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[J]. Journal of Ecologyꎬ 84(4): 673-682. HOU MFꎬ JIANG ZCꎬ 2006. Species diversity of karst original
BEN ̄HUR Eꎬ KADMON Rꎬ 2020. Heterogeneity ̄diversity forest in different geochemica environments in Maolan
relationships in sessile organisms: A unified framework [J]. Ecology and Environment Sciencesꎬ 15 ( 3): 572 -
[J]. Ecology Lettersꎬ 23(1): 193-207. 576. [侯满福ꎬ 蒋忠诚ꎬ 2006. 茂兰喀斯特原生林不同地
CAO JHꎬ YUAN DXꎬ YANG Hꎬ 2022. Karst ecosystem and its 球化学环境的植物物种多样性 [J]. 生态环境学报ꎬ
plants [J]. Carsologica Sinicaꎬ 41(3): 365-377. [曹建华ꎬ 15(3): 572-576.]
袁道先ꎬ 杨慧ꎬ 等ꎬ 2022. 岩溶生态系统中的植物 [J]. 中 HU Gꎬ ZHANG ZHꎬ CHENG AYꎬ et al.ꎬ 2017. Characterizing
国岩溶ꎬ 41(3): 365-377.] and analyzing stand spatial structure of a northern subtropical
CHAVE Jꎬ MULLER ̄LANDAU HCꎬ LEVIN SAꎬ 2002. karst secondary forest in Tianlong Mountain of central
Comparing classical community modelsꎬ theoretical Guizhou Provinceꎬ China [J]. Earth and Environmentꎬ 45
consequences for patterns of diversity [ J ]. American (1): 25-31. [胡刚ꎬ 张忠华ꎬ 程安云ꎬ 等ꎬ 2017. 黔中天
Naturalistꎬ 159(1): 1-23. 龙山喀斯特次生林林分空间结构的量化与分析 [J]. 地
CHEN HSꎬ FU ZYꎬ ZHANG Wꎬ et al.ꎬ 2018. Soil water 球与环境ꎬ 45(1): 25-31.]
processes and vegetation restoration in karst regions of HUANG FZꎬ DING Tꎬ LI XKꎬ et al.ꎬ 2016. Species diversity
Southwest China [ J]. Chinese Journal of Natureꎬ 40(1): for various associations along an altitudinal gradient in the
41-46. [陈洪松ꎬ 付智勇ꎬ 张伟ꎬ 等ꎬ 2018. 西南喀斯特地 karst seasonal rainforest in Nonggang [ J]. Acta Ecologica
区水土过程与植被恢复重建 [J]. 自然杂志ꎬ 40(1): Sinicaꎬ 36(14): 4509- 4517. [黄甫昭ꎬ 丁涛ꎬ 李先琨ꎬ
41-46.] 等ꎬ 2016. 弄岗喀斯特季节性雨林不同群丛物种多样性随
CHEN HSꎬ NIE YPꎬ WANG KLꎬ 2013. Spatio ̄temporal 海拔的变化 [J]. 生态学报ꎬ 36(14): 4509-4517.]
heterogeneity of water and plant adaptation mechanisms in HUANG YQꎬ LI XKꎬ ZHANG ZFꎬ et al.ꎬ 2011. Seasonal
karst regions: A review [J]. Acta Ecologica Sinicaꎬ 33(2): changes in Cyclobalanopsis glauca transpiration and canopy
317-326. [陈洪松ꎬ 聂云鹏ꎬ 王克林ꎬ 2013. 岩溶山区水 stomatal conductance and their dependence on subterranean
分时空异质性及植物适应机理研究进展 [J]. 生态学报ꎬ water and climatic factors in rocky karst terrain [J]. Journal
33(2): 317-326.] of Hydrologyꎬ 402(1/ 2): 135-143.
DOU LNꎬ ZHANG WFꎬ DENG XBꎬ et al.ꎬ 2018. Nine ̄year HUANG YSꎬ WU WHꎬ JIANG RHꎬ et al.ꎬ 2013. Primary study
seed rain dynamics in Parashorea chinensis forest in on species diversity of plant in Longgang National Nature
Xishuangbannaꎬ Southwest China [J]. Biodiversity Scienceꎬ Reserve of Guangxi [J]. Guihaiaꎬ 33(3): 346-355. [黄俞
26 ( 9): 919 - 930. [ 窦 丽 娜ꎬ 张 文 富ꎬ 邓 晓 保ꎬ 等ꎬ 淞ꎬ 吴望辉ꎬ 蒋日红ꎬ 等ꎬ 2013. 广西弄岗国家级自然保
2018. 西双版纳望天树林种子雨 9 年动态 [J]. 生物多样 护区植物物种多样性初步研究 [J]. 广西植物ꎬ 33(3):
性ꎬ 26(9): 919-930.] 346-355.]
DE WAELE Jꎬ PLAN Lꎬ AUDRA Pꎬ 2009. Recent LI CCꎬ CHENG Xꎬ YANG SCꎬ 2012. Study on the soil
developments in surface and subsurface karst geomorphology: thickness factor of plant growth in karst mountains: Take the
An introduction [J]. Geomorphologyꎬ 106(1/ 2): 1-8. Guizhou Xiangbao Mountain as an example [J]. Journal of
FORD Dꎬ WILLIAMS PMꎬ 2007. Karst hydrogeology and Guizhou Education Universityꎬ 28(9): 38-41. [李程程ꎬ 程
geomorphology [ M]. England: John Wiley & Sons Ltd.: 星ꎬ 杨士超ꎬ 2012. 岩溶山区植物生长的土壤厚度因素研
9-36. 究———以贵州相 宝 山 为 例 [ J]. 贵 州 师 范 学 院 学 报ꎬ
GE Fꎬ 2008. Modern ecology [M]. Beijing: Science Press: 36- 28(9): 38-41.]
47. [戈峰ꎬ 2008. 现代生态学 [M]. 北京: 科学出版社: LI XSꎬ PENG MCꎬ DANG CLꎬ 2007. Research progress of
36-47.] natural regeneration of plants [ J ]. Chinese Journal of
GUO Kꎬ LIU CCꎬ DONG Mꎬ 2011. Ecological adaptation of Ecologyꎬ 26(12): 2081-2088. [李小双ꎬ 彭明春ꎬ 党承林ꎬ
plants and control of rocky desertification on karst region of 2007. 植物自然更新研究进展 [J]. 生态学杂志ꎬ 26(12):
Southwest China [J]. Chinese Journal of Plant Ecologyꎬ 35 2081-2088.]
(10): 991-999. [郭柯ꎬ 刘长成ꎬ 董鸣ꎬ 2011. 我国西南喀 LI YBꎬ HOU JYꎬ XIE DTꎬ 2002. The recent development of
斯特植物生态适应性与石漠化治理 [J]. 植物生态学报ꎬ research on karst ecology in Southwest China [J]. Scientia
35(10): 991-999.] Geographica Sinicaꎬ 22(3): 365-370. [李阳兵ꎬ 侯建筠ꎬ
HEIDRICH Lꎬ BAE Sꎬ LEVICK Sꎬ et al.ꎬ 2020. Heterogeneity ̄ 谢德体ꎬ 2002. 中国西南岩溶生态研究进展 [J]. 地理科
diversity relationships differ between and within trophic 学ꎬ 22(3): 365-370.]
levels in temperate forests [J]. Nature Ecology & Evolutionꎬ LIAO HKꎬ LONG Jꎬ LI Jꎬ et al.ꎬ 2010. Preliminary study on
4(9): 1-9. spatial heterogeneity of soil mineral composition and organic

