康迪 照片

康迪

博士/教授/硕士生导师

所属大学: 西华师范大学

所属学院: 生命科学学院

邮箱:
kangdi@cwnu.edu.cn

个人主页:
https://life.cwnu.edu.cn/info/1128/17260.htm

个人简介

教育背景 2024 交流学习,南开大学,环境科学与工程学院 2013-2017 理学博士,西北农林科技大学,林学院,生态学专业 2010-2013 理学硕士,西北农林科技大学,林学院,生态学专业 2005-2009 理学学士,内江师范学院,化学与生命科学系,生物科学专业 工作经历 2025.01至 今 西华师范大学生命科学学院 教授 2020.01至2024.12 西华师范大学生命科学学院 副教授 2017.06至2019.12 西华师范大学生命科学学院 讲师 所授课程 生态学、野保专业本科课程:《恢复生态学》、《生态工程》、《生态工程实验》 生态学专业研究生课程:《恢复生态学》、《高级生态学》 奖励与荣誉 (1) 第26届四川省高校教师职业技能培训“优秀示范课学员”; (2) 西华师范大学2018年度“科研十佳”; (3) 南充市科技创新成果奖(2023-C-36-R04),三等奖,排名第四; (4) 生命科学学院第十二届青年教师教学比赛一等奖。 主要科研项目 (1) 大熊猫栖息地内典型地震受损植被群落恢复构建机制——基于物种及功能性状的研究(31800458),国家自然科学基金青年项目,主持,结题; (2) 地震退化森林木本植物功能性状与环境的协同变化机制及生态策略(2023NSFSC0143),四川省自然科学基金面上项目,主持,结题; (3) 大熊猫栖息地震后植被景观恢复特征及影响机制研究(18Q042),博士基金项目,主持,结题; (4) 高原高速公路建设湿地保护与修复技术研究(Z019-ZL-19),横向项目,主持,在研。 (5) 川西高原湿地高速公路工程水生态影响综合评价技术(KH2024-046),横向项目,主持,在研; (6) 放牧干扰下微生物抗性基因在“土壤-植物-野生动物”系统的转移风险及机理研究—以金丝猴为例(32200403),国家自然科学基金青年项目,参与,在研;

研究领域

研究领域为修复生态学、群落生态学、生态系统生态学,尤其专注于自然、人为干扰致生态系统退化及退化后修复的理论和实践有关研究。具体研究方向主要如下: (1) 大型自然干扰下生境-生物协同演化的基本原理和机制; (2) 西南珍稀、濒危动植物栖息地植物、微生物群落构建及其关键驱动力; (3) 西南高寒湿地植物-土壤-微生物协同作用及其机制。

学术兼职

林下生态种植产业国家创新联盟理事 长江生态环境保护民主监督专家 四川省环境科学与生物多样性保护重点实验室副主任 Frontiers in Plant Science、Frontiers in Ecology and Evolution等期刊编辑;《四川林业科技》期刊编委;Journal of Ecology、Agricultural and Forest Meteorology、Ecological Engineering、Forests、Frontiers in Ecology and Evolution、Frontiers in Microbiology等期刊审稿专家

