
姓名:赵小虎 职称:副教授/ 博士生导师
E-mail:xhzhao@mail.hzau.edu.cn
研究方向:微生物生态与植物健康、富硒功能农业
个人简介
赵小虎,博士,华中农业大学资源与环境学院副教授,博士生导师。主要从事微生物生态与植物健康、富硒功能农业等领域研究。主持国家自然科学基金、国家重点研发计划子课题、湖北省自然科学基金等各类科研项目20余项。以第一或通讯作者在Advanced Science、Soil Biology and Biochemistry、SCIENCE CHINA Life Sciences、Plant Cell & Environment、Journal of Experimental Botany等期刊发表论文70多篇,其中,SCI论文50多篇。获广东省科技进步二等奖、湖北省科技进步二等奖、华中农业大学教学成果一等奖、教学质量优秀一等奖、十大青年岗位能手等奖励/荣誉。任国际硒学会中国分会秘书长、天池英才柔性专家、湖北省环境科学学会矿区绿色低碳专委会委员、《Horticulturae》和《植物营养与肥料学报》等期刊编委。
教育/工作经历
2020.12至今 华中农业大学 博士生导师
2016.02-2017.02 英国杜伦大学 访问学者
2015.12-2020.12 华中农业大学 副教授/硕士生导师
2011.07-2015.12 华中农业大学 讲师
2008.09-2011.06 武汉大学 博士
2005.09-2008.06 华中农业大学 硕士
2001.09-2005.06 华中农业大学 本科
教学情况
【课程教学】
本科生:《生态研究法》、《分子生态学》MOOC
研究生:《生态学研究技术》、《农业面源污染与生态治理》、《高级生态学》
【主持教改项目】
1. 湖北省高校省级教学研究项目:新农科背景下农林高校生态学卓越人才培养体系的构建(2024-2026).
2. 湖北省高校省级教学研究项目:基于大学生科技创新驱动的环境生态类课程建设与改革(2017-2019).
3. 农业部“十三五”规划教材:《分子生态学》(2017-2020).
4. 华中农业大学研究生培养条件建设项目:《生态学研究技术》课程思政示范课(2024-2026).
5. 华中农业大学研究生培养条件建设项目:《农业面源污染与生态治理》课程思政示范课(2022-2023).
6. 华中农业大学研究生专业类优质示范课程建设:《农业面源污染与生态治理》(2021-2023).
7. 华中农业大学硕士专业学位研究生课程建设:《农业面源污染与生态治理》(2018-2019).
8. 华中农业大学慕课(MOOCs)课程建设:《分子生态学》(2018).
9. 华中农业大学教学改革研究项目:《分子生态学概论》课件的美化与应用(2014).
【教改论文】
1. 赵小虎, 石磊, 伍玉鹏, 姜炎彬, 邱国红. 以“基因·基金·基地”驱动生态学卓越人才培养体系的构建. 安徽农业科学, 2021, 49(9): 266-267, 270.
2. 赵小虎, 邱国红, 伍玉鹏, 姜炎彬, 刘广龙, 王昭, 唐铁军. 基于大学生科技创新驱动的环境生态类课程改革. 安徽农业科学, 2020, 48(6): 271-273.
3. 赵小虎, 刘震, 胡承孝. 高等农林院校分子生态学课程建设与教学教改探索. 安徽农业科学, 2015, 43(10): 366-368, 371.
4. 邱国红, 熊双莲, 蔡建波, 赵小虎, 石磊, 谭文峰. 农业院校环境科学专业理论教学与实践创新体系的构建. 高教学刊, 2021, 26: 27-30.
5. 姜炎彬, 伍玉鹏, 胡荣桂, 赵小虎, 赵劲松. “生态学”课程的“三元一体”实践教学体系建设探讨, 当代教育理论与实践, 2018, 10(3): 54-57.
6. 伍玉鹏, 胡荣桂, 万小琼, 赵劲松, 赵小虎, 姜炎彬, 唐铁军. 环境生态工程综合实习课程的改革与建设. 安徽农业科学, 2018, 46(34): 223-224.
7. 伍玉鹏, 王佳, 赵小虎, 谭中欣. 硕士研究生教育过程中科研实践与课程教学互动模式探索—以《现代生态学》课程为例, 安徽农业科学, 2016, 44(3): 340-341, 344.
