transformation (by 4 and 2 times less, respectively), while the qCO2 of urban soil was higher (in average by 42%) compared to steppe, forest and fallow. In urban soil the Cmic portion in soil Сorg and Сfungi-to-Сorg ratio were by 2.6 and 2.4 times less than those for steppe. The relationship between microbial respiration and BR values in Chernozems of various ecosystems was significant (R2 = 0.57).
机译:在原始草原,橡树林,裸露的休耕地和城市生态系统(俄罗斯库尔斯克地区)典型的黑樱桃中测量了土壤CO2排放总量(EM)和微生物呼吸的比例(就地; 2015年5月,6月,2015年7月)。在土壤样品(上10 cm层)中,测定了土壤微生物生物量碳(Cmic),基础呼吸(BR)和真菌与细菌的比率,并计算了特定的微生物呼吸(BR / Cmic = qCO2)。 EM从2.0(休闲)到23.2(草原)gСО2m-2 d-1不等。森林,草原和城市地区EM的微生物呼吸比例分别平均达到83%,51%和60%。土壤Cmic和BR沿生态系统转化的梯度降低(分别降低了4倍和2倍),而城市土壤的qCO2则比草原,森林和休闲地高(平均降低42%)。在城市土壤中,土壤有机碳和真菌与有机碳的比值分别比草原小2.6倍和2.4倍。各种生态系统中黑藜的微生物呼吸与BR值之间的关系很显着(R2 = 0.57)。

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