[1] |
PRIOR L D, EAMUS D, BOWMAN D M J S. Leaf attributes in the seasonally dry tropics:a comparison of four habitats in northern Australia[J]. Funct Ecol, 2003, 17(4):504-515. |
[2] |
SUÁREZ N. Leaf construction cost in Avicennia germinans as affected by salinity under field conditions[J]. Biol Plant, 2005, 49(1):111-116. |
[3] |
WRIGHT I J, REICH P B, WESTOBY M. Strategy shifts in leaf physiology, structure and nutrient content between species of high and low rainfall, and high and low nutrient habitats[J]. Funct Ecol, 2001, 15(4):423-434. |
[4] |
张国平, 周伟军.植物生理生态学[M].杭州:浙江大学出版社, 2003. |
[5] |
LAMBERS H, POOTER H. Inherent variation in growth rate between higher plants:a search for physiological causes and ecological consequences[J]. Adv Ecol Res, 1992, 23(6):187-261. |
[6] |
温达志, 叶万辉, 冯惠玲, 等.外来入侵杂草薇甘菊及其伴生种基本光合特性的比较[J].热带亚热带植物学报, 2000, 8(2):139-146.
WEN Dazhi, YE Wanhui, FENG Huiling, et al. Comparison of basic photosynthetic characteristics between exotic invader weed Mikania micrantha and its companion species[J]. J Trop Subtrop Bot, 2000, 8(2):139-146. |
[7] |
GÜSEWELL S, KOERSELMAN W, VERHOEVEN J T A. Biomass N:P ratios as indicators of nutrient limitation for plant populations in wetlands[J]. Ecol Appl, 2003, 13(2):372-384. |
[8] |
GÜSEWELL S. N:P ratios in terrestrial plants:variation and functional significance[J]. New Phytol, 2004, 164(2):243-266. |
[9] |
TESSIER J T, RAYNAL D J. Use of nitrogen to phosphorus ratios in plant tissue as an indicator of nutrient limitation and nitrogen saturation[J]. J Appl Ecol, 2003, 40(3):523-534. |
[10] |
KEOERSELMAN W, MEULEMAN A F M. The vegetation N:P ratio:a new tool to detect the nature of nutrient limitation[J]. J Appl Ecol, 1996, 33(6):1441-1450. |
[11] |
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 plant[J]. Am Nat, 2006, 168(4):103-122. |
[12] |
郭子武, 江志标, 陈双林, 等.覆土栽培对高节竹笋品质的影响[J].广西植物, 2015, 35(4):515-519.
GUO Ziwu, JIANG Zhibiao, CHEN Shuanglin, et al. Influence of soil covered cultivation on shoot quality of Phyllostachys prominens[J]. Guihaia, 2015, 35(4):515-519. |
[13] |
鲁如坤.土壤农业化学分析方法[M].北京:中国农业科技出版社, 2000. |
[14] |
王萌, 徐冰, 张大勇, 等.内蒙古克氏针茅草地主要植物叶片功能性状对氮素添加的响应[J].北京师范大学学报(自然科学版), 2016, 52(1):32-38.
WANG Meng, XU Bing, ZHANG Dayong, et al. Leaf functional trait response to nitrogen addition of abundant species in an Inner Mongolia Stipa steppe[J]. J Beijing Norm Univ Nat Sci, 2016, 52(1):32-38. |
[15] |
刘文亭, 卫智军, 吕世杰, 等.内蒙古荒漠草原短花针茅叶片功能性状对不同草地经营方式的响应[J].生态环境学报, 2016, 25(3):385-392.
LIU Wenting, WEI Zhijun, LÜ Shijie, et al. Response of grassland using modes to leaf trait of Stipa breviflora in desert steppe of Inner Mongolia[J]. Ecol Envir Sci, 2016, 25(3):385-392. |
[16] |
宝乐, 刘艳红.东灵山地区不同森林群落叶功能性状比较[J].生态学报, 2009, 29(7):3692-3703.
BAO Le, LIU Yanhong. Comparison of leaf functional traits in different forest communities in Mt. Dongling of Beijing[J]. Acta Ecol Sin, 2009, 29(7):3692-3703. |
[17] |
CHOWN S L, GASTON K J, ROBINSON D. Macrophysiology:large-scale patterns in physiological traits and their ecological implications[J]. Funct Ecol, 2004, 18(2):159-167. |
[18] |
DIZA S, HODGSON J G, THOMPSON K, et al. The plant traits that drive ecosystems:evidence from three continents[J]. J Veg Sci, 2004, 15(3):295-304. |
[19] |
WRIGHT I J, WESTOBY M, REICH P B. Convergence towards higher leaf mass per area in dry and nutrient-poor habitats has different consequences for leaf life span[J]. J Ecol, 2002, 90(3):534-543. |
[20] |
WANG Congyan, ZHOU Jiawei, XIAO Hongguang, et al. Variations in leaf functional traits among plant species grouped by growth and leaf types in Zhenjiang, China[J]. J For Res, 2017, 28(2):241-248. |
[21] |
SCOFFONI C, RAWLS M, McKOWN A, et al. Decline of leaf hydraulic conductance with dehydration:Relationship to leaf size and venation architecture[J]. Plant Physiol, 2011, 156(2):832-843. |