主持科研项目
1. 国家重点研发计划子课题:土壤-植物-食品-人体健康共同体中元素硒提质增效的生态强化技术(2023-2027).
2. 湖北省自然资源厅:鄂东南土地综合整治及林耕置换耕地质量提升路径及方法(2026-2026).
3. 湖北省地质局地质科学研究院:鄂西区域硒循环的生态风险评价研究(2026-2027).
4. 企事业单位委托项目:锌硒功能农业绿色标准种植技术示范应用(2026-2030).
5. 鄂州市农业农村局:鄂州主产区主要作物测产(2026-2026).
6. 企事业单位委托项目:穗歧作物功能性专用生物有机肥开发(2025-2030).
7. 企事业单位委托项目:耕地土壤健康诊断与农田地力提升(2025-2030).
8. 新疆维吾尔自治区农业农村厅:农田土壤中微量元素赋存特征与利用(2025-2026).
9. 新疆土壤与植物生态过程重点实验室:新疆棉花根外磷素营养与促生机制及其高效施用。(2025-2026).
10. 湖北省地质局地质科学研究院:根际土壤镉形态转化时空特征及微生物驱动过程(2025-2025).
11. 包头市生态安全屏障研究中心:黄河流域历史遗留矿山污染状况进一步调查与评估(2025-2025).
12. 环境地球化学国家重点实验室:富硒高镉农田土壤硒镉形态转化的微生物驱动机制(2024-2024).
13. 武汉市卫生健康委:武汉市地铁环境微量元素与微生物的时空特征及职业呼吸暴露风险(2023-2025).
14. 国家地质试验测试中心:硒镉伴生区农田土壤硒/镉形态转化的微生物学机制(2023-2024).
15. 中国地质科学院:硒镉共生区植物根际土壤硒镉互作的生物学效应及其机制(2022-2024).
16. 企事业单位委托项目:麻城市白鸭山矿区生态环境综合治理措施评估(2023-2023).
17. 生物资源保护与利用国家重点实验室:富硒微生物资源挖掘及其在植物根际定殖机制研究(2022-2024).
18. 中国富硒产业研究院-重点项目:高硒微生物资源挖掘与利用研究(2022-2023).
19. 湖北省自然科学基金-面上项目:硒超积累植物根际关键微生物(组)挖掘及其增强植物富硒的机制(2021-2023).
20. 农业微生物学国家重点实验室:土壤硒增强油菜对菌核病抗性的根际微生物调控机制(2020-2022).
21. 中央高校基本科研业务费专项资金:硒调控下番茄类整合素蛋白(AT14A)对铬胁迫的响应(2018-2020).
22. 国家重点研发计划子课题:基于中微量元素调控的柑橘化肥农药减施技术研究与应用(2017-2020).
23. 国家自然科学基金-面上项目:农田土壤硒铬互作的生物效应及其影响机制(2016-2019).
24. 湖北省自然科学基金-面上项目:硒调控油菜菌核病根际土壤微生物区系及其效应研究(2015-2016).
25. 国家科技支撑计划子课题:城郊区农产品安全提升共性关键技术(2014-2017).
26. 中央高校基本科研业务费专项资金:硒通过线粒体活性氧途径增强油菜对核盘菌抗性(2014-2015).
27. 国家自然科学基金-青年基金:硒提高油菜对菌核病抗性的生理及分子机制(2013-2015).
28. 华中农业大学校自主创新基金:外源硒对VA菌根真菌生长的影响及其机理研究(2011-2012).
获奖及专利
【个人获奖】
2025,华中农业大学教学成果一等奖(排4)
2024,华中农业大学优秀共产党员
2024,华中农业大学“狮山硕彦计划”教学能手B2岗
2024,“天池英才”柔性专家
2023,广东省农业科学院科技进步一等奖(排5)
2021,华中农业大学教学成果二等奖(排1)
2019,湖北省高校省级教学改革研究项目结题优秀奖
2018,华中农业大学教学质量优秀一等奖
2018,华中农业大学“狮山硕彦计划”青年英才B岗
2018,湖北省科技进步奖二等奖(排7)
2017,广东省科技进步奖三等奖(排6)
2016,华中农业大学第十届“十大青年岗位能手”
2016,华中农业大学大学生课外学术科技作品竞赛优秀指导老师
2015,华中农业大学教学质量优秀三等奖
2015,华中农业大学第12届青年教师讲课竞赛院一等奖、校三等奖
2014,华中农业大学优秀班主任
2013,华中农业大学教学质量优秀二等奖
2013,华中农业大学第11届青年教师讲课竞赛院一等奖、校三等奖
2012,华中农业大学教学质量优秀三等奖
2009,广东省科技进步奖 二等奖(第8)
2009,“The 13th Mainland-Taiwan Environmental Protection Conference” Best Paper Award.
