
性 别:男
职务职称:副教授
联系邮箱:jhtian@scau.edu.cn
办公电话:
办公地址:农学楼421室
教育背景
2008/09-2012/07山东农业大学草业科学学士
2012/09-2017/06中科院沈阳应用生态研究所土壤学博士
2015/10-2016/10Lincoln University, NZ土壤学博士
工作履历
2017.07-至今华南农业大学生态学系副教授
2023.02-2024.02The University of Adelaide访问学者
学术兼职
1,中国土壤学会青年工作委员会委员、中国植物营养与肥料学会养分循环专业委员会委员、Organic Phosphorus Meeting 2023国际学术委员会委员、热区石漠化山地绿色高效农业科技创新联盟理事;
2,Plant Soil编委(Section Editor,2022至今)、Agriculture Ecosystems & Environment客座编辑(Guest Editor,2024至今)、Soil Use and Management副编辑(Associate Editor,2025至今)、Agriculture Environment and Sustainability青年编委(2025-2027)、应用生态学报青年编委(2023至今)、土壤通报青年编委(2022至今);
3,Global Biogeochemical Cycles、Soil Biology and Biochemistry、Agriculture Ecosystems & Environment、Geoderma、Plant Soil、应用生态学报、土壤通报等期刊审稿人。
研究领域
主要研究领域为农田土壤氮磷循环过程、机制与调控,围绕南方红黄壤、喀斯特石漠化土壤结构性差、养分瘠薄等问题,研究土壤调理剂(生物质炭)、多样化种植模式(轮间作)等调控氮磷循环的土壤物理-化学-生物学关键过程与机制,构建典型中低产田土壤培育与产能协同提升技术模式。
奖励与荣誉
1,中国植物营养与肥料学会硕士学位论文优秀指导教师(2025年度)
2,华南农业大学优秀研究生学位论文指导教师(2023年度)
3,资源环境学院第五届青年教师教学基本功比赛二等奖
4,2018、2019、2021、2024年度先进工作者
主持项目
近年来主持国家自然科学基金、广东省自然科学基金、农业农村部部门预算项目子课题、广州市基础与应用基础研究项目等7项,主要参加国家自然科学基金、国家重点研发计划子课题等3项。
1,国家自然科学基金面上项目:不同基因型大豆与玉米间作调控红壤团聚体形成与磷周转的根际过程(42477337),主持,2025.01 - 2028.12
2,国家自然科学基金青年项目:生物炭调控土壤有机磷矿化与作物磷吸收的机理研究(41807084),主持,2019.01-2021.12.
3,广东省自然科学基金面上项目:玉米-大豆间作对根际土壤团聚体结构及其磷形态周转的影响机制(2025A1515010955),主持2025.01-2027.12
4,广东省自然科学基金面上项目:施氮水平调控玉米/大豆间作系统土壤磷转化的微生物过程研究(2022A1515011034),主持2022.01-2024.12
5,广东省自然科学基金博士启动项目:生物炭影响红壤有机磷周转的微生物学机理研究(2018A030310214),主持,2018.05-2020.12
6,农业农村部部门预算项目子课题:“滇桂黔石漠化地区特色作物产业发展关键技术集成示范(H2019193),主持,2019.01-2021.12.
7,广州市基础与应用基础研究项目:甘蔗-大豆间作对土壤有机磷周转与作物磷利用的影响机理(202102020390),主持2021.04-2023.03
学术成果
累计发表学术论文50余篇,其中第一和通讯作者发表论文20余篇,总引用1600余次,H指数23。
第一或通讯作者论文
(1)Tian Jihui, Peng Song, Wang Xiangjun, Liu Yuxuan, Cai Yixia, Cai Kunzheng, Wang Jianwu*. Reduced nitrogen input enhances phosphorus acquisition advantage in maize/soybean intercropping.Agriculture, Ecosystems & Environment. 2026; 399, 110158
(2)Tian Jihui*, Marschner Petra. Shortened co-growth durations enhance wheat phosphorus uptake and rhizosphere available phosphorus depletion under phosphorus limitation, but not in faba bean.Pedosphere. 2026; https://doi.org/10.1016/j.pedsph.2026.01.020
(3)Tian Jihui*, Lu Xing, Wang Tianqi, Zhu Xiaohui, Zhou Huiying, Tan Jinglin, He Danyu, Liang Cuiyu, Tian Jiang*. Soybean genotypes regulate soil aggregation and associated phosphorus dynamics through maize/soybean root interactions.Plant Soil. 2026; https://doi.org/10.1007/s11104-026-08405-x
(4)Deng Jinhuan, He Danyu, Zhu Xiaohui, Cai Yixia, Cai Kunzheng*,Tian Jihui*.Biochar amendment shifts bacterial keystone taxa regulating soil phosphorus dynamics.Applied Soil Ecology. 2024; 201: 105521
(5)Zhu Xiaohui, Yuan Ziwei, He Danyu,Tian Jihui*. No differences in phosphodiester-induced changes of phosphatase activities and bicarbonate-extractable inorganic phosphorus between long-term low and high phosphorus-fertilized soils.Geoderma2024; 441: 116755
(6)Tian Jihui*, Dunfield Kari, Condron Leo.Biological cycling of nitrogen and phosphorus in soils. Plant Soil. 2024;https://doi.org/10.1007/s11104-024-06601-1
