樊大勇, 熊高明, 张爱英, 等. 三峡库区水位调度对消落带生态修复中物种筛选实践的影响[J]. 植物生态学报, 2015, 39(4): 416-432.
金茜, 王瑞, 周向睿, 等. 水淹胁迫对紫穗槐生长及营养元素积累的影响[J]. 草业科学, 2013, 30(6): 904-909.
YUAN Z Y, CHEN H Y H. Fine Root Biomass, Production, Turnover Rates, and Nutrient Contents in Boreal Forest Ecosystems in Relation to Species, Climate, Fertility, and Stand Age: Literature Review and Meta-Analyses[J]. Critical Reviews in Plant Sciences, 2010, 29(4): 204-221. doi: 10.1080/07352689.2010.483579
LIU C, XIANG W H, LEI P F, et al. Standing Fine Root Mass and Production in Four Chinese Subtropical Forests along a Succession and Species Diversity Gradient[J]. Plant and Soil, 2014, 376(1-2): 445-459. doi: 10.1007/s11104-013-1998-0
WARDLE D A, BARDGETT R D, KLIRONOMOS J N, et al. Ecological Linkages between Aboveground and Belowground Biota[J]. Science, 2004, 304(5677): 1629-1633. doi: 10.1126/science.1094875
GORDON W S, JACKSON R B. Nutrient Concentrations in Fine Roots[J]. Ecology, 2000, 81(1): 275-280. doi: 10.1890/0012-9658(2000)081[0275:NCIFR]2.0.CO;2
YUAN Z Y, CHEN H Y H, REICH P B. Global-Scale Latitudinal Patterns of Plant Fine-Root Nitrogen and Phosphorus[J]. Nature Communications, 2011, 2: 344. doi: 10.1038/ncomms1346
刘兴诏, 周国逸, 张德强, 等. 南亚热带森林不同演替阶段植物与土壤中N, P的化学计量特征[J]. 植物生态学报, 2010, 34(1): 64-71. doi: 10.3773/j.issn.1005-264x.2010.01.010
NORBY R J, JACKSON R B. Root Dynamics and Global Change: Seeking an Ecosystem Perspective[J]. New Phytologist, 2000, 147(1): 3-12. doi: 10.1046/j.1469-8137.2000.00676.x
CROSS W F, BENSTEAD J P, FROST P C, et al. Ecological Stoichiometry in Freshwater Benthic Systems: Recent Progress and Perspectives[J]. Freshwater Biology, 2005, 50(11): 1895-1912. doi: 10.1111/j.1365-2427.2005.01458.x
ELSER J J, STERNER R W, GOROKHOVA E, et al. Biological Stoichiometry from Genes to Ecosystems[J]. Ecology Letters, 2000, 3(6): 540-550. doi: 10.1046/j.1461-0248.2000.00185.x
NIKLAS K J, COBB E D. N, P, and C Stoichiometry of Eranthis Hyemalis (Ranunculaceae) and the Allometry of Plant Growth[J]. American Journal of Botany, 2005, 92(8): 1256-1263. doi: 10.3732/ajb.92.8.1256
VREDE T, DOBBERFUHL D R, KOOIJMAN S A L M, et al. Fundamental Connections among Organism C: N: P Stoichiometry, Macromolecular Composition, and Growth[J]. Ecology, 2004, 85(5): 1217-1229. doi: 10.1890/02-0249
邬畏, 何兴东, 周启星. 生态系统氮磷比化学计量特征研究进展[J]. 中国沙漠, 2010, 30(2): 296-302.
FAN H B, WU J P, LIU W F, et al. Linkages of Plant and Soil C: N: P Stoichiometry and Their Relationships to Forest Growth in Subtropical Plantations[J]. Plant and Soil, 2015, 392(1-2): 127-138. doi: 10.1007/s11104-015-2444-2
HAN W X, FANG J Y, GUO D L, et al. Leaf Nitrogen and Phosphorus Stoichiometry across 753 Terrestrial Plant Species in China[J]. New Phytologist, 2005, 168(2): 377-385. doi: 10.1111/j.1469-8137.2005.01530.x
刘泽彬, 程瑞梅, 肖文发, 等. 三峡库区库首森林生态系统植物叶片碳氮磷化学计量特征研究[J]. 南京林业大学学报(自然科学版), 2017, 41(2): 27-33.
杨文航, 任庆水, 李昌晓, 等. 三峡库区消落带落羽杉与立柳林土壤微生物生物量碳氮磷动态变化[J]. 生态学报, 2019, 39(5): 1496-1506.
CAO Y, ZHANG P, CHEN Y M. Soil C: N: P Stoichiometry in Plantations of N-Fixing Black Locust and Indigenous Pine, and Secondary Oak Forests in Northwest China[J]. Journal of Soils and Sediments, 2018, 18(4): 1478-1489. doi: 10.1007/s11368-017-1884-0
徐露燕, 田大伦, 王光军, 等. 湘潭锰矿栾树叶片和土壤N、P化学计量特征[J]. 生态学报, 2014, 34(9): 2316-2322.