【指导学生获奖】
2025,博士生入选“中国科协青年科技人才培育工程博士生专项计划”
2025,“The 8th International Conference on Selenium in the Environment and Human Health” Outstanding Student Oral Presentation Award
2022,华中农业大学大学生创新创业“十佳作品”
2021,第十六届全国环境友好科技竞赛三等奖
2019,“The 6th International Conference on Selenium in the Environment and Human Health” Best Poster Award
2019,中国中微肥创新联盟青年英才奖
2015,第十四届“挑战杯”全国大学生课外学术科技作品竞赛三等奖
2015,湖北省第十届“挑战杯”大学生课外学术科技作品竞赛一等奖
2015,第十届“神农杯”大学生课外学术科技创新作品竞赛特等奖
2015,湖北省优秀学士学位论文
2014,第二届全国植物生产类大学生实践创新三等奖
2012至今,研究生国家奖学金(3人)
2012至今,华中农业大学优秀博士学位论文(2篇)
2012至今,华中农业大学优秀硕士学位论文(5篇)
2012至今,华中农业大学优秀学士学位论文(9篇)
【授权专利】
1. 赵小虎,雷政,王华兴,张欢,王寅. Sultr1;2基因在硒镉伴生土壤中强化作物富硒降镉的应用及育种方法2026-02-11,中国,ZL2026102005248.
2. 赵小虎,丁萃翠,何祠兴,雷政,王寅. 一种适用于研究元素迁移转化过程的淋溶装置. 2026-06-16,中国,ZL202521570210.4.
3. 赵小虎,张欢,史广宇,娄伟,严翔,胡承孝. DL-丙氨酸促铜绿假单胞菌定殖及两者协同富硒降镉的应用. 2025-02-27,中国,ZL202410550119.X.
4. 赵小虎, 杨丹丹, 胡承孝, 程勤, 周应杰, 一种适用于研究根际土壤微生物对根系分泌物影响的分根装置, 2021-4-13,中国, ZL202021800605.6.
5. 赵小虎, 贾玮, 胡承孝, 孙学成, 明佳佳, 土壤硒处理油菜秸秆溶解性有机质在防治油菜菌核病中的应用, 2020-04-10, 中国, ZL201811011637.5.
6. 赵小虎,詹婷,胡承孝,谭启玲,周应杰. 土壤与柑橘苗系统的淋溶及气体采集装置,2020-07-21,中国,ZL201921723534.1.
发表论文
【以第一或通讯作者发表的论文】
1. Lei Z.# , Li YL.#, Liao YT., Zhang H., Li QQ., Wang Y., Liu YL., Mei ZN., Zhao XH.*. Synthetic community alleviates Fusarium-induced dysbiosis and enhances bioactive metabolite accumulation in Atractylodes lancea. SCIENCE CHINA Life Sciences. 2026. https://doi.org/10.1007/s11427-026-3513-y.
2. Lei Z., Sheng JD., Huang X., Wang SP., Wang Z., Lü JL., Pan KL., Wang HX., Tang YN., Zhang H., Cai P.*, Zhao XH.*. Sultr1;2 in tomato mediates the recruitment of Streptomyces to activate selenium and passivate cadmium in rhizosphere soil. Soil Biology and Biochemistry. 2026, 220: 110210.
3. Lei Z.#, Zhang H.#, Huang X., Wang SP., Wang Y., Li YL., Liu ZY., Sheng JD., He ZY., Pan KL., Zhao XH.*. Plant development-stage specific assembly and potential functional shifts of the rhizosphere microbiome in farmland soils. Applied Soil Ecology. 2026, 218: 106732.
4. Zhang H., Huang X., Wang SP., Lei Z., Wang Y., Pan KL., Sheng JD., Zhao XH.*. Root-exuded metabolites recruit selenium transforming microbiota to enhance plant selenium acquisition. Plant, Cell & Environment. 2026, 49: 1439-1457.
