[1] GONZÁLES H, OCAÑA C L, CUBAS J A,et al. Impact of forest fire severity on soil physical and chemical properties in pine and scrub forests in high Andean zones of Peru[J/OL].Trees, Forests and People, 2024,18: 100659[2025-04-02]. DOI: 10.1016/j.tfp.2024.100659.
[2] 金山, 武帅楷. 太岳山油松林火烧迹地恢复初期植物群落结构特征[J]. 生态学报, 2021,41(10): 4182−4193.

JIN Shan, WU Shuaikai. The plant community structure of burnedPinus tabuliformisforest in Taiyue Mountainin the early ecological restoration stage [J].Acta Ecologica Sinica, 2021,41(10): 4182−4193.
[3] 常禹, 陈宏伟, 胡远满, 等. 林火烈度评价及其空间异质性研究进展[J]. 自然灾害学报, 2012,21(2): 28−34.

CHANG Yu, CHEN Hongwei, HU Yuanman,et al. Advances in the assessment of forest fire severity and its spatial heterogeneity [J].Journal of Natural Disasters, 2012,21(2): 28−34.
[4] KEELEY J E. Fire intensity, fire severity and burn severity: a brief review and suggested usage[J/OL].International Journal of Wildland Fire, 2009,18(1): 116[2025-04-02]. DOI: 10.1071/wf07049.
[5] 刘晓东, 王博. 森林燃烧主要排放物研究进展[J]. 北京林业大学学报, 2017,39(12): 118−124.

LIU Xiaodong, WANG Bo. Review on the main emission products released by forest combustion [J].Journal of Beijing Forestry University, 2017,39(12): 118−124.
[6] WANG Wei, XING Zhen, LI Wenbo,et al. Study on diversity of undergrowth plant community in Cibagou nature reserve [J].American Journal of Plant Sciences, 2017,8(9): 2149−2158.
[7] 李婷婷, 唐永彬, 周润惠, 等. 云顶山不同人工林林下植物多样性及其与土壤理化性质的关系[J]. 生态学报, 2021,41(3): 1168−1177.

LI Tingting, TANG Yongbin, ZHOU Runhui,et al. Understory plant diversity and its relationship with soil physicochemical properties in different plantations in Yunding Mountain [J].Acta Ecologica Sinica, 2021,41(3): 1168−1177.
[8] 冯浩育, 陈思帆, 索奥丽, 等. 不同火烈度下山西太岳山油松林灌木层物种多样性和叶功能性状[J]. 北京林业大学学报, 2024,46(6): 38−47.

FENG Haoyu, CHEN Sifan, SUO Aoli,et al. Species diversity and leaf functional traits of shrub layer inPinus tabuliformisforest under different fire intensities in Taiyue Mountain, Shanxi Province of northern China [J].Journal of Beijing Forestry University, 2024,46(6): 38−47.
[9] 栗马玲, 宋沼鹏, 刘艳红, 等. 火烧强度对兴安落叶松群落叶片功能性状及功能多样性的影响[J]. 应用生态学报, 2019,30(12): 4021−4030.

LI Maling, SONG Zhaopeng, LIU Yanhong,et al. Effects of fire intensity on leaf functional traits and functional diversity ofLarix gmeliniicommunity [J].Chinese Journal of Applied Ecology, 2019,30(12): 4021−4030.
[10] 陈小雪, 李红丽, 董智, 等. 不同火烧强度迹地林下灌草层物种多样性及其与土壤因子的关系[J]. 西北植物学报, 2020,40(1): 130−140

CHEN Xiaoxue, LI Hongli, DONG Zhi,et al. Relationship of shurbs and herbs species diversity under different fire intensities with soil factors [J].Acta Botanica Boreali-Occidentalia Sinica, 2020,40(1): 130−140.
[11] 赵蔓, 张晓曼, 杨明洁. 林火干扰对油松针叶林物种多样性与土壤理化性质的影响[J]. 生态学报, 2023,43(18): 7412−7421.

ZHAO Man, ZHANG Xiaoman, YANG Mingjie. Effects of forest fire disturbance on species diversity and soil physicochemical properties inPinus tabuliformisconiferous forests [J].Acta Ecologica Sinica, 2023,43(18): 7412−7421.
[12] AZEVEDO J C, POSSACOS A, AGUIAR C F,et al. The role of holm oak edges in the control of disturbance and conservation of plant diversity in fire-prone landscapes [J].Forest Ecology and Management, 2013,297: 37−48.
[13] 石亮, 周梅, 王鼎, 等. 林火干扰对兴安落叶松林下植被多样性和生物量的影响[J]. 东北林业大学学报, 2016,44(1): 44−47.