近期论文

(1) Kang Di*, Chen YY, Feng SS, Liu QM, Zou SZ. Microbial community diversity and assembly processes in the aridification of wetlands on the Qinghai-Tibet Plateau. iScience, 2025: 112494. (2) Wei J, Mingyao X, et al., Di Kang*. Microbial genes for degrading plant-derived carbon are the key factors affecting soil respiration and temperature sensitivity in plateau peatlands. Pedosphere, 2024, 34(6): 1026-1037. (3) Kang D, Deng L, Andersen LH and Sándor AD. Regeneration mechanismsand tradeoffs of ecosystem function afterdrastic environmental changes. Frontiers in Ecology and Evolution, 2024, 12:1531956. (4) Zou SZ, Hu RP, Liang SM, Lu T, Kang D, Li DY*. Assessment of health risk of antibiotics resistance genes from human disturbed habitat to wild animals: Metagenomic insights into availability and functional changes of gut microbiome. Ecotoxicology and Environmental Safety, 285: 117117. (5) Di Kang*, Yaling Li, Long Ma, Shuzhen Zou. Landslide scales affect soil organic carbon accumulation by influencing microbial decomposition of plant-derived carbon after earthquakes. Ecological Indicators, 2023, 155: 110949. (6) Xiong MY, Jiang W, Zou SZ, Kang D*, Yan XC. Microbial carbohydrate-active enzymes influence soil carbon by regulating the of plant- and fungal-derived biomass decomposition in plateau peat wetlands under differing water conditions[J]. Frontiers in Microbiology. 2023, 14:1266016. (7) Zou SZ, Yuan TT, Lu T, Yan JY, Kang D, Li DY*. Human Disturbance Increases Health Risks to Golden Snub-Nosed Monkeys and the Transfer Risk of Pathogenic Antibiotic-Resistant Bacteria from Golden Snub-Nosed Monkeys to Humans. Animals, 12(19):3083. (8) Kang D*, Yin CJ, Liu SQ, Chen L, Zou SZ, Zhu DH. Multiscale Regulation of Leaf Traits in Woody Plants as an Adaptation to a Post-Earthquake Environment in Broadleaved Forests of Southwestern China[J]. Forests. 2022: 13(8):1323. (9) Zou SZ, Luo XY, Tang Y, Tu HR, Zhang KY, Yin DX, Kang D*. Multiple factors increase the degradation rate of tetracycline in anaerobic digestion[J]. Desalination and Water Treatment. 2022: 258 (2022): 290–302. (10) Kang D*, Zou SZ, Ma L, Yin CJ, Zhu DH. Abiotic Regulation: Landslide Scale and Altitude Regulate Functional Traits of Regenerating Plant Communities After Earthquakes[J]. Frontiers in Ecology and Evolution, 2022,10: 846642. (11) Kang D, Yin CJ, Zhu DH, Zou SZ*. Altitude and landslide scale regulated the assembly of grassland communities on landslides during the recovery process after the magnitude 8.0 Wenchuan earthquake, China [J]. Ecological Engineering, 2021, 172:06413. (12) Kang D, Zou SZ*. Factors limiting the recruitment of artificial black locust forests in extremely arid environment [J]. Ecological Engineering, 2020, 150: 105813. (13) Deng J, Chong YJ, Dan Z, Kang D, Han XH, Yang GH*. Aggregated Distribution of Herbaceous Plants in Restored Vegetation Community in a Semi-arid Area: Evidence from the Loess Plateau of China. Russian Journal of Ecology, 51(2): 136-143. (14) Zou SZ, Kang D*. Relationship between Anaerobic Digestion Characteristics and Biogas Production under Composting Pretreatment [J]. Renewable Energy, 2018, 125:485-494. (15) Kang D, Deng J, Qin XW, et al. Effect of competition on spatial patterns of oak forests on the Chinese