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中国亚热带两种竹林凋落物输入量、凋落物分解和养分释放动态
作者姓名:TU Li-Hu  HU Hong-Ling  HU Ting-Xing  Zhang Jian  LI Xian-Wei  LIU Li  XIAO Yin-Long  CHEN Gang  LI Ren-Hong
作者单位:1College of Forestry, Sichuan Agricultural University, Xingkang Road 46, Ya’an 625014 (China) 2Institute of Ecological Forestry, College of Forestry, Sichuan Agricultural University, Chengdu Campus, Wenjiang District, Chengdu 611130 (China) 3Personnel Department, Sichuan Agricultural University, Xingkang Road 46, Ya’an 625014 (China) 4Sichuan Forestry Inventory and Plan Institute, Chengdu 610081 (China)
基金项目:Supported by the National Natural Science Foundation, China (No. 31300522); the Specialized Research Fund for the Doctoral Program of Higher Education, China (No. 20125103120018); the Scientific Research Fund of Sichuan Provincial Education Department, China (No. 12ZA118), and the National Key Technology R&D Program, China (No. 2011BAC09B05).
摘    要:Bamboos are one of the fast-growing and multiple use species in the world, and thus bamboo forests/plantations play an important role in C sequestration at regional and global levels. We studied aboveground litterfall, litter decomposition and nutrient dynamics for two years in two subtropical bamboo ecosystems in Southwest China so as to test the hypothesis that litter quality determine the rate and nutrient dynamics during decomposition of different litter fractions. Mean annual total aboveground litter production ranged from 494 to 434 g m-2 in two bamboo stands (P stand, dominated by Pleioblastus amarus and H stand, hybrid bamboo dominated by Bambusa pervariabilis x Dendrocalamopsis daii). Bulk (-80%) of litter production was contributed by leaf litter in two stands followed by twigs and sheathes. Different litter fractions represented considerable variations in the rates of mass loss and nutrient release. Variation of the mass remaining after 2 years of decomposition was significantly explained by initial C/N ratio and initial P concentration. Initial concentrations of N, P, Ca, and Mg explained 57.9%, 95.0%, 99.8% and 98.1%, respectively, of the variations of these elements mass remaining after 2 years of decomposition. The patterns of nutrient dynamics and the final amount remaining were mainly determined by their initial litter substrate quality in tl~ese two subtropical bamboo plantations.

关 键 词:凋落物分解  中国西南部  养分动态  种植园  亚热带  凋落物质量  剩余质量  生态系统
收稿时间:5 May 2013

Litterfall, litter decomposition, and nutrient dynamics in two subtropical bamboo plantations of China
TU Li-Hu,HU Hong-Ling,HU Ting-Xing,Zhang Jian,LI Xian-Wei,LIU Li,XIAO Yin-Long,CHEN Gang,LI Ren-Hong.Litterfall, litter decomposition, and nutrient dynamics in two subtropical bamboo plantations of China[J].Pedosphere,2014,24(1):84-97.
Authors:TU Li-Hu  HU Hong-Ling  HU Ting-Xing  Zhang Jian  LI Xian-Wei  LIU Li  XIAO Yin-Long  CHEN Gang and LI Ren-Hong
Institution:1. College of Forestry, Sichuan Agricultural University, Xingkang Road 46, Ya''an 625014 (China);2. Institute of Ecological Forestry, College of Forestry, Sichuan Agricultural University, Chengdu Campus, Wenjiang District, Chengdu 611130 (China);3. Personnel Department, Sichuan Agricultural University, Xingkang Road 46, Ya''an 625014 (China);4. Sichuan Forestry Inventory and Plan Institute, Chengdu 610081 (China)
Abstract:Bamboos are one of the fast-growing and multiple use species in the world, and thus bamboo forests/plantations play an important role in C sequestration at regional and global levels. We studied aboveground litterfall, litter decomposition and nutrient dynamics for two years in two subtropical bamboo ecosystems in Southwest China so as to test the hypothesis that litter quality determine the rate and nutrient dynamics during decomposition of different litter fractions. Mean annual total aboveground litter production ranged from 494 to 434 g m?2 in two bamboo stands (P stand, dominated by Pleioblastus amarus and H stand, hybrid bamboo dominated by Bambusa pervariabilis × Dendrocalamopsis daii). Bulk (~80%) of litter production was contributed by leaf litter in two stands followed by twigs and sheathes. Different litter fractions represented considerable variations in the rates of mass loss and nutrient release. Variation of the mass remaining after 2 years of decomposition was significantly explained by initial C/N ratio and initial P concentration. Initial concentrations of N, P, Ca, and Mg explained 57.9%, 95.0%, 99.8% and 98.1%, respectively, of the variations of these elements mass remaining after 2 years of decomposition. The patterns of nutrient dynamics and the final amount remaining were mainly determined by their initial litter substrate quality in these two subtropical bamboo plantations.
Keywords:C/N ratio  litter fraction  litter substrate  mass loss  Pleioblastus amarus
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