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Variation in litter decomposition-temperature relationships between coniferous and broadleaf forests in Huangshan Mountain, China
作者姓名:HE  Xing-bing  SONG  Fu-qiang  ZHANG  Peng  LIN  Yong-hui  TIAN  Xing-jun  REN  Li-li  CHEN  Cheng  LI  Xiao-na  Tan  Hai-xia
作者单位:南京大学生命科学学院,黑龙江大学生命科学学院,南京大学生命科学学院,吉首大学城乡规划学院,南京大学生命科学学院,南京大学生命科学学院,南京大学生命科学学院,南京大学生命科学学院,中国环境管理干部学院 210093 吉首大学城乡规划学院,427000,15000,210093,427000,210093,210093,210093,210093,066004
基金项目:国家自然科学基金,Key Project of National Science Foundation of China
摘    要:A study was conducted to identify the differences in the decompositions of leaf litter, lignin and carbohydrate between coniferous forest and broadleaf forest at 20℃ and 30℃ in Huangshan Mountain, Anhui Province, China. Results showed that at 20℃ mass loss of leaf litter driven by microbial decomposers was higher in broadleaf forest than that in coniferous forest, whereas the difference in mass loss of leaf litter was not significant at 30℃. The temperature increase did not affect the mass loss of leaf litter for coniferous forest treatment, but significantly reduced the decomposition rate for broadleaf forest treatment. The functional decomposers of microorganism in broadleaf forest produced a higher lignin decomposition rate at 20℃, compared to that in coniferous forest, but the difference in lignin decomposition was not found between two forest types at 30℃. Improved temperature increased the lignin decomposition for both broadleaf and coniferous forest. Additionally, the functional group of microorganism from broadleaf forest showed marginally higher carbohydrate loss than that from coniferous forest at both temperatures. Temperature increase reduced the carbohydrate decomposition for broadleaf forest, while only a little reduce was found for coniferous forest. Remarkable differences occurred in responses between most enzymes (Phenoloxidase, peroxidase, !5-glucosidase and endocellulase) and decomposition rate of leaf litter to forest type and temperature, although there exist strong relationships between measured enzyme activities and decomposition rate in most cases. The reason is that more than one enzyme contribute to the mass loss of leaf litter and organic chemical components. In conclusion, at a community scale the coniferous and broadleaf forests differed in their temperature-decomposition relationships.

关 键 词:质量亏损  木质素  碳水化合物  温度  
文章编号:1007/s11676-007-0058-0
收稿时间:2007-04-20
修稿时间:2007-08-27

Variation in litter decomposition-temperature relationships between coniferous and broadleaf forests in Huangshan Mountain,China
HE Xing-bing SONG Fu-qiang ZHANG Peng LIN Yong-hui TIAN Xing-jun REN Li-li CHEN Cheng LI Xiao-na Tan Hai-xia.Variation in litter decomposition-temperature relationships between coniferous and broadleaf forests in Huangshan Mountain, China[J].Journal of Forestry Research,2007,18(4):291-297.
Authors:He Xing-bing  Song Fu-qiang  Zhang Peng  Lin Yong-hui  Tian Xing-jun  Ren Li-li  Chen Cheng  Li Xiao-na  Tan Hai-xia
Institution:(1) School of Life Science, Nanjing University, Nanjing, 210093, P. R. China;(2) College of Resources and Planning Sciences, Jishou University, Zhangjiajie, 427000, P. R. China;(3) College of Life Science, Heilongjiang University, Harbin, 150000, P. R. China;(4) Environmental Management College of China, Qinhuangdao, 066004, P.R. China
Abstract:A study was conducted to identify the differences in the decompositions of leaf litter, lignin and carbohydrate between coniferous forest and broadleaf forest at 20°C and 30°C in Huangshan Mountain, Anhui Province, China. Results showed that at 20°C mass loss of leaf litter driven by microbial decomposers was higher in broadleaf forest than that in coniferous forest, whereas the difference in mass loss of leaf litter was not significant at 30°C. The temperature increase did not affect the mass loss of leaf litter for coniferous forest treatment, but significantly reduced the decomposition rate for broadleaf forest treatment. The functional decomposers of microorganism in broadleaf forest produced a higher lignin decomposition rate at 20°C, compared to that in coniferous forest, but the difference in lignin decomposition was not found between two forest types at 30°C. Improved temperature increased the lignin decomposition for both broadleaf and coniferous forest. Additionally, the functional group of microorganism from broadleaf forest showed marginally higher carbohydrate loss than that from coniferous forest at both temperatures. Temperature increase reduced the carbohydrate decomposition for broadleaf forest, while only a little reduce was found for coniferous forest. Remarkable differences occurred in responses between most enzymes (Phenoloxidase, peroxidase, β-glucosidase and endocellulase) and decomposition rate of leaf litter to forest type and temperature, although there exist strong relationships between measured enzyme activities and decomposition rate in most cases. The reason is that more than one enzyme contribute to the mass loss of leaf litter and organic chemical components. In conclusion, at a community scale the coniferous and broadleaf forests differed in their temperature-decomposition relationships. Foundation project: This study was supported by National Natural Science Foundation of China (30470299) and Key Project of National Science Foundation of China (30430570). Biography:^HE Xingbing (1976–), male, Ph D.
Keywords:Castanopsis eyrei  Mass loss  Lignin  Carbohydrate  Temperature  Decomposition  Enzyme  Leaf litter
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