Loess Plateau[J]. Journal of Arid Land, 2017, 9(1): 122-131. (16) Han XH, Zhao FZ, Tong XG, Deng J, Yang GH, Chen LM, Kang D. Understanding soil carbon sequestration following the afforestation of former arable land by physical fractionation. Catena, 2017, 150, 317-327. (17) Ren CJ, Kang D, Wu JP, Zhao FZ, Yang GH, Han XH, Feng YZ, Ren GX. Temporal variation in soil enzyme activities after afforestation in the Loess Plateau, China. Geoderma, 2016, 282(15): 103-111. (18) Ren CJ, Sun PS, Kang D, Zhao FZ, Feng YZ, Ren GX, Han XH, Yang GH. Responsiveness of soil nitrogen fractions and bacterial communities to afforestation in the Loess Hilly Region (LHR) of China. Scientific Reports, 2016, 6: srep28469. (19) Ren CJ, Zhao FZ, Kang D, Yang GH, Han XH, Tong XG, Feng YZ, Ren GX. Linkages of C:N:P stoichiometry and bacterial community in soil following afforestation of former farmland. Forest Ecology and Management, 2016, 376, 59-66. (20) Li CZ, Zhao LH, Sun PS, Zhao FZ, Kang D, Yang GH, Han XH, Feng YZ, Ren GX. Deep Soil C,N,and P Stocks and Stoichiometry in Response to Land Use Patterns in the Loess Hilly Region of China. Plos One, 2016, 11 (7). (21) Zhao FZ, Kang D, Han XH, Yang GH, Yang GH, Feng YZ, Ren GX. Soil stoichiometry and carbon storage in long-term afforestation soil affected by understory vegetation diversity. Ecological Engineering, 2015, 74, 415-422. (22) Zhao FZ, Sun J, Ren CJ, Kang D, Deng J, Han XH, Yang GH, Feng YZ, Ren GX. Land use change influences soil C,N,and P stoichiometry under 'Grain-to-Green Program' in China. Scientific Reports, 2015, 5. (23) Kang D, Guo YX, Ren CJ, et al. Population structure and spatial pattern of main tree species in secondary Betula platyphylla forest in Ziwuling Mountains, China[J]. Scientific reports, 2014, 4:6873. (24) Guo YX, Li G, Hu YN, Kang D, Wang DX, Yang GH. Regeneration of Betula albosinensis in Strip Clearcut and Uncut Forests of the Qinling Mountains in China. Plos One, 2013, 8 (3): e59375. (25) 马龙, 李亚玲, 刘诗琪, 尹才佳, 邹书珍, 康迪*. 高原湿地公路工程边坡不同恢复措施下土壤理化性质及酶活性[J].水土保持通报, 2024, 44(4): 157-167. (26) 尹才佳, 马龙, 邹书珍, 康迪*. 地震滑坡体恢复后植物β多样性格局及其环境响应[J]. 西北植物学报, 2023, 43(02): 316-325. (27) 邹书珍, 尹才佳, 杨茜, 马龙, 康迪*. 子午岭次生油松林立木竞争格局研究[J]. 植物研究. 2023,43(1):140-149. (28) 邹书珍, 罗亚, 程鸣, 王凡, 黎大勇, 康迪, 唐贇.滇金丝猴肠道微生物四环素抗性基因和肠道环境特征[J]. 兽类学报,2023,43(03):304-314. (29) 尹才佳, 马龙, 朱大海, 邹书珍, 康迪*. 地震滑坡体自然恢复后次生植物群落物种组成及生态位特征[J]. 生态学杂志, 2022,41(08):1525-1534. (30) 马龙, 杨晓敏, 杨茜, 谭书平, 祁海军, 王菲, 刘诗琪, 仇诗琪, 康迪*.川西高原公路工程边坡恢复早期植物群落构建特征与关键驱动力[J]. 应用与环境生物学报, 2023,29(03):528-535. (31) 邹书珍, 涂海蓉, 黄丹, 康迪*.微生物生态学课程中培养本科生科研创新思维的教学方法探讨——以西华师范大学为例[J]. 西华师范大学学报(自然科学版), 2022, 43(02):238-244. (32) 康迪, 马玉骁, 邹书珍*. 岷山、邛崃山山系大熊猫栖息地生态安全综合评价[J]. 生物安全学报, 2020,29(2):123-128. (33) 吴润琴, 邹书珍, 康迪*. 秦岭次生辽东栎林新生个体对种群空间格局的响应[J]. 四川林业科技, 2020, 41(06): 15-22. (34) 罗亚, 唐贇, 张丁, 程鸣, 邹书珍, 张晋东, 康迪.不同年龄大熊猫肠道菌群及其酶活特征分析[J].畜牧兽医学报,2020,51(04):763-771. (35) 康迪, 邹书珍*. 大熊猫栖息地地震受损植被恢复研究进展[J]. 生态科学,2019,38(6):178-183. (36) 邹书珍,康迪*. 超声波预处理对牛粪与玉米秸秆混合厌氧发酵特性的影响[J]. 环境科学学报, 2018, 38(7):2696-2704. (37) 康迪. 高等教育治理中行政权力与学术权力之生态平衡[J]. 高教论坛,2018,(8)8:77-80. (38) 戴银月, 孙平生, 康迪, 等.黄土丘陵区人工林细根生物量及其影响因素[J].生态学杂志, 2018, 37(8):8. (39) 杨丽霞, 任广鑫, 韩新辉, 康迪, 赵发珠, 邓健, 杨改河.黄土高原退耕区不同林龄刺槐林下草本植物的多样性[J]. 西北农业学报, 2014, 23(07):172-178. (40) 康迪, 郭垚鑫, 等. 小陇山人工油松林径级结构及林下植物多样性研究[J]. 西北林学院学报, 2012, 27(4): 54-59.