[1] Ni J, Cao XY, Jeltsch F, et al. Biome distribution over the last 22000 yr in China. Palaeogeography, Palaeoclimatology, Palaeoecology, 2014, 409: 33-47 [2] 杨振京, 徐建明. 孢粉-植被-气候关系研究进展. 植物生态学报, 2002, 26(增刊): 73-81 [3] 许清海, 李月丛, 李育, 等. 现代花粉过程与第四纪环境研究若干问题讨论. 自然科学进展, 2006, 16(6): 647-656 [4] 李立学, 郝秀东, 欧阳绪红, 等. 桂西北喀斯特峰丛洼地区表土孢粉与现代植被关系研究: 以环江县蒙峒洼地为例. 地理科学, 2023, 43(11): 2060-2068 [5] Xu QH, Zhang SR, Gaillard MJ, et al. Studies of mo-dern pollen assemblages for pollen dispersal-deposition-preservation process understanding and for pollen-based reconstructions of past vegetation, climate, and human impact: A review based on case studies in China. Quaternary Science Reviews, 2016, 149: 151-166 [6] 李永飞, 向建军, 李蓓蓓, 等. 湖南壶瓶山国家级自然保护区表土孢粉与植被的关系. 应用生态学报, 2024, 35(12): 3359-3368 [7] He JF, Li CH, Meng HW, et al. Modern pollen assemblages in lake surface sediments and their relationships with vegetation, climate, and human activities in Yunnan, SW China. Review of Palaeobotany and Palyno-logy, 2024, 331: 105205 [8] 汪啟容, 蒋勇军, 郝秀东, 等. 重庆中梁山岩溶槽谷区表土孢粉与现代植被的关系研究. 中国岩溶, 2021, 40(3): 466-475 [9] Li YC, Ge YW, Bunting MJ, et al. Relative pollen productivities and relevant source area of pollen in the forest-steppe ecotone of northern China. Review of Palaeobotany and Palynology, 2017, 244: 1-12 [10] Su MJ, Wang NN, Dong HR, et al. Influence of human impacts on modern pollen assemblages and an assessment of their reliability in reconstructing climate in eas-tern China. Quaternary International, 2023, 670: 45-54 [11] 谭斌, 徐德宇, 张芸, 等. 样地尺度现代表土花粉与植物群落的定量关系. 应用生态学报, 2021, 32(2): 441-452 [12] 姚付龙, 夏倩倩, 张静, 等. 西天山南坡表土花粉分析. 应用生态学报, 2019, 30(7): 2301-2308 [13] Guo C, Ma YZ, Li DD, et al. Modern pollen and its relationship with vegetation and climate in the Mu Us Desert and surrounding area, northern China: Implications of palaeoclimatic and palaeocological reconstruction. Palaeogeography, Palaeoclimatology, Palaeoecology, 2020, 547: 109699 [14] Pang YZ, La D, Zhang YJ, et al. Relationship between the surface pollen and modern vegetation in the Mila Mountain, southern Qinghai-Tibetan Plateau, China. Acta Micropalaeontologica Sinica, 2016, 33: 33-44 [15] Shang X, Li XQ, An ZS, et al. Modern pollen rain in the Lake Qinghai basin, China. Science in China Series D: Earth Sciences, 2009, 52: 1510-1519 [16] Chi CT, Xiao XY, Wang JJ, et al. The vertical distribution of modern pollen in the southeastern edge of the Tibetan Plateau, China. Palynology, 2024, 48: 2258941 [17] 倪健, 陈瑜, Herzschuh U, 等. 中国第四纪晚期孢粉记录整理. 植物生态学报, 2010, 34(8): 1000-1005 [18] Xiao XY, Haberle SG, Shen J, et al. Latest Pleistocene and Holocene vegetation and climate history inferred from an alpine lacustrine record, northwestern Yunnan Province, southwestern China. Quaternary Science Reviews, 2014, 86: 35-48 [19] Deng YK, Zhang CX, Jiang WY, et al. Relationships between pollen assemblages and modern vegetation of the southern Gaoligong Mountains region, Southwest China. Review of Palaeobotany and Palynology, 2025, 332: 105230 [20] 周申立. 