参考文献/References:
[1] 徐长林. 坡向对青藏高原东北缘高寒草甸植被构成和养分特征的影响[J]. 草业学报, 2016, 25(4): 26-35. [XU Changlin. Variations in vegetation composition and nutrient characteristics related to aspect in an alpine meadow in the northeast margin of the Qinghai-Tibet Plateau [J]. Acta Prataculturae Sinica, 2016, 25(4): 26-35] DOI: 10.11686/cyxb2015481
[2] 杨宁, 邹冬生, 杨满元, 等. 衡阳紫色土丘陵坡地不同恢复阶段植被特征与土壤性质的关系[J]. 应用生态学报, 2013, 24(1): 90-96. [YANG Ning, ZOU Dongsheng, YANG Manyuan, et al. Relationships between vegetation characteristics and soil properties at different restoration stages on slope land with purple soils in Hengyang of Hunan Province, south-central China [J]. Chinese Journal of Applied Ecology, 2013, 24(1): 90-96] DOI: 10.13287/j.1001-9332.2013.0129
[3] 李静鹏, 徐明锋, 苏志尧, 等. 不同植被恢复类型的土壤肥力质量评价[J]. 生态学报, 2014, 34(9): 2297-2307. [LI Jingpeng, XU Mingfeng, SU Zhiyao, et al. Soil fertility quality assessment under different vegetation restoration patterns [J]. Acta Ecologica Sinica, 2014, 34(9): 2297-2307] DOI: 10.5846/stxb201306111672
[4] 余杭, 高若允, 杨柳生, 等. 震后生态恢复初期植被-土壤的耦合关系研究——以汶川县威州镇、绵竹市汉旺镇为例[J]. 北京林业大学学报, 2021, 43(5): 53-63. [YU Hang, GAO Ruoyun, YANG Liusheng, et al. Coupling relationship between vegetation and soil in the early stage of ecological restoration after earthquake: A case study of Weizhou Town in Wenchuan County and Hanwang Town in Mianzhu City of Sichuan Province, southwestern China [J]. Journal of Beijing Forestry University, 2021, 43(5): 53-63] DOI: 10.12171/j.1000-1522.20200289
[5] 焦菊英, 马祥华, 白文娟, 等. 黄土丘陵沟壑区退耕地植物群落与土壤环境因子的对应分析[J]. 土壤学报, 2005, 42(5): 42-50. [JIAO Juying, MA Xianghua, BAI Wenjuan, et al. Correspondence analysis of vegetation communities and soil environmental factors on abandoned cropland on hilly-gullied Loess Plateau [J]. Acta Pedologica Sinica, 2005, 42(5): 42-50] DOI: 10.11766/trxb200411110506
[6] 赵丽丽, 钟哲科, 史作民. 汶川地震对岷江柏林土壤微生物群落及养分的影响[J]. 土壤通报, 2016, 47(1): 98-104. [ZHAO Lili, ZHONG Zheke, SHI Zuomin. Effects of Wenchuan Earthquake on soil microbial communities and nutrients in Cupressus chenginana forest [J]. Chinese Journal of Soil Science, 2016, 47(1): 98-104] DOI: 10.19336/j.cnki.trtb.2016.01.016
[7] WANG Shijie, LIU Qiming, ZHANG Dianfa. Karst rocky desertification in southwestern China: Geomorphology, landuse, impact and rehabilitation [J]. Land Degradation & Development, 2004, 15(2): 115-121. DOI: 10.1002/ldr.592
[8] 张荣, 李婷婷, 金锁, 等. 不同海拔高度对周公山柳杉人工林植物多样性及土壤养分的影响[J]. 中南林业科技大学学报, 2020, 40(5): 38-46. [ZHANG Rong, LI Tingting, JIN Suo, et al. Effects of different altitude on plant diversity and soil nutrients of Cryptomeria fortunei plantation in Zhougong mountain [J]. Journal of Central South University of Forestry & Technology, 2020, 40(5): 38-46] DOI: 10.14067/j.cnki.1673-923x.2020.05.006