5. Lei Z.#, Wang HX.#, Zhang H., Liu WJ., He ZY., Wang Z., Zhang H., Wang Y., Tang YN., Hu CX., Zhao XH.*. Sultr1;2-mediated recruitment of selenium-oxidizing bacteria promotes plant selenium uptake. Journal of Agricultural and Food Chemistry. 2025, 73, 13313–13326.
6. Lei Z., Zhang H., Liu WJ., Sheng JD., Zhang H., Wang Y., Tang YN., Wang HX., Ding CC., Qiao WQ.,Zhu YH., Yang GY., Zhang YH., Liu ZY., Zhou NY., Hu CX., Zhao XH.*. Dynamic and stable core microbiota assist plants in enriching selenium and reducing cadmium absorption. Advanced Science. 2025, e00862.
7. Cheng Q.#, Wang Y.#, Han C., Liu WJ., Fan GC., Zhang H., Lei Z., Hu CX., Zhao XH.*. Selenium: the toxicant for pathogen and pest but the guardian of soil and crop. Journal of Agricultural and Food Chemistry. 2025, 73, 11495-11514.
8. Zhang H., Zhang H., Liu WJ., Lei Z., Wang Y., Sheng JD., Wang Z., Hu CX., Zhao XH.*. DL-alanine promotes the colonization of Pseudomonas aeruginosa and their synergistic enrichment of selenium and decrease of cadmium absorption by Brassica napus. Journal of Hazardous Materials, 2025, 492: 138154.
9. Shi GY.*, Hu JY., Shi YS., Wang Q., Wu BB., Shi WL, Zhao XH.*. Impact of nitrogen-loaded biochar on soil nitrogen losses and microbial activities in acidic agricultural soils. Journal of Environmental Chemical Engineering. 2025, 13: 116431.
10. Lü JL., Han Q., Wang Z., Tao M., Hu X., Cao ML., Huang QZ., Shi MD., He ZY., Zhao XH*. Characteristics, sources, and health risks of fine particulate matter in Wuhan subway, China. Science of the Total Environment. 2025, 967, 178842.
11. Zhang H., Liang LM., Du XP., Shi GY., Wang X., Tang YN., Lei Z., Wang Y., Yi C., Hu CX., Zhao XH*. Metabolism interaction between Bacillus cereus SESY and Brassica napus contributes to enhance host selenium absorption and accumulation. Plant, Cell & Environment. 2025, 48: 2200-2220.
12. Tang YN., Zhou YJ., Wang PW., Ge LQ., Lou W., Yan X., Li SQ., Wang X., Hu CX., Zhao XH*. Selenium-mediated shaping of citrus rhizobiome for promotion in root growth and soil phosphorus activation. Journal of Agricultural and Food Chemistry. 2024, 72: 16624-16637.
13. Zhang H., Yang DD., Hu CX., Du XP., Liang LM., Wang X., Shi GY., Han C., Tang YN., Lei Z., Yi C., Zhao XH*. Bacteria from the rhizosphere of a selenium hyperaccumulator plant can improve the selenium uptake of a non hyperaccumulator plant. Biology and Fertility of Soils. 2024, 60: 987-1008.
14. Han C., Cheng Q., Du XP., Liang LM., Fan GC., Xie JT, Wang X., Tang YN., Zhang H., Hu CX., Zhao XH*. Soil selenium enhanced the resistance of oilseed rape to Sclerotinia sclerotiorum by optimizing the plant microbiome. Journal of Experimental Botany. 2024, 75(18): 5768-5789.
15. Wang Z#., Wang Y#., Lu JL.*, Li TQ., Li SQ., Nie M., Shi GY., Zhao XH*. Silicon and selenium alleviate cadmium toxicity in Artemisia selengensis Turcz by regulating the plant-rhizosphere. Environmental Research, 2024, 252, 119064.
16. Tang YN., Lou W., Yan X., Li SQ., Wang PW., Zhou YJ., Zhan T., Zhang SM., Hu CX., Wang X., Tan QL.*, Zhao XH*. The pivotal role of secondary nutrients and micronutrients in regulating fruit quality and root exudates metabolism profile of citrus. Plant and Soil. 2024, 500, 461-479.
17. Zhang H#., Nie M#., Du XP., Chen SH., Liu HL., Wu CH., Tang YN., Lei Z., Shi GY., Zhao XH*. Selenium and Bacillus proteolyticus SES increased Cu-Cd-Cr uptake by ryegrass: highlighting the significance of key taxa and soil enzyme activity. Environmental Science and Pollution Research. 2024, 31, 29113-29131.
