Page 17 - 《广西植物》2024年第5期
P. 17
5 期 罗亚皇等: 高黎贡山南段海拔梯度森林乔木层时空动态 8 0 5
明ꎬ 等ꎬ 2013. DNA 条形码在生态学研究中的应用与展 556(7700): 231-234.
望 [J]. 植物分类与资源学报ꎬ 35 (6): 761-768.] The Editorial Committee of Vegetation of Chinaꎬ 1980.
LUO YHꎬ MA LLꎬ SEIBOLD Sꎬ et al.ꎬ 2023. The diversity of Vegetation of China [M]. Beijing: Science Press. [中国植
mycorrhiza ̄associated fungi and trees shapes subtropical 被编辑委员会ꎬ 1980. 中国植被 [M]. 北京: 科学出
mountain forest ecosystem functioning [ J]. J Biogeogrꎬ 版社.]
50(4): 715-729. WANG Zꎬ TANG Zꎬ FANG Jꎬ 2007. Altitudinal patterns of
MCDOWELL NGꎬ ALLEN CDꎬ ANDERSON ̄TEIXEIRA Kꎬ et seed plant richness in the Gaoligong Mountainsꎬ south ̄east
al.ꎬ 2020. Pervasive shifts in forest dynamics in a changing Tibetꎬ China [J]. Divers Distribꎬ 13 (6): 845-854.
world [J]. Scienceꎬ 368(6494): eaaz9463. WANG ZHꎬ CHEN APꎬ PIAO SLꎬ et al.ꎬ 2004. Pattern of
MITTERMEIER RAꎬ GILꎬ PRꎬ HOFFMAN Mꎬ et al.ꎬ species richness along an altitudinal gradient on Gaoligong
2004. Hotspots revisited: earths biologically richest and Mountainsꎬ Southwest China [J]. Biodivers Sciꎬ 12 (1):
most endangered terrestrial ecoregions [ M ]. Chicago: 82-88. [王志恒ꎬ 陈安平ꎬ 朴世龙ꎬ 等ꎬ 2004. 高黎贡山
University of Chicago Press. 种子植物物种丰富度沿海拔梯度的变化 [J]. 生物多样
MORUETA ̄HOLME Nꎬ ENGEMANN Kꎬ SANDOVAL ̄ACUNA 性ꎬ 12 (1): 82-88.]
Pꎬ et al.ꎬ 2015. Strong upslope shifts in Chimborazos WEBB COꎬ ACKERLY DDꎬ MCPEEK MAꎬ et al.ꎬ 2002.
vegetation over two centuries since Humboldt [J]. Proc Natl Phylogenies and community ecology [ J]. Ann Rev Ecol
Acad Sci USAꎬ 112(41): 12741-12745. Systꎬ 33 (1): 475-505.
NAKAGAWA Sꎬ SCHIELZETH Hꎬ 2013. A general and simple WIENS JJꎬ DONOGHUE MJꎬ 2004. Historical biogeographyꎬ
method for obtaining R2 from generalized linear mixed ̄ ecology and species richness [J]. Trends Ecol Evolꎬ 19:
effects models [J]. Methods Ecol Evolꎬ 4 (2): 133-142. 639-644.
PEPIN Nꎬ BRADLEY RSꎬ DIAZ Hꎬ et al.ꎬ 2015. Elevation ̄ WINKLER Mꎬ LAMPRECHT Aꎬ STEINBAUER Kꎬ et al.ꎬ
dependent warming in mountain regions of the world 2016. The rich sides of mountain summits - a pan ̄European
[J]. Nat Clim Changeꎬ 5 (5): 424-430. view on aspect preferences of alpine plants [J]. J Biogeogrꎬ
PETERS MKꎬ HEMP Aꎬ APPELHANS Tꎬ et al.ꎬ 2019. Climate ̄ 43 (11): 2261-2273.