华蓥山滑坡研究. 成都: 西南交通大学出版社, 2008 [21] 华蓥市地方志编纂委员会. 华蓥市志(1992—2005). 北京: 方志出版社, 2012 [22] 王伏雄, 钱南芬, 张玉龙, 等. 中国植物花粉形态(第二版). 北京: 科学出版社, 1995 [23] 唐领余, 毛礼米, 舒军武, 等. 中国第四纪孢粉图鉴. 北京: 科学出版社, 2016 [24] 程久菊, 吕新苗, 朱立平, 等. 珠穆朗玛峰北坡桤木属大气花粉传输路径与来源. 地球科学进展, 2024, 39(4): 419-428 [25] 周盈香, 廖梦娜, 李凯, 等. 浙中亚热带山地森林表土孢粉多样性与现代植物多样性和景观结构的关系. 生态学报, 2025, 45(7): 3431-3443 [26] Vali V, Odgaard BV, Vali U, et al. Pollen richness: A reflection of vegetation diversity or pollen-specific parameters? Vegetation History and Archaeobotany, 2022, 31: 611-622 [27] 郝秀东, 欧阳绪红, 谢世友, 等. 典型喀斯特石漠化地区表土孢粉与现代植被关系. 地理科学, 2011, 31(6): 758-763 [28] Duan RL, Wei HC, Hou GL, et al. Modern pollen assemblages in typical agro-pastoral ecotone in the Eastern Tibetan Plateau and its implications for anthropogenic activities. Frontiers in Ecology and Evolution, 2021, 9: 685942 [29] 李欣怡, 向建军, 李永飞, 等. 湖南八大公山表土孢粉组合及其植被指示意义. 生态学报, 2025, 45(9): 4470-4488 [30] Zeng H, Wang ZY, Chen GX, et al. Asian summer monsoon and orographic winds change the pollen flow in the Hengduan Mountains, southwestern China. Geophy-sical Research Letters, 2025, 52: e2024GL113697 [31] 李月丛, 许清海, 葛亚汶, 等. 黄土高原中东部沙尘与非沙尘天气花粉组成及来源范围. 地理研究, 2014, 33(12): 2367-2381 [32] 李永飞, 李蓓蓓, 许斌, 等. 四川螺髻山表土和化石孢粉揭示的环境生态意义. 生态学报, 2021, 41(8): 3153-3169 [33] 许清海, 李月丛, 阳小兰, 等. 中国北方几种主要花粉类型与植被定量关系. 中国科学(D辑: 地球科学), 2007, 37(2): 192-205 [34] 于革, 韩辉友. 南京紫金山现代植被表土孢粉的初步研究. 植物生态学报, 1995, 19(1): 79-84 [35] 蔡遥, 王燕, 蒋复初, 等. 川北若尔盖高原表土孢粉的特征及其与现代植被的关系. 地质通报, 2010, 29(5): 707-712 [36] 潘韬, 吴绍洪, 戴尔阜, 等. 云南亚热带南部表土孢粉组合与植被间的定量关系. 生态学报, 2008, 28(12): 6060-6069 [37] 许英勤, 阎顺, 贾宝全, 等. 天山南坡表土孢粉分析及其与植被的数量关系. 干旱区地理, 1996, 19(3): 24-30 [38] 全晓文, 黄康有, 水坤春, 等. 华南亚热带中部山地垂直植被带表土孢粉散布规律与气候相关性. 热带地理, 2022, 42(10): 1597-1608 [39] Xu QH, Cao XY, Wang XL, et al. Generation of Yinxu Culture: Environmental background and impacts of human activities. Quaternary Sciences, 2010, 30: 273-286 [40] Huang XZ, Chen XM, Du X, et al. Modern pollen assemblages from human-influenced vegetation in northwestern China and their relationship with vegetation and climate. Vegetation History and Archaeobotany, 2018, 27: 767-780 [41] Pang RM, Xu QH, Ding W, et al. Pollen assemblages of cultivated vegetation in central and southern Hebei Province. Journal of Geographical Sciences, 2011, 21: 549-556 [42] 张静, 蔡静如, 许建新, 等. 蕨类植物在生态修复中的应用研究进展. 安徽农业科学, 2017, 45(4): 69-71 [43] 郝秀东, 欧阳绪红, 谢世友, 等. 重庆喀斯特地区现代花粉组合与植被的关系. 生态学报, 2020, 40(15): 5266-5276 [44] 马艳玲, 许清海, 黄小忠, 等. 西北干旱区人工扰动植被类型花粉组合特征. 古地理学报, 2009, 11(5): 542-550 [45] Shi JH, Li MY, Xu QH, et al. Modern pollen assemblages of agricultural land, wasteland, and natural vegetation in China and their significance for reconstructing the intensity of agricultural activity. Catena, 2024, 235: 107623 [46] Li MY, Li YC, Xu QH, et al. Surface pollen assemblages of human-disturbed vegetation and their relationship with vegetation and climate in northeast China. Chinese Science Bulletin, 2011, 57: 535-547 |