
湖南平江人,1972年1月生,中国共产党党员。主要从事土壤微生物生态学研究,硕导,广西师范大学、中南林业科技大学兼职硕导,2021年12月被中央组织部委派至广西环江毛南族自治县挂职常委、副县长。先后主持国家自然科学基金4项(含联合重点基金1项)、广西重点研发计划项目和中国科学院知识创新工程重大项目课题各1项;参与973课题、国家重点研发计划项目和中科院战略先导科技专项等项目10多项。发表论文100多篇(SCI50余篇),发明专利5项;联合培养硕士毕业生30余人(含在读)。2014年度与2017年度分获中国科学院科技促进发展奖(排名第7与第10)、2020年获广西科技进步一等奖(排名第7);兼任第十届湖南省科学技术协会委员、湖南省循环农业产业学会副会长、湖南省农业系统工程学会常务理事。
[1]国家重点研发计划项目(部省联动)“广西喀斯特地区酸化耕地与主要作物产能提升综合技术与应用”(SQ2023YFD1900076),课题二“酸化瘠薄旱地综合调控与产能提升关键技术及产品”,2023.11~2027.12;
[2] 国家自然科学基金区域联合重点项目“ 西南喀斯特关键带土壤有机碳形成与稳定性对水热变化的响应机制”(U22A20560),2023.01~2026.12;
[3] 中国科学院定点帮扶项目“环江农林产业与石漠化治理模式转型升级示范应用”(KCXFZJ-DDBF-202403),2024.01~2026.12;
[4] 中国科学院乡村振兴项目“环江县农业高质量绿色发展模式及乡村振兴示范村创建”(KFJ-XCZX-202303),2023.01~2025.12;
[5] 广西重点研发计划项目“漓江流域柑橘园生态经济协同提升关键技术研发与示范”( 桂科AB22080097),2022.07~2025.06;
[6] 广西产业技术研究院广西重大产业技术创新项目“喀斯特石漠化治理道地中药材创新研发中心”(CYY-HT2023-JSJJ-0038),2023.12~2025.11。
1.He, X., Wang, K., Zhang, W., Chen, Z., Zhu, Y. & Chen, H. (2008). Positive correlation between soil bacterial metabolic and plant species diversity and bacterial and fungal diversity in a vegetation succession on Karst. Plant and Soil, 307, 123-134.
2.He, X., Su, Y., Liang, Y., Chen, X., Zhu, H. & Wang, K. (2012). Land reclamation and short-term cultivation change soil microbial communities and bacterial metabolic profiles. Journal of the Science of Food and Agriculture, 92, 1103-1111.
3.Xiao, W., Feng, S., Liu, Z., Su, Y., Zhang, Y., He, X. et al. (2017). Interactions of soil particulate organic matter chemistry and microbial community composition mediating carbon mineralization in karst soils. Soil Biology & Biochemistry, 107, 85-93.
4.Feng, S., Huang, Y., Ge, Y., Su, Y., Xu, X., Wang, Y. He, X., et al. (2016). Variations in the patterns of soil organic carbon mineralization and microbial communities in response to exogenous application of rice straw and calcium carbonate. Science of the Total Environment, 571, 615-623.
5.Xiao, D., He, X., Wang, G., Xu, X., Hu, Y., Chen, X. et al. (2022a). Network analysis reveals bacterial and fungal keystone taxa involved in straw and soil organic matter mineralization. Applied Soil Ecology, 173.
6.Xiao, D., He, X., Zhang, W., Cheng, M., Hu, P. & Wang, K. (2022b). Diazotroph and arbuscular mycorrhizal fungal diversity and community composition responses to karst and non-karst soils. Applied Soil Ecology, 170.
7.Xiao, D., He, X., Zhang, W., Hu, P., Sun, M. & Wang, K. (2022c). Comparison of bacterial and fungal diversity and network connectivity in karst and non-karst forests in southwest China. The Science of the total environment, 822, 153179-153179.
8.Liu, Q., He, X., Luo, G., Wang, K. & Li, D. (2022). Deciphering the dominant components and functions of bacterial communities for lignocellulose degradation at the composting thermophilic phase. Bioresource technology, 348, 126808-126808.
9.Liu, Q., He, X. & Li, D. (2023). Unearthing the mechanisms underlying calcium carbonate therapies for eliminating pathogens during composting. Chemical Engineering Journal, 451.
10.Xiao, D., Chen, Y., He, X., Xu, Z., Bai, S.H., Zhang, W. et al. (2021). Temperature and precipitation significantly influence the interactions between arbuscular mycorrhizal fungi and diazotrophs in karst ecosystems. Forest Ecology and Management, 497.
11.Xiao, D., He, X., Zhang, W., Hu, P., Sun, M. & Wang, K. (2022d). Microbiological mechanism underlying vegetation restoration across climatic gradients in a karst ecosystem. Land Degradation & Development, 33, 3245-3259.
12.Xiao, D., Huang, Y., Feng, S., Ge, Y., Zhang, W., He, X. et al. (2018). Soil organic carbon mineralization with fresh organic substrate and inorganic carbon additions in a red soil is controlled by fungal diversity along a pH gradient. Geoderma, 321, 79-89.
13.Deng, S., Zheng, X., Chen, X., Zheng, S., He, X., Ge, T. et al. (2021). Divergent mineralization of hydrophilic and hydrophobic organic substrates and their priming effect in soils depending on their preferential utilization by bacteria and fungi. Biology and Fertility of Soils, 57, 65-76.