[9] FAN Houbao, WU Jianping, LIU Wenfei, et al. Linkages of plant and soil C:N:P stoichiometry and their relationships to forest growth in subtropical plantations [J]. Plant Soil, 2015, 392(1/2): 127-138. DOI: 10.1007/s11104-015-2444-2
[10] 郭文芳, 李鑫, 陈艳梅, 等. 太行山坡地不同管理措施植被-土壤系统耦合关系[J]. 生态学报, 2023, 43(15): 6170-6181. [GUO Wenfang, LI Xin, CHEN Yanmei, et al. Evaluation of the coupling relationship between vegetation and soil system under different management measures in Taihang Mountains [J]. Acta Ecologica Sinica, 2023, 43(15): 6170-6181] DOI: 10.5846/stxb202210062825
[11] 白一茹, 阮晓晗, 包维斌, 等. 宁南山区坡面不同土地利用方式下植被-土壤耦合关系评价[J]. 水土保持研究, 2021, 28(4): 251-258. [BAI Yiru, RUAN Xiaohan, BAO Weibin, et al. Evaluation on coupling of vegetation and soil on slopes of mountain area in southern Ningxia [J]. Research of Soil and Water Conservation, 2021, 28(4): 251-258] DOI: 10.13869/j.cnki.rswc.2021.04.029
[12] 张晓宁, 李晓丹, 刘星雨, 等. 高寒草地植被与土壤水源涵养功能的时空耦合关系[J]. 水土保持学报, 2023, 37(5): 243-251+274. [ZHANG Xiaoning, LI Xiaodan, LIU Xingyu, et al. Spatial and temporal coupling relationship between alpine grassland vegetation and soil water conservation function [J]. Journal of Soil and Water Conservation, 2023, 37(5): 243-251+274] DOI: 10.13870/j.cnki.stbcxb.2023.05.029
[13] 王枫, 宋同清, 杜虎, 等. 中国南海北部不同岛屿植被与土壤的耦合协调发展度[J]. 生态学报, 2023, 43(8): 3319-3326. [WANG Feng, SONG Tongqing, DU Hu, et al. Coupling coordinative degree of vegetation and soil in different islands in the north of South Sea, China [J]. Acta Ecologica Sinica, 2023, 43(8): 3319-3326] DOI: 10.5846/stxb202103020565
[14] 方迎潮, 王道杰, 何松膛, 等. 云南东川蒋家沟泥石流2003—2014年冲淤演变特征[J]. 山地学报, 2018, 36(6): 907-916. [FANG Yingchao, WANG Daojie, HE Songtang, et al. Characteristics of debris flow erosion and deposition at Jiangjia Gully, Dongchuan, Yunnan Province, China for 2003-2014 [J]. Mountain Research, 2018, 36(6): 907-916] DOI: 10.16089/j.cnki.1008-2786.000386
[15] 俞陈辉, 田雪, 刘鑫铭, 等. 泥石流流域失稳性坡面土壤抗蚀性评价[J]. 水土保持学报, 2022, 36(4): 13-21+29. [YU Chenhui, TIAN Xue, LIU Xinming, et al. Evaluation of soil anti-erodibility of unstable slope in debris flow basin [J]. Journal of Soil and Water Conservation, 2022, 36(4): 13-21+29] DOI: 10.13870/j.cnki.stbcxb.2022.04.003
[16] 谢贤健. 泥石流频发区不同土地利用类型下土壤分形维数与理化性质的关联度[J]. 草业科学, 2024, 41(1): 49-58. [XIE Xianjian. Correlation degree analysis of soil fractal dimension and physical and chemical properties under different land use types in debris flow prone areas [J]. Pratacultural Science, 2024, 41(1): 49-58] DOI: 10.11829/j.issn.1001-0629.2022-0638
[17] 郭晓军, 苏凤洹, 洪勇, 等. 蒋家沟流域雨季降水中氢氧同位素特征分析[J]. 水土保持研究, 2012, 19(2): 82-85+90. [GUO Xiaojun, SU Fenghuan, HONG Yong, et al. Characteristics of hydrogen and oxygen isotopes in rainy season precipitation in Jiangjiagou Watershed [J]. Research of Soil and Water Conservation, 2012, 19(2): 82-85+90]