18. He CX., Du XP., Liang LM., Wang X., Liu ZY., Xie WL., Sun J., Xie YH., Hu CX., Liu HL., Zhao XH*.Foliar spraying with synthetic community of Bacillus increases the selenium content, quality and contribution to phyllosphere microecology of pakchoi. Scientia Horticulturae. 2024, 331, 113131.
19. Fei YC., Cheng Q., Zhang H., Han C., Wang X., Li YF., Li SQ, Zhao XH*. Maleic acid 1 and Malonic acid reduced the pathogenicity of Sclerotinia sclerotiorum by inhibiting mycelial growth, Sclerotia Formation and Virulence Factors. Stress Biology. 2023, 3: 45.
20. Tang YN., Zhao YY., Zhou YJ., Li SQ., Wu CH., Shi GY., Hu CX., Zhao XH*. Se Ameliorates Cd Toxicity in Oilseed rape (Brassica napus L.) Seedlings by Inhibiting Cd Transporter Genes and Maintaining root Plasma Membrane Integrity. Bulletin of Environmental Contamination and Toxicology, 2023, 111, 42.
21. Wang Y., Hu CX., Wang X., Shi GY., Lei Z., Tang YN., Zhang H., Wuriyanghan H., Zhao XH*. Selenium-induced rhizosphere microorganisms endow salt-sensitive soybeans with salt tolerance. Environmental Research, 2023, 236, 116827.
22. Bao KM., Wang YR., Du XP., Wuriyanghan H., Wang X., Xie JT., Zhao XH*.. Comparison of selenium accumulation in edible parts of wheat and broad bean. Agronomy. 2023, 13, 1939.
23. Nie M., Cai MM., Wu CH., Li SQ., Chen SH., Shi GY., Wang X., Hu CX., Tang YN., Zhang H., Zhao XH*. Selenium-mediated Cr(VI) reduction and SeNPs synthesis accelerated Bacillus cereus SES to remediate Cr contamination. Journal of Hazardous Materials, 2023, 457, 131713.
24. Nie M., Wu CH., Tang YN., Shi GY., Wang X., Hu CX., Zhao XH*. Selenium and Bacillus proteolyticus SES synergistically enhanced ryegrass to remediate Cu-Cd-Cr contaminated soil. Enironmental Pollution. 2023, 323, 121272.
25. Zhang H., Cheng Q., Wang X., Jia W., Xie JT., Fan GC., Han C., Zhao XH*. Selenium improved phenylacetic acid content in oilseed rape and thus enhanced the prevention of Sclerotinia sclerotiorum by dimethachlon. Journal of Fungi. 2022, 8, 1193.
26. Lei Z., Li QQ., Tang YN., Zhang H., Han C., Wang X., Zhao XH*., Shi GY.*. Selenium enhanced nitrogen accumulation in legumes in soil with rhizobia bacteria. Journal of Cleaner Production. 2022, 380: 134960.
27. Shi GY.*, Hu JY., Zhang SH., Ni G., Shi WL., Hu CX., Zhao XH*. The application of exogenous Se improved the remediation efficiency of Lolium multiflorum Lam grown in nonylphenol-Cd Co-contaminated soil. Journal of Environmental Chemical Engineering. 2022, 10: 108962.
28. Yuan X.#, Li C. #, Xie J., Li K., Chen S., Yuan L., Hu C., Wang X., Zhao X*.. Combination of selenium and methyl jasmonate to control postharvest tomato gray mold by damaging the membrane system. Horticulturae. 2022, 8, 782.
29. Li CY., Hu CX., Xie JT., Shi GY., Wang X., Yuan X., Li KY., Chen SQ., Zhao XH*., Fan GC*.. Selenium combined with methyl jasmonate to control tomato gray mold by optimizing microbial community structure in plants. Journal of Fungi. 2022, 8, 731.
30. Lei Z, Zhai HL., Zhang YB., Hu CX., Bao KM., Shi GY., Wang X., Zhao XH*. Selenium promotes soil nitrogen utilization of milk vetch and ryegrass by benefiting the soil factors. Fresenius Environmental Bulletin. 2022, 31(07): 7177-7184.