陈晓萍, 郭炳桥, 钟全林, 等. 武夷山不同海拔黄山松细根碳、氮、磷化学计量特征对土壤养分的适应[J]. 生态学报, 2018, 38(1): 273-281.
LADANAI S, ÅGREN G I, OLSSON B A. Relationships between Tree and Soil Properties in Picea Abies and Pinus Sylvestris Forests in Sweden[J]. Ecosystems, 2010, 13(2): 302-316. doi: 10.1007/s10021-010-9319-4
WURZBURGER N, WRIGHT S J. Fine-Root Responses to Fertilization Reveal Multiple Nutrient Limitation in a Lowland Tropical Forest[J]. Ecology, 2015, 96(8): 2137-2146. doi: 10.1890/14-1362.1
FAHEY T J, HUGHES J W. Fine Root Dynamics in a Northern Hardwood Forest Ecosystem, Hubbard Brook Experimental Forest, NH[J]. The Journal of Ecology, 1994, 82(3): 533. doi: 10.2307/2261262
李昌晓, 钟章成. 三峡库区消落带土壤水分变化对落羽杉(Taxodium distichum)幼苗根部次生代谢物质含量及根生物量的影响[J]. 生态学报, 2007, 27(11): 4394-4402. doi: 10.3321/j.issn:1000-0933.2007.11.003
任庆水. 三峡库区消落带不同人工植被土壤微生物群落多样性[D]. 重庆: 西南大学, 2018.
鲍士旦. 土壤农化分析[M]. 3版. 北京: 中国农业出版社, 2000.
MINDEN V, KLEYER M. Internal and External Regulation of Plant Organ Stoichiometry[J]. Plant Biology, 2014, 16(5): 897-907. doi: 10.1111/plb.12155
王娜, 程瑞梅, 肖文发, 等. 三峡库区马尾松根和叶片的生态化学计量特征[J]. 林业科学研究, 2016, 29(4): 536-544. doi: 10.3969/j.issn.1001-1498.2016.04.011
安申群, 贡璐, 朱美玲, 等. 塔里木盆地北缘典型荒漠植物根系化学计量特征及其与土壤理化因子的关系[J]. 生态学报, 2017, 37(16): 5444-5450.
贺燕燕, 王朝英, 袁中勋, 等. 三峡库区消落带不同水淹强度下池杉与落羽杉的光合生理特性[J]. 生态学报, 2018, 38(8): 2722-2731.
ELSER J J, BRACKEN M E S, CLELAND E E, et al. Global Analysis of Nitrogen and Phosphorus Limitation of Primary Producers in Freshwater, Marine and Terrestrial Ecosystems[J]. Ecology Letters, 2007, 10(12): 1135-1142. doi: 10.1111/j.1461-0248.2007.01113.x
CECH P G, KUSTER T, EDWARDS P J, et al. Effects of Herbivory, Fire and N2-Fixation on Nutrient Limitation in a Humid African Savanna[J]. Ecosystems, 2008, 11(6): 991-1004. doi: 10.1007/s10021-008-9175-7
OLDE VENTERINK H. Legumes Have a Higher Root Phosphatase Activity than other Forbs, Particularly under Low Inorganic P and N Supply[J]. Plant and Soil, 2011, 347(1-2): 137-146. doi: 10.1007/s11104-011-0834-7
NOVOTNY A M, SCHADE J D, HOBBIE S E, et al. Stoichiometric Response of Nitrogen-Fixing and Non-Fixing Dicots to Manipulations of CO2, Nitrogen, and Diversity[J]. Oecologia, 2007, 151(4): 687-696. doi: 10.1007/s00442-006-0599-5
ELSER J J, FAGAN W F, DENNO R F, et al. Nutritional Constraints in Terrestrial and Freshwater Food Webs[J]. Nature, 2000, 408(6812): 578-580. doi: 10.1038/35046058
羊留冬, 杨燕, 王根绪, 等. 短期增温对贡嘎山峨眉冷杉幼苗生长及其CNP化学计量学特征的影响[J]. 生态学报, 2011, 31(13): 3668-3676.
AGREN G I. The C: N: P Stoichiometry of Autotrophs-Theory and Observations[J]. Ecology Letters, 2004, 7(3): 185-191. doi: 10.1111/j.1461-0248.2004.00567.x
GVSEWELL S, KOERSELMAN W, VERHOEVEN J T A. Biomass N: p Ratios as Indicators of Nutrient Limitation for Plant Populations in Wetlands[J]. Ecological Applications, 2003, 13(2): 372-384. doi: 10.1890/1051-0761(2003)013[0372:BNRAIO]2.0.CO;2
GVSEWELL S. N: P Ratios in Terrestrial Plants: Variation and Functional Significance[J]. New Phytologist, 2004, 164(2): 243-266. doi: 10.1111/j.1469-8137.2004.01192.x
胡伟芳, 章文龙, 张林海, 等. 中国主要湿地植被氮和磷生态化学计量学特征[J]. 植物生态学报, 2014, 38(10): 1041-1052.
ZHANG L X, BAI Y F, HAN X G. Differential Responses of N: P Stoichiometry of Leymus chinensis and Carex korshinskyi to N Additions in a Steppe Ecosystem in Nei Mongol[J]. Acta Botanica Sinica(植物学报(英文版)), 2004(3): 259-270.