[18] 吴建召, 孙凡, 崔羽, 等. 不同气候区失稳性坡面植被生物量与土壤密度的关系——以云南省昆明市东川区蒋家沟流域为例[J]. 北京林业大学学报, 2020, 42(3): 24-35. [WU Jianzhao, SUN Fan, CUI Yu, et al. Relationship between vegetation biomass and soil bulk density on unstable slopes in different climatic regions: A case study of Jiangjiagou Watershed in Dongchuan District of Kunming City, Yunnan Province of southwestern China [J]. Journal of Beijing Forestry University, 2020, 42(3): 24-35] DOI: 10.12171/j.1000-1522.20190066
[19] 马剑, 刘贤德, 何晓玲, 等. 祁连山典型灌丛群落结构特征及其多样性研究[J]. 干旱区地理, 2021, 44(5): 1427-1437. [MA Jian, LIU Xiande, HE Xiaoling, et al. Structural characteristics and diversity of typical shrub communities in Qilian Mountains [J]. Arid Land Geography, 2021, 44(5): 1427-1437] DOI: 10.12118/j.issn.1000-6060.2021.05.23
[20] 彭晚霞, 宋同清, 曾馥平, 等. 喀斯特峰丛洼地退耕还林还草工程的植被土壤耦合协调度模型[J]. 农业工程学报, 2011, 27(9): 305-310. [PENG Wanxia, SONG Tongqing, ZENG Fuping, et al. Models of vegetation and soil coupling coordinative degree in grain for green project in depressions between karst hills [J]. Transactions of the Chinese Society of Agricultural Engineering, 2011, 27(9): 305-310] DOI: 10.3969/j.issn.1002-6819.2011.09.053
[21] 赵丽, 朱永明, 付梅臣, 等. 主成分分析法和熵值法在农村居民点集约利用评价中的比较[J]. 农业工程学报, 2012, 28(7): 235-242. [ZHAO Li, ZHU Yongming, FU Meichen, et al. Comparative study on intensive use of rural residential land based on principal component analysis and entropy [J]. Transactions of the Chinese Society of Agricultural Engineering, 2012, 28(7): 235-242] DOI: 10.3969/j.issn.1002-6819.2012.07.039
[22] 颜惠琴, 牛万红, 韩惠丽. 基于主成分分析构建指标权重的客观赋权法[J]. 济南大学学报(自然科学版), 2017, 31(6): 519-523. [YAN Huiqin, NIU Wanhong, HAN Huili. Objective weight method based on principal component analysis to establish index weight [J]. Journal of University of Jinan(Science and Technology), 2017, 31(6): 519-523] DOI: 10.13349/j.cnki.jdxbn.2017.06.009
[23] 陈爱民, 严思维, 林勇明, 等. 泥石流频发区不同林龄新银合欢土壤抗蚀性评价[J]. 北京林业大学学报, 2016, 38(9): 62-70. [CHEN Aimin, YAN Siwei, LIN Yongming, et al. Evaluation of soil anti-erodibility at different ages of Leucaena leucocephala forests in the area with high-frequency debris flow [J]. Journal of Beijing Forestry University, 2016, 38(9): 62-70] DOI: 10.13332/j.1000-1522.20150530
[24] 潘开文, 何静, 吴宁. 森林凋落物对林地微生境的影响[J]. 应用生态学报, 2004, 15(1): 153-158. [PAN Kaiwen, HE Jing, WU Ning. Effect of forest litter on microenvironment conditions of forestland [J]. Chinese Journal of Applied Ecology, 2004, 15(1): 153-158] DOI: 10.13287/j.1001-9332.2004.0035
[25] 余杭, 罗清虎, 李松阳, 等. 灾害干扰受损森林土壤的碳、氮、磷初期恢复特征与变异性[J]. 山地学报, 2020, 38(4): 532-541. [YU Hang, LUO Qinghu, LI Songyang, et al. Initial recovery characteristics and variability of soil carbon, nitrogen, and phosphorus in the damaged forests under disaster disturbance [J]. Mountain Research, 2020, 38(4): 532-541] DOI: 10.16089/j.cnki.1008-2786.000531