31. Tang YN.#, Zhan T.#, Fan GC., Huang JH., Zhou YJ., Yuan X., Li KY., Chen SQ., Zhao XH.*, Hu CX.*. Selenium combined with chitin reduced phosphorus leaching in soil with pomelo by driving soil phosphorus cycle via microbial community. Journal of Environmental Chemical Engineering. 2022, 10: 107060.
32. Yang DD., Hu CX., Wang X., Shi GY., Li YF., Fei YC., Song YR., Zhao XH*. Microbes:A potential tool for selenium biofortification. Metallomics, 2021. 13(10): mfab054.
33. Zhan T., Hu CX., Kong QB., Shi GY., Tang YN., Zhou YJ., Guo ZY., Zhai HL., Xiao XY., Zhao XH*. Chitin combined with selenium reduced nitrogen loss in soil and improved nitrogen uptake efficiency in Guanxi pomelo orchard. Science of the Total Environment. 2021, 799, 149414.
34. Nie M., Hu CX., Shi GY., Cai MM., Wang X., Zhao XH*. Selenium restores mitochondrial dysfunction to reduce Cr-induced cell apoptosis in Chinese cabbage (Brassica campestris L. ssp. Pekinensis) root tips. Ecotoxicology and Environmental Safety. 2021, 223, 112564.
35. Ni G., Shi GY., Hu CX., Wang X., Nie M., Cai MM., Cheng Q., Zhao XH*. Selenium improved the combined remediation efficiency of Pseudomonas aeruginosa and ryegrass on cadmium-nonylphenol co-contaminated soil. Environmental Pollution. 2021, 287, 117552.
36. Zhou YJ. , Tang YN. , Hu CX., Zhan T., Zhang SM., Cai MM., Zhao XH*. Soil Applied Ca, Mg and B altered Phyllosphere and Rhizosphere Bacterial Microbiome and Reduced Huanglongbing Incidence in Gannan Navel Orange. Science of the Total Environment. 2021, 791, 148046.
37. Cai MM. #, Zhao XH.#, Wang X., Shi GY., Hu CX.*. Se changed the component of organic chemicals and Cr bioavailability in pak choi rhizosphere soil. Environmental Science and Pollution Research. 2021, 28: 67331-67342.
38. Cheng Q.#, Jia W.#, Hu CX., Shi GY., Yang DD., Cai MM., Zhan T., Tang YN, Zhou YJ, Sun XC., Zhao XH*. Enhancement and improvement of selenium in soil to the resistance of rape stem against Sclerotinia sclerotiorum and the inhibition of dissolved organic matter derived from rape straw on mycelium. Environmental Pollution. 2020, 265, 114827.
39. Zhao YY., Hu CX., Sun XC., Ming JJ., Cai MM., Jia W., Zhao XH*. Evaluation of the combination application of potassium fulvate fertilizer, organic acids and Se-Zn-Mn-Mo on reducing Cd content and improving edible quality of two vegetables grown in Cd-contaminated soil. Fresenius Environmental Bulletin, 2020, 29(8): 6500-6507.
40. Xu JY.#, Jia W.#, Hu CX., Nie M., Ming JJ., Cheng Q., Cai MM., Sun XC., Li XR, Zheng XY., Wang J., Zhao XH*. Selenium as a potential fungicide could protect oilseed rape leaves from Sclerotinia sclerotiorum infection. Environmental Pollution. 2020, 257, 113495.
41. Jia W., Hu CX., Xu JY., Ming JJ., Zhao YY., Cai MM., Sun XC., Liu XW, Zhao XH*. Dissolved organic matter derived from rape straw pretreated with selenium in soil improves the inhibition of Sclerotinia sclerotiorum growth. Journal of Hazardous Materials, 2019, 369, 601-610.
42. Liu K.#, Cai, MM.#, Hu CX., Sun XC., Cheng Q., Jia W., Yang T., Nie M., Zhao XH*. Selenium (Se) reduces Sclerotinia stem rot disease incidence of oilseed rape by increasing plant Se concentration and shifting soil microbial community and functional profiles. Environmental Pollution. 2019, 254, 113051.
43. Cai MM., Hu CX., Wang X., Zhao YY., Jia W., Sun XC., Elyamine AM, Zhao XH*. Selenium induces changes of rhizosphere bacterial characteristics and enzyme activities affecting chromium/selenium uptake by pak choi (Brassica campestris L. ssp. Chinensis Makino) in chromium contaminated soil. Environmental Pollution, 2019, 249: 716-727.