SHI Liang, ZHOU Mei, WANG Ding,et al. Effects of forest fire on understory vegetation diversity and biomass ofLarix gmeliniforest [J].Journal of Northeast Forestry University, 2016,44(1): 44−47.
[14] 张玉红, 覃炳醒, 孙铭隆, 等. 林火对大兴安岭典型林型林下植被与土壤的影响[J]. 北京林业大学学报, 2012,34(2): 7−13.

ZHANG Yuhong, QIN Bingxing, SUN Minglong,et al. Impact of forest fire on understory vegetation and soil in typical forest types of Daxing’an Mountains, northeastern China [J].Journal of Beijing Forestry University, 2012,34(2): 7−13.
[15] 李威, 周梅, 赵鹏武, 等. 大兴安岭东麓火烧迹地恢复初期植被特征[J]. 东北林业大学学报, 2020,48(1): 51−55.

LI Wei, ZHOU Mei, ZHAO Pengwu,et al. Vegetation characteristics in the early stage of restoration of burned area in eastern Daxing’an Mountains [J].Journal of Northeast Forestry University, 2020,48(1): 51−55.
[16] 潘慧萍, 金建华, 张山云, 等. 计划烧除对滇中云南松林土壤养分的影响[J]. 浙江农林大学学报, 2024,41(2): 379−386.

PAN Huiping, JIN Jianhua, ZHANG Shanyun,et al. Effect of prescribed burning on soil nutrient content ofPinus yunnanensisforest in central Yunnan Province [J].Journal of Zhejiang A&F University, 2024,41(2): 379−386.
[17] AGBESHIE A A, ABUGRE S, ATTA-DARKWA T,et al. A review of the effects of forest fire on soil properties [J].Journal of Forestry Research, 2022,33(5): 1419−1441.
[18] CAVARD X, BERGERON Y, PARÉ D,et al. Disentangling effects of time since fire, overstory composition and organic layer thickness on nutrient availability in Canadian boreal forest [J].Ecosystems, 2019,22(1): 33−48.
[19] BADÍA D, MARTÍ C, AGUIRRE A J,et al. Wildfire effects on nutrients and organic carbon of a Rendzic Phaeozem in NE Spain: changes at cm-scale topsoil [J].CATENA, 2014,113: 267−275.
[20] 王绪高, 李秀珍, 贺红士, 等. 大兴安岭北坡落叶松林火后植被演替过程研究[J]. 生态学杂志, 2004,23(5): 35−41.

WANG Xugao, LI Xiuzhen, HE Hongshi,et al. Postfire succession of larch forest in the northern slope of Daxinganling [J].Chinese Journal of Ecology, 2004,23(5): 35−41.
[21] 褚燕琴, 牛树奎, 陈锋, 等. 火干扰及环境因子对油松林林下植被的影响[J]. 浙江农林大学学报, 2017,34(1): 96−103.

CHU Yanqin, NIU Shukui, CHEN Feng,et al. Fire disturbance and environmental factors for the undergrowth in aPinus tabulaeformisforest [J].Journal of Zhejiang A&F University, 2017,34(1): 96−103.
[22] WEISER F, SAUER A, GETTUEVA D,et al. Impacts of forest fire on understory species diversity in canary pine ecosystems on the island of LaPalma[J/OL].Forests, 2021,12(12): 1638[2025-04-02]. DOI: 10.3390/f12121638.
[23] 王邵军. “植物-土壤” 相互反馈的关键生态学问题: 格局、过程与机制[J]. 南京林业大学学报(自然科学版), 2020,44(2): 1−9.

WANG Shaojun. Key ecological issues in plant-soil feedback: pattern, process and mechanism [J].Journal of Nanjing Forestry University (Natural Sciences Edition), 2020,44(2): 1−9.
[24] CRAWFORD K M, BAUER J T, COMITA L S,et al. When and where plant-soil feedback may promote plant coexistence: a meta-analysis [J].Ecology Letters, 2019,22(8): 1274−1284.
[25] 顾泽, 王博, 陈思帆, 等. 不同火烈度火烧迹地内油松叶功能性状的变化[J]. 应用生态学报, 2022,33(6): 1497−1504.

