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- W3149222053 abstract "With the continuing increase in human activi- ties causing accelerating rates of anthropogenic nitrogen deposition inputs into forests, there is considerable interest in understanding the effects of nitrogen deposi- tion on litter decomposition. Two dominant litters were chosen from Zijin Mountain in China: Quercus acutiss- ima from a broad-leaved forest and Pinus massoniana from a coniferous forest. The litters were incubated in microcosms and treated with a gradient of nitrogen fertilization. During a 6-month incubation, changes in chemical composition (i.e., lignin, total carbohydrate, and nitrogen), litter mass losses, soil pH values, and the activities of degradative enzymes were determined. Re- sults showed that medium-nitrogen and high-nitrogen fertilization significantly accelerated litter decomposi- tion rates of leaves, while only the high-nitrogen fertil- ization significantly accelerated litter decomposition rates of needles. The results also showed that cellulase and nitrate reductase were primarily responsible for lit- ter decomposition in the broad-leaved forest, while catalase, cellulase, and acid phosphatase were primarily responsible for litter decomposition in the coniferous forest under conditions of no N fertilization; catalase, cellulase, and acid phosphatase were primarily respon- sible for litter decomposition in the broad-leaved forest, while catalase, cellulase, invertase, and nitrate reductase were primarily responsible for litter decomposition in the coniferous forest under conditions of N fertilization. Nitrogen fertilization-stimulated litter decomposition was due to the fact that the activities of enzymes, par- ticularly cellulase, were accelerated." @default.
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- W3149222053 date "2010-01-01" @default.
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- W3149222053 title "Response of degradative enzymes to N fertilization during litter decomposition in a subtropical forest through a microcosm experiment" @default.
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