44. Cheng Q., Hu CX., Jia W., Cai MM., Zhao YY., Tang YN, Yang DD., Zhou YJ, Sun XC., Zhao XH*. Selenium reduces the pathogenicity of Sclerotinia sclerotiorum by inhibiting sclerotial formation and germination. Ecotoxicology and Environmental Safety. 2019, 183: 109503.
45. Zhao YY., Hu CX., Wang X., Qing XJ., Wang P., Zhang Y., Zhang X., Zhao XH*. Selenium alleviated chromium stress in Chinese cabbage (Brassica campestris L. ssp. Pekinensis) by regulating root morphology and metal element uptake. Ecotoxicology and Environmental Safety. 2019, 173: 314-321.
46. Zhao YY., Hu CX., Wu ZC., Liu XW, Cai MM., Jia W., Zhao XH*. Selenium reduces cadmium accumulation in seed by increasing cadmium retention in root of oilseed rape (Brassica napus L.). Environmental and Experimental Botany, 2019, 158: 161-170.
47. Zhan T., Hu CX., Cai MM., Jia W., Zhao YY., Zhao XH*. Combined seed soaking and foliar application of selenium improved the quality and selenium content of radish grown in Selenium-rich soil. Fresenius Environmental Bulletin, 2019, 28(7): 5312-5319.
48. Jia W., Hu CX., Ming JJ., Zhao YY., Xin J., Sun XC., Zhao XH*. Action of selenium against Sclerotinia sclerotiorum: damaging membrane system and interfering with metabolism. Pesticide Biochemistry and Physiology, 2018, 150:10-16.
49. Cai MM, Hu CX., Zhao YY., Zhan T., Ma YF., Sun XC., Zhao XH.*. Effects of seed soaking with selenium and zinc on quality and cadmium content of radish (Raphanus Sativus L.) grown in cadmium-contaminated soil. Fresenius Environmental Bulletin, 2018, 27(12A): 8738-8746.
50. Qing XJ., Zhao XH.*, Hu CX., Wang P., Zhang Y., Zhang X., Wang PC., Shi HZ., Jia F., Qu CJ. Selenium alleviates chromium toxicity by preventing oxidative stress in cabbage (Brassica campestris L. ssp. Pekinensis) leaves. Ecotoxicology and Environmental Safety. 2015, 114: 179-189.
51. Zhao XH., Zhou PJ.*, Chen X., Li X., Ding L. Perchlorate-induced oxidative stress in isolated liver mitochondria. Ecotoxicology, 2014, 23(10):1846-1853.
52. Zhao XH., Zhou PJ.*, Chen X., Dong YL., Jiang SY., Ding YL. Microcalorimetric studies of perchlorate on heat production by hepatocytes and mitochondria isolated from Carassius auratus. Chemosphere, 2011, 83: 422-428.
53. 丁萃翠,何祠兴,雷政,王寅,朱永辉,乔婉奇,王振,吕继良,赵小虎*. 蜡样芽孢杆菌强化小白菜对外源有机硒的吸收. 植物营养与肥料学报. 2026.
54. 詹婷,胡承孝,庄木来,李潇彬,雷靖,聂敏,杨涛,赵小虎*. 平和县琯溪蜜柚主产区果园营养状况及调控建议. 农学学报,2021, 11(10): 83-89.
55. 倪刚,胡承孝,李长印,蔡苗苗,赵小虎*. 硒与重金属互作的植物根际过程研究进展. 中国农学通报, 2021, 37(1): 78-83.
56. 程勤,胡承孝,明佳佳,蔡苗苗,刘康,汤艳妮,赵小虎*. 硒对油菜根际土壤微生物的影响. 农业资源与环境学报, 2021, 38(1): 104-110.
57. 李长印,胡承孝,倪刚,赵小虎*. 马铃薯晚疫病防治措施研究进展. 中国农学通报, 2020, 36(21): 155-159.
58. 刘康,胡承孝,蔡苗苗,高林,张梦娇,巴蕾,杨丹丹,王旭,赵小虎*. 硒对铬-牛血清蛋白互作光谱特征的影响. 浙江农业学报, 2020. 32(1): 153-163.
59. 杨丹丹,胡承孝,程勤,贾玮,赵小虎*. 根肿菌与根系互作效应及其影响因素研究进展. 中国农学通报, 2019, 35(34): 77-81.