WANTZEN K M, ROTHHAUPT K O, MÖRTL M, et al. Ecological Effects of Water-Level Fluctuations in Lakes: an Urgent Issue[J]. Hydrobiologia, 2008, 613(1): 1-4. doi: 10.1007/s10750-008-9466-1
印婧婧, 郭大立, 何思源, 等. 内蒙古半干旱区树木非结构性碳、氮、磷的分配格局[J]. 北京大学学报(自然科学版), 2009, 45(3): 519-527. doi: 10.3321/j.issn:0479-8023.2009.03.022
KERKHOFF A J, FAGAN W F, ELSER J J, et al. Phylogenetic and Growth Form Variation in the Scaling of Nitrogen and Phosphorus in the Seed Plants[J]. The American Naturalist, 2006, 168(4): E103-E122. doi: 10.1086/507879
RONG Q Q, LIU J T, CAI Y P, et al. Leaf Carbon, Nitrogen and Phosphorus Stoichiometry of Tamarix Chinensis Lour. in the Laizhou Bay Coastal Wetland, China[J]. Ecological Engineering, 2015, 76: 57-65. doi: 10.1016/j.ecoleng.2014.03.002
ÅGREN G I. Stoichiometry and Nutrition of Plant Growth in Natural Communities[J]. Annual Review of Ecology, Evolution, and Systematics, 2008, 39: 153-170. doi: 10.1146/annurev.ecolsys.39.110707.173515
LADANAI S, ÅGREN G I, OLSSON B A. Relationships between Tree and Soil Properties in Picea Abies and Pinus Sylvestris Forests in Sweden[J]. Ecosystems, 2010, 13(2): 302-316. doi: 10.1007/s10021-010-9319-4
王绍强, 于贵瑞. 生态系统碳氮磷元素的生态化学计量学特征[J]. 生态学报, 2008, 28(8): 3937-3947. doi: 10.3321/j.issn:1000-0933.2008.08.054
赵伟文, 梁文俊, 魏曦. 不同林分密度华北落叶松人工林土壤养分特征[J]. 西南师范大学学报(自然科学版), 2019, 44(4): 84-92.
翟龙波, 章熙锋, 陈靖, 等. 施肥对坡地土壤团聚体与磷素赋存形态的影响[J]. 西南大学学报(自然科学版), 2019, 41(7): 105-115.
GARNIER E. Interspecific Variation in Plasticity of Grasses in Response to Nitrogen Supply[M] //Population Biology of Grasses. CambridgeCambridge University Press, 1998: 155-182.
AERTS R, DE CALUWE H, BELTMAN B. Is the Relation between Nutrient Supply and Biodiversity Co-Determined by the Type of Nutrient Limitation?[J]. Oikos, 2003, 101(3): 489-498. doi: 10.1034/j.1600-0706.2003.12223.x
CHEN L L, DENG Q, YUAN Z Y, et al. Age-Related C: N: P Stoichiometry in Two Plantation Forests in the Loess Plateau of China[J]. Ecological Engineering, 2018, 120: 14-22. doi: 10.1016/j.ecoleng.2018.05.021
FORNARA D A, TILMAN D. Ecological Mechanisms Associated with the Positive Diversity-Productivity Relationship in an N-Limited Grassland[J]. Ecology, 2009, 90(2): 408-418. doi: 10.1890/08-0325.1
任庆水, 马朋, 李昌晓, 等. 三峡库区消落带落羽杉(Taxodium distichum)与柳树(Salix matsudana)人工植被对土壤营养元素含量的影响[J]. 生态学报, 2016, 36(20): 6431-6444.
杨予静, 李昌晓, 张晔, 等. 水淹-干旱交替胁迫对湿地松幼苗盆栽土壤营养元素含量的影响[J]. 林业科学, 2013, 49(2): 55-65.
LI W B, JIN C J, GUAN D X, et al. The Effects of Simulated Nitrogen Deposition on Plant Root Traits: a Meta-Analysis[J]. Soil Biology and Biochemistry, 2015, 82: 112-118. doi: 10.1016/j.soilbio.2015.01.001
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. doi: 10.1890/03-0351
程建中, 李心清, 刘钟龄, 等. 中国北方草地植物群落碳、氮元素组成空间变化及其与土壤地球化学变化的关系[J]. 地球化学, 2008, 37(3): 265-274. doi: 10.3321/j.issn:0379-1726.2008.03.010
李婷, 邓强, 袁志友, 等. 黄土高原纬度梯度上的植物与土壤碳、氮、磷化学计量学特征[J]. 环境科学, 2015, 36(8): 2988-2996.
丁小慧, 罗淑政, 刘金巍, 等. 呼伦贝尔草地植物群落与土壤化学计量学特征沿经度梯度变化[J]. 生态学报, 2012, 32(11): 3467-3476.
何清清, 何君. 基于InVEST模型的三峡库区(重庆段)生境质量时空演变分析[J]. 三峡生态环境监测, 2022, 7(1): 15-25.