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3 期 孙鹏等: 南亚热带常绿阔叶林冠层和林下层优势种叶功能性状响应异质生境的差异 5 1 9
MCGILL BJꎬ ENQUIST BJꎬ WEIHER Eꎬ et al.ꎬ 2006. climateꎬ Oregonꎬ United States [ J]. Water Resour Resꎬ
Rebuilding community ecology from functional traits 38(11): 1223.
[J]. Trend Ecol Evolꎬ 21(4): 178-185. SWAMI Aꎬ JAIN Rꎬ 2013. Scikit ̄learn: Machine learning in
MCLAUCHLAN KKꎬ HOBBIE SEꎬ POST WMꎬ 2006. Python [J]. J Mach Learn Resꎬ 12(10): 2825-2830.
Conversion from agriculture to grassland builds soil organic TORRES ̄DOWDALL Jꎬ HANDELSMAN CAꎬ REZNICK DNꎬ
matter on decadal timescales [ J]. Ecol Applꎬ 16 ( 1): et al.ꎬ 2012. Local adaptation and the evolution of
143-153. phenotypic plasticity in Trinidadian guppies ( Poecilia
MIDOLO Gꎬ DE FRENNE Pꎬ HOLZEL Nꎬet al.ꎬ 2019. Global reticulata) [J]. Evolutionꎬ 66(11): 3432-3443.
patterns of intraspecific leaf trait responses to elevation TSUJINO Rꎬ TAKAFUMI Hꎬ AGETSUMA Nꎬ et al.ꎬ 2006.
[J]. Glob Chang Biolꎬ 25(7): 2485-2498. Variation in tree growthꎬ mortality and recruitment among
MORAN NAꎬ 1992. Theevolutionary maintenance of alternative topographic positions in a warm temperate forest [J]. J Veg
phenotypes [J]. Am Natꎬ 139(5): 971-989. Sciꎬ 17(3): 281-290.
OZANNE CMPꎬ ANHUF Dꎬ BOULTER SLꎬ et al.ꎬ 2003. TSUKAYA Hꎬ 2006. Mechanism of leaf ̄shape determination
Biodiversity meets the atmosphere: A global view of forest [J]. Ann Rev Plant Biolꎬ 57: 477-496.
canopies [J]. Scienceꎬ 301(5630):183-186. VAN DE WEG MJꎬ MEIR Pꎬ GRACE Jꎬ et al.ꎬ 2009.
PARMESAN Cꎬ 2006. Ecological and evolutionary responses to Altitudinal variation in leaf mass per unit areaꎬ leaf tissue
recent climate change [ J]. Annu Rev Ecol Evol Systꎬ density and foliar nitrogen and phosphorus content along an
37(1): 637-669. Amazon ̄Andes gradient in Peru [ J]. Plant Ecol Diversꎬ
PFENNIGWERTH AAꎬ BAILEY JKꎬ SCHWEITZER JAꎬ 2(3): 243-254.
2017. Trait variation along elevation gradients in a dominant WANG ZFꎬ LIAN JYꎬ HUANG GMꎬ et al.ꎬ 2012. Genetic
woody shrub is population ̄specific and driven by plasticity groups in the common plant species Castanopsis chinensis and
[J]. Aob Plantsꎬ 9(4): plx027. their associations with topographic habitats [ J]. Oikosꎬ
POORTER Hꎬ NIINEMETS Uꎬ POORTER Lꎬ et al.ꎬ 2009. 121(12): 2044-2051.
Causes and consequences of variation in leaf mass per area WEERASINGHE LKꎬ CREEK Dꎬ CROUS KYꎬ et al.ꎬ
(LMA): A meta ̄analysis [ J]. New Phytolꎬ 182 ( 3): 2014. Canopy position affects the relationships between leaf
565-88. respiration and associated traits in a tropical rainforest in Far
POORTER Lꎬ WRIGHT SJꎬ PAZ Hꎬ et al.ꎬ 2008. Are North Queensland [J] Tree Physiolꎬ 34(6): 564-584.
functional traits good predictors of demographic rates? WRIGHT IJꎬ REICH PBꎬ WESTOBY Mꎬ et al.ꎬ 2004. The
Evidence from five neotropical forests [J]. Ecologyꎬ 89(7): worldwide leaf economics spectrum [ J ]. Natureꎬ
1908-1920. 428(6985): 821-827.
RASMANN Sꎬ BURI Aꎬ GALLOT ̄LAVALLEE Mꎬ et al.ꎬ YE WHꎬ CAO HLꎬ HUANG ZLꎬ et al.ꎬ 2008. Community
2
2014. Differential allocation and deployment of direct and structure of a 20 hm lower subtropical evergreen broadleaved
indirect defences by Vicia sepium along elevation gradients forest plot in Dinghushanꎬ China [J]. J Plant Ecol (Chin
[J]. J Ecolꎬ 102(4): 930-938. Ver)ꎬ 32(2): 274-286. [叶万辉ꎬ 曹洪麟ꎬ 黄忠良ꎬ 等ꎬ
READ QDꎬ MOORHEAD LCꎬ SWENSON NGꎬ et al.ꎬ 2008. 鼎湖山南亚热带常绿阔叶林 20 公顷样地群落特征
2014. Convergent effects of elevation on functional leaf traits 研究 [J]. 植物生态学报ꎬ 32(2): 274-286.]
within and among species [J]. Funct Ecolꎬ 28(1): 37-45. ZHOU GXꎬ HUANG LXꎬ ZANG XWꎬ et al.ꎬ 2016. Effects of
SANNER MFꎬ 1999. Python: a programming language for habitat heterogeneity on community functional diversity of
software integration and development [ J]. J Mol Graph Dinghu Mountain evergreen broad ̄leaved forest [ J ].
Modelꎬ 17(1): 57-61. Guihaiaꎬ 36(2): 127-136. [周光霞ꎬ 黄立新ꎬ 臧晓蔚ꎬ
SAKSCHEWSKI Bꎬ VON BLOH Wꎬ BOIT Aꎬ et al.ꎬ 等ꎬ 2016. 生境异质性对鼎湖山常绿阔叶林群落功能多
2015. Leaf and stem economics spectra drive diversity of 样性的影响 [J]. 广西植物ꎬ 36(2): 127-136.]
functional plant traits in a dynamic global vegetation model ZHOU GYꎬ PENG CHꎬ LI YLꎬ et al.ꎬ 2013. A climate change ̄
[J]. Glob Change Biolꎬ 21(7): 2711-2725. induced threat to the ecological resilience of a subtropical
SCHINDLER DWꎬ 2003. Ecological stoichiometry: The biology monsoon evergreen broad ̄leaved forest in Southern China
of elements from molecules to the biosphere [ J]. Natureꎬ [J]. Glob Change Biolꎬ 19(4): 1197-1210.
423(6937): 225-226. ZHOU GYꎬ WEI XHꎬ WU YPꎬ et al.ꎬ 2011. Quantifying the
SHEN Yꎬ SANTIAGO LSꎬ SHEN Hꎬ et al.ꎬ 2014. Determinants hydrological responses to climate change in an intact forested
of change in subtropical tree diameter growth with small watershed in Southern China [J]. Glob Change Biolꎬ
ontogenetic stage [J]. Oecologiaꎬ 175(4): 1315-1324. 17(12): 3736-3746.
STORCK Pꎬ LETTENMAIER DPꎬ BOLTON SMꎬ et al.ꎬ
2002. Measurement of snow interception and canopy effects (责任编辑 蒋巧媛)
on snow accumulation and melt in a mountainous maritime