GU Ze, WANG Bo, CHEN Sifan,et al. Changes of leaf functional traits ofPinus tabuliformisin burned areas with different fire severities [J].Chinese Journal of Applied Ecology, 2022,33(6): 1497−1504.
[26] QIN Qianqian, ZHANG Yujian, QIU Cong,et al. Can litterfall input mitigate the adverse effects of high-severity wildfires on soil functions in temperate forest ecosystems?[J/OL].Soil Biology and Biochemistry, 2023,184: 109119[2025-04-12]. DOI: 10.1016/j.soilbio.2023.109119.
[27] 孙家宝, 张海林, 胡海清. 火干扰强度对兴安落叶松林物种组成及多样性的影响[J]. 森林工程, 2009,25(6): 1−5.

SUN Jiabao, ZHANG Hailin, HU Haiqing. Effect of fire disturbance intensity on species composition and species diversity ofLarix gmeliniiforest in Daxing’anling Mountain [J].Forest Engineering, 2009,25(6): 1−5.
[28] 卢文雄, 薛卫星, 张瑞丰, 等. 马尾松林下土壤理化性质对不同林火严重程度的响应[J]. 生态学报, 2025,45(1): 1−12.

LU Wenxiong, XUE Weixing, ZHANG Ruifeng,et al. Response of soil physicochemical properties under masson pine forests to different forest fire severities [J].Acta Ecologica Sinica, 2025,45(1): 1−12.
[29] 高钰, 索奥丽, 高敏, 等. 不同火烈度对四川泸山林场云南松林土壤有机碳组分的影响[J]. 生态学报, 2023,43(22): 9281−9293.

GAO Yu, SUO Aoli, GAO Min,et al. Effects of different fire severities on soil organic carbon components ofPinus yunnanensisforest in Lushan Forest Farm, Sichuan Province [J].Acta Ecologica Sinica, 2023,43(22): 9281−9293.
[30] 冉益倩, 周俊, 张茜彧, 等. 火烧强度对西南亚热带林地土壤理化性质的影响[J]. 草地学报, 2023,31(9): 2796−2804.

RAN Yiqian, ZHOU Jun, ZHANG Xiyu,et al. Effects of burning intensity on soil chemical and physical properties in southwest subtropical forests [J].Acta Agrestia Sinica, 2023,31(9): 2796−2804.
[31] 曾素平, 刘发林, 赵梅芳, 等. 火干扰强度对亚热带四种森林类型土壤理化性质的影响[J]. 生态学报, 2020,40(1): 233−246.

ZENG Suping, LIU Falin, ZHAO Meifang,et al. Effects of fire disturbance intensities on soil physiochemical properties of pour subtropical forest types [J].Acta Ecologica Sinica, 2020,40(1): 233−246.
[32] 刘发林, 陈小伟, 曾素平. 不同火干扰强度对枫香次生林土壤理化性质的影响[J]. 水土保持学报, 2019,33(5): 132−138.

LIU Falin, CHEN Xiaowei, ZENG Suping. Effects of fire disturbance on soil physiochemical properties inLiquidambar formosanasecondary forest [J].Journal of Soil and Water Conservation, 2019,33(5): 132−138.
[33] 陈思帆, 陈锋, 索奥丽, 等. 不同烈度林火对油松林土壤微生物群落组成的影响[J]. 生态学报, 2025,45(9): 4223−4236.

CHEN Sifan, CHEN Feng, SUO Aoli,et al. Investigation of soil microbial community composition inPinus tabulaeformisforests after different fire severities [J].Acta Ecologica Sinica, 2025,45(9): 4223−4236.
[34] 金锁, 毕浩杰, 刘佳, 等. 林分密度对云顶山柏木人工林群落结构和物种多样性的影响[J]. 北京林业大学学报, 2020,42(1): 10−17.

JIN Suo, BI Haojie, LIU Jia,et al. Effects of stand density on community structure and species diversity ofCupressus funebrisplantation in Yunding Mountain, southwestern China [J].Journal of Beijing Forestry University, 2020,42(1): 10−17.
[35] 方精云, 王襄平, 沈泽昊, 等. 植物群落清查的主要内容、方法和技术规范[J]. 生物多样性, 2009,17(6): 533−548.

FANG Jingyun, WANG Xiangping, SHEN Zehao,et al. Methods and protocols for plant community inventory [J].Biodiversity Science, 2009,17(6): 533−548.
[36] 王媚臻, 毕浩杰, 金锁, 等. 林分密度对云顶山柏木人工林林下物种多样性和土壤理化性质的影响[J]. 生态学报, 2019,39(3): 981−988.