[26] 张广帅, 邓浩俊, 俞伟, 等. 泥石流频发区山地土壤环境因子与植被群落垂直梯度及其关系分析——以云南小江流域为例[J]. 应用与环境生物学报, 2014, 20(4): 646-654. [ZHANG Guangshuai, DENG Haojun, YU Wei, et al. Vertical gradient analysis of soil environmental factors and vegetation community in mountain areas of frequent debris flow: A case study in the Xiaojiang Watershed, Yunnan [J]. Chinese Journal of Applied & Environmental Biology, 2014, 20(4): 646-654] DOI: 10.3724/SP.J.1145.2014.02016
[27] CUI Peng, LIN Yongming. Debris-flow treatment: The integration of botanical and geotechnical methods [J]. Journal of Resources and Ecology, 2013, 4(2): 97-104. DOI: 10.5814/j.issn.1674-764x.2013.02.001
[28] 罗清虎, 孙凡, 吴建召, 等. 泥石流频发流域物源区坡面植被群落特征[J]. 应用与环境生物学报, 2018, 24(4): 681-688. [LUO Qinghu, SUN Fan, WU Jianzhao, et al. Characterizing the vegetation community in the provenance slope with high-frequency debris flow [J]. Chinese Journal of Applied & Environmental Biology, 2018, 24(4): 681-688] DOI: 10.19675/j.cnki.1006-687x.2017.10017
[29] 杨柳生, 高若允, 孙凡, 等. 泥石流频发流域失稳性坡面植物群落特征及生态系统碳储量[J]. 山地学报, 2022, 40(3): 355-368. [YANG Liusheng, GAO Ruoyun, SUN Fan, et al. Plant community and ecosystem carbon stocks in the unstable slopes subjected to high-frequency debris flow [J]. Mountain Research, 2022, 40(3): 355-368] DOI: 10.16089/j.cnki.1008-2786.000677
[30] 刘颖, 贺静雯, 李松阳, 等. 云南蒋家沟流域不同海拔梯度土壤种子库特征[J]. 森林与环境学报, 2020, 40(3): 225-233. [LIU Ying, HE Jingwen, LI Songyang, et al. Soil seed bank characteristics in different altitude gradients in Jiangjia Gulley Watershed, Yunnan [J]. Journal of Forest and Environment, 2020, 40(3): 225-233] DOI: 10.13324/j.cnki.jfcf.2020.03.001
[31] 崔宁洁, 张丹桔, 刘洋, 等. 不同林龄马尾松人工林林下植物多样性与土壤理化性质[J]. 生态学杂志, 2014, 33(10): 2610-2617. [CUI Ningjie, ZHANG Danju, LIU Yang, et al. Plant diversity and soil physicochemical properties under different aged Pinus massoniana plantations [J]. Chinese Journal of Ecology, 2014, 33(10): 2610-2617] DOI: 10.13292/j.1000-4890.2014.0221
[32] LUGO A E. The apparent paradox of reestablishing species richness on degraded lands with tree monocultures [J]. Forest Ecology and Management, 1997, 99: 9-19. DOI: 10.1016/S0378-1127(97)00191-6
[33] 李裕元, 邵明安, 郑纪勇, 等. 黄土高原北部草地的恢复与重建对土壤有机碳的影响[J]. 生态学报, 2007, 27(6): 2279-2287. [LI Yuyuan, SHAO Ming'an, ZHENG Jiyong, et al. Impact of grassland recovery and reconstruction on soil organic carbon in the northern Loess Plateau [J]. Acta Ecologica Sinica, 2007, 27(6): 2279-2287] DOI: 10.3321/j.issn:1000-0933.2007.06.017