14.Xiao, D., Che, R., Liu, X., Tan, Y., Yang, R., Zhang, W. He, X. (2019a). Arbuscular mycorrhizal fungi abundance was sensitive to nitrogen addition but diversity was sensitive to phosphorus addition in karst ecosystems. Biology and Fertility of Soils, 55, 457-469.
15.Xiao, D., Liu, X., Yang, R., Tan, Y., Zhang, W., He, X. et al. (2020b). Nitrogen fertilizer and Amorpha fruticosa leguminous shrub diversely affect the diazotroph communities in an artificial forage grassland. Science of the Total Environment, 711.
16.Xiao, D., Tan, Y., Liu, X., Yang, R., Zhang, W., He, X. et al. (2020c). Responses of soil diazotrophs to legume species and density in a karst grassland, southwest China. Agriculture Ecosystems & Environment, 288.
17.Xiao, D., Xiao, L., Che, R., Tan, Y., Liu, X., Yang, R. et al. (2020d). Phosphorus but not nitrogen addition significantly changes diazotroph diversity and community composition in typical karst grassland soil. Agriculture Ecosystems & Environment, 301.
18.Xiao, D., Xiao, S., Ye, Y., Zhang, W., He, X. & Wang, K. (2019c). Microbial biomass, metabolic functional diversity, and activity are affected differently by tillage disturbance and maize planting in a typical karst calcareous soil. Journal of Soils and Sediments, 19, 809-821.
19.Xiao, D., Ye, Y., Xiao, S., Zhang, W., He, X. & Wang, K. (2019e). Effects of tillage on CO2 fluxes in a typical karst calcareous soil. Geoderma, 337, 191-201.
20.Zheng, S., Xia, Y., Hu, Y., Chen, X., Rui, Y., Gunina, A. et al. (2021). Stoichiometry of carbon, nitrogen, and phosphorus in soil: Effects of agricultural land use and climate at a continental scale. Soil & Tillage Research, 209.
21.邓成华, 吴龙龙, 张雨婷, 乔航, 刘兴元, 胡亚军, 何寻阳 et al. (2019). 不同林龄油茶人工林土壤-叶片碳氮磷生态化学计量特征. 生态学报. 39, 9152-9161.
22.冯书珍, 苏以荣, 秦新民, 肖伟, 葛云辉 & 何寻阳 (2013). 喀斯特峰丛洼地土壤剖面微生物特性对植被和坡位的响应. 生态学报. 33, 3148-3157.
23.冯书珍, 苏以荣, 张伟, 陈香碧 & 何寻阳 (2015). 坡位与土层对喀斯特原生林土壤微生物生物量与丰度的影响. 环境科学. 36, 3832-3838.
24.何寻阳, 苏以荣, 梁月明, 杨珊 & 王克林 (2010). 喀斯特峰丛洼地不同退耕模式土壤微生物多样性. 应用生态学报. 21, 317-324.
25.何寻阳, 王克林, 徐丽丽, 陈洪松 & 张伟 (2008). 喀斯特地区植被不同演替阶段土壤细菌代谢多样性及其季节变化. 环境科学学报. 2590-2596.
26.何寻阳, 王克林, 于一尊, 张伟 & 陈志辉 (2009). 岩溶区植被和季节对土壤微生物遗传多样性的影响. 生态学报. 29, 1763-1769.
27.梁月明, 苏以荣, 何寻阳 & 陈香碧 (2017a). 岩性对喀斯特灌丛土壤固氮菌与丛枝菌根真菌群落结构及丰度的影响. 环境科学. 38, 1253-1261.
28.梁月明, 苏以荣, 何寻阳 & 陈香碧 (2018). 岩溶区典型灌丛植物根系丛枝菌根真菌群落结构解析. 环境科学. 39, 5657-5664.
29.梁月明, 苏以荣, 何寻阳, 陈香碧 & 胡亚军 (2017b). 喀斯特灌丛土壤丛枝菌根真菌群落结构及丰度的影响因子. 环境科学. 38, 4828-4835.
30.刘璐, 何寻阳, 杜虎 & 王克林 (2017). 喀斯特土壤固氮微生物群落与植被、土壤的关系. 生态学报. 37, 4037-4044.
31.刘璐, 何寻阳, 谢强 & 王克林 (2015). 桂西北喀斯特常见豆科植物根瘤菌的遗传多样性. 应用生态学报. 26, 3663-3669.
32.肖伟, 苏以荣, 梁士楚, 冯书珍, 葛云辉, 陈香碧 et al. (2012). 广西典型喀斯特地区深层土壤有机碳矿化及其影响因素. 生态学杂志. 31, 981-986.
33.徐学池, 黄媛, 何寻阳, 王桂红 & 苏以荣 (2019a). 土壤水分和温度对西南喀斯特棕色石灰土无机碳释放的影响. 环境科学. 40, 1965-1972.
34.徐学池, 苏以荣, 王桂红, 刘坤平, 胡亚军, 陈香碧, 何寻阳 et al. (2019b). 秸秆还田配施氮肥对喀斯特农田微生物群落及有机碳矿化的影响. 环境科学. 40, 2912-2919.
35.郑生猛, 盖爽爽, 谢强, 苏以荣, 陈香碧, 胡亚军 et al. (2016). 桂西北喀斯特峰丛洼地典型灌丛植物种间关系及环境解释. 农业现代化研究. 37, 1198-1205.