首页> 外文期刊>European Journal of Soil Biology >Hydrolytic enzyme activities, carbon dioxide production and the growth of litter degrading fungi in different soil layers in a coniferous forest in northern Finland.
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Hydrolytic enzyme activities, carbon dioxide production and the growth of litter degrading fungi in different soil layers in a coniferous forest in northern Finland.

机译:芬兰北部针叶林不同土壤层中水解酶的活性,二氧化碳的产生以及凋落物降解真菌的生长。

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To establish the importance of the layered soil structure to microbial activities, the growth of litter degrading fungi, and the chemical status of forest soil in a cold climate, we studied carbon dioxide production and five hydrolytic enzyme activities in the humus, eluvial and illuvial layers at three sites in an acidic Pinus sylvestris forest soil at Inari, northern Finland. The enzyme activities were low (<30%) in extracts of soil compared to those in the corresponding soil layers, indicating that the enzymes were largely particle-bound. Carbon dioxide production, and beta -glucosidase, beta -xylosidase, alpha -glucosidase and butyrate esterase activities were highest in the humus layer in the soil column. The litter degrading fungi Agaricus bisporus, Agrocybe praecox, Gymnopilus luteofolius, Gymnopilus sapineus, Mycena galericulata and Stropharia rugosoannulata produced extracellular hydrolytic enzymes in the humus and eluvial soil layer plates, but not in the illuvial soil layer plates. Sulphatase activity was higher in the layers below the humus layer in the soil column. Carbon dioxide production, and beta -glucosidase, beta -xylosidase, alpha -glucosidase and butyrate esterase activities were significant below humus layer in the eluvial and illuvial layers in the soil column, indicating the importance of these deeper layers in microbial metabolic functioning and depolymerization of biopolymers in the soil column in cold climate in Northern Finland.
机译:为了确定层状土壤结构对微生物活性,凋落物降解真菌的生长以及在寒冷气候下森林土壤化学状态的重要性,我们研究了腐殖质,冲积层和暴雨层中的二氧化碳产生和五种水解酶活性在芬兰北部Inari的酸性樟子松森林土壤中的三个位置。与相应土层相比,土壤提取物中的酶活度较低(<30%),这表明这些酶在很大程度上是颗粒结合的。在土壤柱的腐殖质层中,二氧化碳的产生以及β-葡萄糖苷酶,β-木糖苷酶,α-葡萄糖苷酶和丁酸酯酶的活性最高。凋落物降解真菌双孢蘑菇,<土壤农杆菌>, Gymnopilus luteofolius , Gymnopilus sapineus , Mycena galericulata < / i>和 Stropharia rugosoannulata 会在腐殖质和坡地土壤层板中产生细胞外水解酶,而不是在露水土壤层板中产生细胞外水解酶。在土壤柱腐殖质层以下的各层中,硫酸酯酶的活性较高。二氧化碳的产生,以及β-葡萄糖苷酶,β-木糖苷酶,α-葡萄糖苷酶和丁酸酯酶的活性在土壤柱下层的腐殖质层和腐殖质层以下显着,表明这些更深层在微生物代谢功能和解聚中的重要性芬兰北部寒冷气候下土壤柱中的生物聚合物。

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