60. 王玉荣, 贾玮, 胡承孝, 陈岩, 吴志超, 詹婷, 赵小虎*, 油菜硒的富集特征及其与土壤硒的关系. 环境科学学报, 2018, 38(1): 336-242.
61. 贾玮,明佳佳,郑亚伟,贾芬,胡承孝,赵小虎*, 硒对农业植物病害防控的研究进展. 生物技术进展,2017, 7(5): 457-461.
62. 明佳佳, 胡承孝, 赵小虎*, 郑亚伟, 刘新伟, 赵泽, 赵园园, 贾玮. 硒对油菜各部位矿质元素含量及其迁移特征的影响. 浙江农业学报, 2016, 28(9): 1564-1571.
63. 刘达,涂路遥,赵小虎*,尹俊钦,吴志超,胡承孝,田小平,杨晶. 镉污染土壤施硒对植物生长及根际镉化学行为的影响. 环境科学学报,2016, 36(3): 999-1005.
64. 尹俊钦,涂路遥,赵小虎*,胡承孝,吴志超,屈婵娟,贾芬.硒对菜地土壤镉微区分布及其吸附解吸特性的影响. 环境科学学报, 2015, 35(7): 2254-2260.
65. 彭玲,贾芬,田小平,杨晶,屈婵娟,赵小虎*. 硒对油菜根尖镉胁迫的缓解作用. 环境科学学报, 2015, 35(8): 2597-2604.
66. 贾玮,吴隽,屈婵娟,胡承孝,王富华,赵小虎*.硒增强植物抗逆能力及其机理研究进展. 中国农学通报, 2015, 31(14): 171-176.
67. 钱雷晓, 胡承孝, 赵小虎*, 汪媛, 辛绢, 郑亚伟, 谭启玲, 孙学成. 镉胁迫对小白菜氮代谢和光合作用的影响. 华中农业大学学报, 2015, 34(3): 69-75.
68. 汪媛, 胡承孝, 赵小虎*, 钱雷晓, 王鹏程, 郑亚伟, 谭启玲, 孙学成. 镉污染对菜地土壤氮素转化的影响. 湖北农业科学, 2015, 54(4): 821-826.
69. 郭晓静, 胡承孝, 赵小虎*, 谭启玲, 孙学成. 不同种植模式下蔬菜吸收、累积镉的差异. 浙江农业学报, 2015, 27(8): 1387-1393.
70. 赵园园,明佳佳,胡承孝,谭启玲,孙学成,赵小虎*. 柑橘黄龙病与树体养分关系研究进展. 湖北农业科学, 2015, 54(9): 2049-2053.
71. 屈婵娟,吴志超,贾芬,田小平,杨晶,彭玲,赵小虎*.硒对镉胁迫下不同基因型油菜镉积累、光合特性及抗氧化活性的影响. 农业资源与环境学报, 2015, 32(5) : 490-497.
72. 贾芬, 朱婷, 赵小虎*, 生云鹏, 明佳佳, 贾玮, 刘苑坤. 硒对油菜菌核病菌的抑制作用. 中国农学通报, 2015, 31(25): 176-181.
73. 赵小虎,王富华*,张冲, 刘文清, 王纪阳, 刘洪标, 宋启道, 赵沛华. 汞镉铅复合污染菜地施用石灰对菜心及土壤的影响. 农业环境科学学报, 2008, 27(2): 488-492.
74. 赵小虎,王富华*,张冲, 赵沛华, 黄河清, 方圆. 南方菜地重金属污染状况及蔬菜安全生产调控措施. 农业环境与发展, 2007, 3, 91-94.
75. 赵小虎,刘文清,张冲, 王富华*, 王纪阳, 鄢珊, 赵沛华, 罗红辉. 蔬菜种植前施用石灰对土壤中有效态重金属含量的影响. 广东农业科学, 2007, 7, 47-49.
76.赵小虎, 陈翠莲, 焦春香, 甘莉, 鲁剑巍*. 不同油菜菌核病敏感性差异的生理生化特性研究. 华中农业大学学报, 2006, 25(5): 488-492.
人才培养
1. 指导国家级/省级大学生创新创业训练项目、本科生创新基金项目15项。
2. 每年培养本科毕业生3-4人。
3. 已培养毕业硕士22人、博士5人;在读博士3人(留学生1人)、硕士12人。
欢迎具有生物技术、微生物学、农业资源与环境等相关专业背景的同学报考!