[1] 刘丛强. 生物地球化学过程与地表物质循环:西南喀斯特土壤-植被系统生源要素循环[M]. 北京:科学出版社, 2009.
[2] 王国梁, 刘国彬, 刘芳, 等. 黄土沟壑区植被恢复过程中植物群落组成及结构变化[J]. 生态学报, 2003, 23(12):2551-2557.

WANG Guoliang, LIU Guobin, LIU Fang, et al. Changes in composition and structure of plant communities during the course of restoration at losess gully region[J]. Acta Ecol Sin, 2003, 23(12):2550-2557.
[3] 程积民, 万惠蛾, 胡相明. 黄土丘陵区植被恢复重建模式与演替过程研究[J]. 草地学报, 2005, 13(4):324-327, 333.

CHENG Jimin, WAN Hui'e, HU Xiangming. Study of vegetation restoration and rebuilding pattern and the process of succession in the Loess Hilly Regions[J]. Acta Agrest Sin, 2005, 13(4):324-327, 333.
[4] 龙健, 李娟, 江新荣, 等. 喀斯特石漠化地区不同恢复和重建措施对土壤质量的影响[J]. 应用生态学报, 2006, 17(4):615-619.

LONG Jian, LI Juan, JIANG Xinrong, et al. Effects of different recover and restoration measures on soil quality in karst rocky desertification region[J]. Chin J Appl Ecol, 2006, 17(4):615-619.
[5] 刘成刚, 薛建辉. 喀斯特石漠化山地不同类型人工林土壤的基本性质和综合评价[J]. 植物生态学报, 2011, 35(10):1050-1060.

LIU Chenggang, XUE Jianhui. Basic soil properties and comprehensive evaluation in different plantation in rocky desertification sites of the karst region of Guizhou Province, China[J]. Chin J Plant Ecol, 2011, 35(10):1050-1060.
[6] 戎宇, 刘成刚, 薛建辉. 喀斯特山地不同人工林土壤特性差异与综合评价[J]. 南京林业大学学报:自然科学版, 2011, 35(2):108-112.

RONG Yu,LIU Chengang, XUE Jianhui. Difference and integrated evaluation on soil fertility properties of different plantations in karst area[J]. J Nanjing For Univ Nat Sci Ed, 2011, 35(2):108-112.
[7] 刘晓, 郭颖, 徐海, 等. 贵州省森林生态系统服务功能的价值评估[J]. 贵州农业科学, 2014, 42(12):60-65.

LIU Xiao, GUO Ying, XU Hai, et al. Assessment of forest ecosystem service function value in Guizhou[J]. Guizhou Agric Sci, 2014, 42(12):60-65.
[8] ELSER J J, DOBBERFUHL D R, MACKAY N A, et al. Organism size, life history, and N:P stoichiometry[J]. Bioscience, 1996, 46(9):674-684.
[9] VITOUSEK P. Nutrient cycling and nutrient use efficiency[J]. Am Nat, 1982, 119(4):553-572.
[10] WARDLE D A, WALKER L R, BARDGETT R D. Ecosystem properties and forest decline in contrasting long-term chronosequences[J]. Science, 2004, 305(5683):509-513.
[11] AERTS R, CHAPIN Ⅲ F S. The mineral nutrition of wild plants revisited:a re-evaluation of processes and patterns[J]. Adv Ecol Res, 2000, 30(8):1-67.
[12] GÜSEWELL S. N:P ratios in terrestrial plants:variation and functional significance[J]. New Phytol, 2004, 164(2):243-266.
[13] STERNER R W, ELSER J J. Ecological Stoichiometry Biology of Elements from Molecules to the Biosphere[M]. Princeton:Princeton Universitry Press, 2002.
[14] HAN Wenxuan, FANG Jingyun, GUO Dali, et al. Leaf nitrogen and phosphorus stoichiometry across 753 terrestrial plant species in China[J]. New Phytol, 2005, 168(2):377-385.
[15] 吴统贵, 陈步峰, 肖以华, 等. 珠江三角洲3种典型森林类型乔木叶片生态化学计量学[J]. 植物生态学报, 2010, 34(1):58-63.

WU Tonggui, CHEN Bufeng, XIAO Yihua, et al. Leaf stoichiometry of trees in three forest types in Pearl River Delta, South China[J]. Chin J Plant Ecol, 2010, 34(1):58-63.
[16] 李征, 韩琳, 刘玉虹, 等. 滨海盐地碱蓬不同生长阶段叶片C, N, P化学计量特征[J]. 植物生态学报, 2012, 36(10):1054-1061.

LI Zheng, HAN Lin, LIU Yuhong, et al. C, N and P stoichiometric characteristics in leaves of Suaeda sala during different growth phase in coastal wetlands of China[J]. Chin J Plant Ecol, 2012, 36(10):1054-1061.
[17] 刘万德, 苏建荣, 李帅锋, 等. 云南普洱季风常绿阔叶林优势物种不同生长阶段叶片碳、氮、磷化学计量特征[J]. 植物生态学报, 2015, 39(1):52-62.

LIU Wande, SU Jianrong, LI Shuaifeng, et al. Leaf carbon, nitrogen and phosphorus stoichiometry at different growth stages in dominant tree species of a monsoon broad-leaved evergreen forest in Pu'er, Yunnan Province, China[J]. Chin J Plant Ecol, 2015, 39(1):52-62.
[18] McGRODDY M E, DAUFRESNE T, HEDIN L O. Scaling of C:N:P stoichiometry in forests worldwide:implications of terrestrial redfield-type ratios[J]. Ecology, 2004, 85(9):2390-2401.
[19] 王晶苑, 王绍强, 李纫强, 等. 中国4种森林类型主要优势植物的C:N:P化学计量学特征[J]. 植物生态学报, 2011, 35(6):587-595.

WANG Jingyuan, WANG Shaoqiang, LI Renqiang, et al. C:N:P stoichiometric characteristics of four forest types' dominant tree species in China[J]. Chin J Plant Ecol, 2011, 35(6):587-595.
[20] 俞月凤 彭晚霞, 宋同清, 等. 喀斯特峰丛洼地不同森林类型植物和土壤C, N, P化学计量特征[J]. 应用生态学报, 2014, 25(4):947-954.

YU Yuefeng, PENG Wanxia, SONG Tongqing, et al. Stoichiometric characteristics of plant and soil C, N and P in different forest types in depressions between karst hills, southwest China[J]. Chin J Appl Ecol, 2014, 25(4):947-954.
[21] HEDIN L O. Global organization of terrestrial plant-nutrient interactions[J]. Proc Natl Acad Sci, 2004, 101(101):10849-10850.
[22] AERTS R. Nutrient resorption from senescing leaves of perennials:are there general patterns[J]. J Ecol, 1996, 84(4):597-608.
[23] LIU Chunjiang, BERG B, KUTSCH W, et al. Leaf litter nitrogen concentration as related to climatic factors in Eurasian forests[J]. Global Ecol Biogeogr, 2006, 15(5):438-444.
[24] 孙儒泳, 李博, 诸葛阳, 等. 普通生态学[M]. 北京:高等教育出版社, 1993.
[25] 张文彦, 樊江文, 钟华平, 等. 中国典型草原优势植物功能群氮磷化学计量学特征研究[J]. 草地学报, 2010, 18(4):503-509.

ZHANG Wenyan, FAN Jiangwen, ZHONG Huaping, et al. The nitrogen:phosphorus stoichiometry of different plant functional groups for dominant species of typical stepps in China[J]. Acta Agrest Sin, 2010, 18(4):503-509.