WANG Meizhen, BI Haojie, JIN Suo,et al. Effects of stand density on understory species diversity and soil physicochemical properties of aCupressus funebrisplantation in Yunding Mountain [J].Acta Ecologica Sinica, 2019,39(3): 981−988.
[37] 陈思帆, 高健, 高敏, 等. 火烧强度对山西太岳山油松林地表可燃物的影响[J]. 西北农林科技大学学报(自然科学版), 2022,50(10): 68−77.

CHEN Sifan, GAO Jian, GAO Min,et al. Effects of fire intensity on surface fuel ofPinus tabuliformisin Taiyue Mountain, Shanxi Province [J].Journal of Northwest A&F University (Natural Science Edition), 2022,50(10): 68−77.
[38] 武秀娟, 奥小平. 油松林火烧迹地恢复初期林下植被特征[J]. 西北林学院学报, 2022,37(5): 155−161.

WU Xiujuan, AO Xiaoping. The characteristics of understory vegetation in the early stage of restoration of burnedPinus tabuliformisforests [J].Journal of Northwest Forestry University, 2022,37(5): 155−161.
[39] 邢玮, 葛之葳, 李俊清. 大兴安岭北部林区林火干扰强度对兴安落叶松群落影响研究[J]. 科学技术与工程, 2006,6(14): 2042−2046.

XING Wei, GE Zhiwei, LI Junqing. The effect of fire severity on theLarix gmelinicommunity in north great Xing’an Mountains [J].Science Technology and Engineering, 2006,6(14): 2042−2046.
[40] 赵蔓, 张晓曼, 杨明洁. 林火干扰对栓皮栎-辽东栎混交林植物多样性与土壤理化性质的影响[J]. 生态环境学报, 2023,32(10): 1732−1740.

ZHAO Man, ZHANG Xiaoman, YANG Mingjie. Effects of forest fire disturbance on species diversity and soil physicochemical properties ofQuercus variabilisandQuercuswutaishanseamixed forests [J].Ecology and Environmental Sciences, 2023,32(10): 1732−1740.
[41] 许鹏波, 屈明, 薛立. 火对森林土壤的影响[J]. 生态学杂志, 2013,32(6): 1596−1606.

XU Pengbo, QU Ming, XUE Li. Effects of forest fire on forest soils [J].Chinese Journal of Ecology, 2013,32(6): 1596−1606.
[42] 孙明学. 塔河林区林火对土壤性质与植被恢复的影响[D]. 北京: 北京林业大学, 2011.

SUN Mingxue.The Impacts on Soil Properties and Revegetation from Forest Fire in Tahe Forest Region[D]. Beijing: Beijing Forestry University, 2011.
[43] 杨馥羽, 陈奇伯, 黎建强, 等. 计划烧除对云南松林土壤抗蚀和抗冲性的影响[J]. 浙江农林大学学报, 2023,40(1): 188−197.

YANG Fuyu, CHEN Qibo, LI Jianqiang,et al. Effect of prescribed burning on soil anti-erodibility and anti-scourability ofPinus yunnanensisforest [J].Journal of Zhejiang A&F University, 2023,40(1): 188−197.
[44] CAON L, VALLEJO V R, RITSEMA C J,et al. Effects of wildfire on soil nutrients in Mediterranean ecosystems [J].Earth-Science Reviews, 2014,139: 47−58.
[45] 贺婷. 火烧对大兴安岭地区森林土壤理化性状的影响[D]. 呼和浩特: 内蒙古农业大学, 2015.

HE Ting.The Impact of Forest Soil Physical and Chemical Properties on Fire in the Daxing’an Moutains Region[D]. Hohhot: Inner Mongolia Agricultural University, 2015.
[46] 孙明学, 贾炜玮, 吴瑶. 大兴安岭北部地区林火对土壤化学性质的影响[J]. 东北林业大学学报, 2009,37(5): 33−35.

SUN Mingxue, JIA Weiwei, WU Yao. Effect of forest fire on soil chemical properties in northern daxing’an mountains [J].Journal of Northeast Forestry University, 2009,37(5): 33−35.
[47] JHARIYA M K, SINGH L. Effect of fire severity on soil properties in a seasonally dry forest ecosystem of Central India [J].International Journal of Environmental Science and Technology, 2021,18(12): 3967−3978.
[48] HAN Wenjuan, CHANG Jie, JIANG Hang,et al. Plant species diversity affects plant nutrient pools by affecting plant biomass and nutrient concentrations in high-nitrogen ecosystems [J].Basic and Applied Ecology, 2021,56: 213−225.
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