land ̄use interactions shape tropical mountain biodiversity and XU CDꎬ FENG JMꎬ WANG XPꎬ et al.ꎬ 2008. Vertical
ecosystem functions [J]. Natureꎬ 568(7750): 88-92. distribution patterns of plant species diversity in northern
QIAN Hꎬ HAO Zꎬ ZHANG Jꎬ 2014. Phylogenetic structure and Mt. Gaoligongꎬ Yunnan Province [ J]. Chin J Ecolꎬ 27
phylogenetic diversity of angiosperm assemblages in forests (3): 323-327. [徐成东ꎬ 冯建孟ꎬ 王襄平ꎬ 等ꎬ 2008. 云
along an elevational gradient in Changbaishanꎬ China [J]. J 南高黎 贡 山 北 段 植 物 物 种 多 样 性 的 垂 直 分 布 格 局
Plant Ecolꎬ 7 (2): 154-165. [J]. 生态学杂志ꎬ 27 (3): 323-327.]
RAHBEK Cꎬ BORREGAARD MKꎬ COLWELL RKꎬ et al.ꎬ XU Jꎬ CHEN Yꎬ ZHANG Lꎬ et al.ꎬ 2017. Using phylogeny and
2019. Humboldt’s enigma: What causes global patterns of functional traits for assessing community assembly along
mountain biodiversity? [ J ]. Scienceꎬ 365(6458): environmental gradients: A deterministic process driven by
1108-1113. elevation [J]. Ecol Evolꎬ 7 (14): 5056-5069.
RUMPF SBꎬ HÜLBER Kꎬ KLONNER Gꎬ et al.ꎬ 2018. Range YUE Jꎬ LI Rꎬ 2021. Phylogenetic relatedness of woody
dynamics of mountain plants decrease with elevation angiosperm assemblages and its environmental determinants
[J]. Proc Natl Acad Sci USAꎬ 115(8): 1848-1853. along a subtropical elevational gradient in China [J]. Plant
SALICK Jꎬ FANG Zꎬ HART Rꎬ 2019. Rapid changes in eastern Diversꎬ 43 (2): 111-116.
Himalayan alpine flora with climate change [J]. Am J Botꎬ ZU KLꎬ LENOIR Jꎬ FANG JYꎬ et al.ꎬ 2023. Elevational shift
106 (4): 520-530. in seed plant distributions in Chinas mountains over the last
SHANNON CEꎬ WEAVER Wꎬ 1949. The mathematical theory 70 years [J]. Glob Ecol Biogeogrꎬ 32: 1098-1112.
of communication [M]. Urbanaꎬ IL: University of Iuinois ZU KLꎬ WANG ZHꎬ 2022. Research progress on the elevational
Press. distribution of mountain species in response to climate
SIMPSON EHꎬ 1949. Measurement of diversity [ J]. Natureꎬ change [J]. Biodivers Sciꎬ 30(5): 21451. [祖奎玲ꎬ 王志
163 (4148): 688. 恒ꎬ 2022. 山地物种海拔分布对气候变化响应的研究进
SONG YCꎬ 2013. Evergreen broad ̄leaved forests in China: 展 [J]. 生物多样性ꎬ 30(5): 21451.]
classification ̄ecology ̄conservation [ M]. Beijing: Science ZU KLꎬ WANG ZHꎬ ZHU XYꎬ et al.ꎬ 2021. Upward shift and
Press. [宋永昌ꎬ 2013. 中国常绿阔叶林: 分类生态 elevational range contractions of subtropical mountain plants
保育 [M]. 北京: 科学出版社.] in response to climate change [ J]. Sci Total Environꎬ
STEINBAUER MJꎬ GRYTNES JAꎬ JURASINSKI Gꎬ et al.ꎬ 783: 146896.
2018. Accelerated increase in plant species richness on
mountain summits is linked to warming [ J ]. Natureꎬ (责任编辑 周翠鸣)