[34] 王合云, 董智, 郭建英, 等. 不同放牧强度下短花针茅荒漠草原植被-土壤系统有机碳组分储量特征[J]. 生态学报, 2016, 36(15): 4617-4625. [WANG Heyun, DONG Zhi, GUO Jianying, et al. Organic carbon storage properties in Stipa breviflora desert steppe vegetation soil systems under different grazing intensities [J]. Acta Ecologica Sinica, 2016, 36(15): 4617-4625] DOI: 10.5846/stxb201507011399
[35] 兰安军, 张百平, 熊康宁, 等. 黔西南脆弱喀斯特生态环境空间格局分析[J]. 地理研究, 2003, 22(6): 733-741+811. [LAN Anjun, ZHANG Baiping, XIONG Kangning, et al. Spatial pattern of the fragile karst environment in southwest Guizhou Province [J]. Geographical Research, 2003, 22(6): 733-741+811] DOI: 10.3321/j.issn:1000-0585.2003.06.008
[36] LIN Wentzu, CHOU Wenchieh, LIN Chaoyuan, et al. Vegetation recovery monitoring and assessment at landslides caused by earthquake in Central Taiwan [J]. Forest Ecology and Management, 2005, 210(1): 55-66. DOI: 10.1016/j.foreco.2005.02.026
[37] 杜虎, 彭晚霞, 宋同清, 等. 桂北喀斯特峰丛洼地植物群落特征及其与土壤的耦合关系[J]. 植物生态学报, 2013, 37(3): 197-208. [DU Hu, PENG Wanxia, SONG Tongqing, et al. Plant community characteristics and its coupling relationships with soil in depressions between karst hills, north Guangxi, China [J]. Chinese Journal of Plant Ecology, 2013, 37(3): 197-208] DOI: 10.3724/SP.J.1258.2013.00020
[38] 王皓月, 郭月峰, 徐雅洁, 等. 九峰山不同林分类型生态恢复植被-土壤系统耦合关系评价[J]. 生态环境学报, 2021, 30(12): 2309-2316. [WANG Haoyue, GUO Yuefeng, XU Yajie, et al. Coupling relationship between vegetation and soil system in ecological restoration of different stand types in Jiufeng Mountain [J]. Ecology and Environmental Sciences, 2021, 30(12): 2309-2316] DOI: 10.16258/j.cnki.1674-5906.2021.12.005
[39] SUL W J, ASUMING-BREMPONG S, WANG Qiong, et al. Tropical agricultural land management influences on soil microbial communities through its effect on soil organic carbon [J]. Soil Biology and Biochemistry, 2013, 65(10): 33-38. DOI: 10.1016/j.soilbio.2013.05.007
[40] 冯二朋, 张立伟, 赖勇, 等. 王屋山不同海拔植被-土壤耦合协调度研究[J]. 河南农业大学学报, 2023, 57(6): 949-957. [FENG Erpeng, ZHANG Liwei, LAI Yong, et al. Study on vegetation-soil coupling coordination degree along different elevation in Wangwu Mountain [J]. Journal of Henan Agricultural University, 2023, 57(6): 949-957] DOI: 10.16445/j.cnki.1000-2340.20231019.002
[41] 孟莹莹, 周莉, 周旺明, 等. 长白山风倒区植被恢复26年后物种多样性变化特征[J]. 生态学报, 2015, 35(1): 142-149. [MENG Yingying, ZHOU Li, ZHOU Wangming, et al. Characteristics of plant species diversity in a windthrow area on Changbai Mountain after 26 years of natural recovery [J]. Acta Ecologica Sinica, 2015, 35(1): 142-149] DOI: 10.5846/stxb201405301109
[42] 高若允, 杨柳生, 田雪, 等. 干热河谷阴、阳坡失稳性坡面植被与环境因子关系的冗余分析[J]. 山地学报, 2022, 40(6): 835-846. [GAO Ruoyun, YANG Liusheng, TIAN Xue, et al. Redundancy analysis of the relationship between plant and environmental factors on shady and sunny unstable slope in dry-hot valley [J]. Mountain Research, 2022, 40(6): 835-846] DOI: 10.16089/j.cnki.1008-2786.000717