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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Influence of diterpenes (colophony and abietic acid) and a triterpene (beta-sitosterol) on net N mineralization, net nitrification, soil respiration, and microbial biomass in birch soil
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Influence of diterpenes (colophony and abietic acid) and a triterpene (beta-sitosterol) on net N mineralization, net nitrification, soil respiration, and microbial biomass in birch soil

机译:二萜(树脂和松香酸)和三萜(β-谷甾醇)对桦树土壤净氮矿化,净硝化,土壤呼吸和微生物量的影响

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摘要

The aim of this study was to examine the effect of common diterpenes (colophony, abietic acid) and triterpene (beta-sitosterol) on carbon (C) and nitrogen (N) transformations in soil under birch (Betula pendula L.). Samples were taken from the organic layer at two study sites, Kivalo (N-poor soil) and Kerimaki (N-rich soil), and incubated with the above-mentioned terpenes in laboratory conditions. Carbon dioxide evolution (C mineralization), net N mineralization, nitrification, and N and C in microbial biomass were measured. All these terpenes increased C mineralization, but decreased net N mineralization. The potential to decrease net N mineralization depended on amount of terpenes, with a stronger effect at a higher amount. Net nitrification in Kerimaki soil (N-rich soil) decreased but was not completely inhibited by terpenes. Effect of terpenes on soil microbial biomass C and N was not so clear, but they tended to increase both. Our study suggests that higher terpenes can act as a carbon source for soil microbial communities.
机译:这项研究的目的是研究桦木(Betula pendula L.)下常见的二萜(树脂,松香酸)和三萜(β-谷甾醇)对土壤中碳(C)和氮(N)转化的影响。从两个研究地点Kivalo(贫瘠的土壤)和Kerimaki(富氮的土壤)的有机层中取样,并在实验室条件下与上述萜烯一起孵育。测量了二氧化碳释放量(C矿化),净氮矿化,硝化以及微生物生物量中的氮和碳。所有这些萜烯增加了C矿化作用,但降低了净N矿化作用。减少净氮矿化的潜力取决于萜烯的量,含量越高,效果越好。 Kerimaki土壤(富氮土壤)中的净硝化作用有所降低,但并没有完全被萜烯抑制。萜烯对土壤微生物生物量碳和氮的影响尚不清楚,但它们都倾向于增加。我们的研究表明,较高的萜烯可以作为土壤微生物群落的碳源。

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