(7)Peng Song, Kuang Xizhi, Cheng Hanting, Wei Kai, Cai Kunzheng,Tian Jihui*. Post agricultural succession affects the accumulation and enzymatic transformation of organic phosphorus in a karst area, southwest ChinaPlant and Soil 2023; DOI:10.1007/s11104-023-06186-1
(8)Tian Jihui#, Lu Xing#, Chen Qianqian, Kuang Xizhi, Liang Cuiyue*, Deng Lansheng, Lin Dongjiao, Cai Kunzheng, Tian Jiang*. Phosphorus fertilization affects soybean rhizosphere phosphorus dynamics and the bacterial community in karst soils.Plant and Soil 2022; 475: 137–152
(9)Tian Jihui,Wei Kai, Sun Tao, Jiang Nan*, Chen Zhenhua, Feng Jiao, Cai Kunzheng, Lijun Chen*. Different forms of nitrogen deposition show variable effects on soil organic nitrogen turnover in a temperate forest.Applied Soil Ecology 2022; 169: 104212
(10)Mao Yihang, Hafeez Abdul, Pan Taowen, Wu Chaorong, Wang Lei, Muramoto Joji, Shennan Carol, Cai Kunzheng,Tian Jihui*. Suppression of tomato bacterial wilt by anaerobic soil disinfestation and associations with production of antagonistic compounds.Plant and Soil 2022 477: 539-552
(11)Tian Jihui#*, Kuang Xizhi#, Tang Mengtian#, Chen Xiaodong, Huang Fei, Cai Yixia, Cai Kunzheng*. Biochar application under low phosphorus input promotes soil organic phosphorus mineralization by shifting bacterialphoD gene community composition.Science of The Total Environment2021; 779: 146556
(12)Tian Jihui,Rao Shuang, Gao Yang, Lu Yang, Cai Kunzheng*.Wheat straw biochar amendment suppresses tomato bacterial wilt caused byRalstonia solanacearum: Potential effects of rhizosphere organic acids and amino acids.Journal of Integrative Agriculture 2021, 19(0): 2–14
(13)Tian Jihui, Tang Mengtian, Xu Xia, Luo Shasha, Condron Leo M, Lambers Hans, Cai Kunzheng, Wang Jianwu*. Soybean (Glycine max(L.) Merrill) intercropping with reduced nitrogen input influences rhizosphere phosphorus dynamics and phosphorus acquisition of sugarcane (Saccharum officinarum).Biology and Fertility of Soils 2020, 56: 1063-1075
(14)Tian Jihui*, Boitt Gustavo, Black Amanda, Wakelin Steve, Chen Lijun, Cai Kunzheng, Condron Leo. Mass balance assessment of phosphorus dynamics in a fertilizer trial with 57 years of superphosphate application under irrigated grazed pasture.Nutrient Cycling in Agroecosystems2019; 114: 33-44
(15)Tian Jihui*, Boitt Gustavo, Black Amanda, Wakelin Steve, Condron Leo M, Chen Lijun. Accumulation and distribution of phosphorus in the soil profile under fertilized grazed pasture.Agriculture, Ecosystems & Environment 2017; 239: 228-235.
(16)Tian Jihui, Wei Kai, Condron Leo M, Chen Zhenhua, Xu Zhuwen, Feng Jiao, Chen Lijun*. Effects of elevated nitrogen and precipitation on soil organic nitrogen fractions and nitrogen-mineralizing enzymes in semi-arid steppe and abandoned cropland.Plant and Soil 2017, 417: 217–229.
(17)Tian Jihui, Wei Kai, Condron Leo M, Chen Zhenhua, Xu Zhuwen, Chen Lijun*. Impact of land use and nutrient addition on phosphatase activities and their relationships with organic phosphorus turnover in semi-arid grassland soils.Biology and Fertility of Soils 2016: 1-9.
(18)李铭恩,赖泽婷,田纪辉*.间作调控土壤团聚体结构及功能的研究进展与展望[J].应用生态学报. 2025(11). 2.
(19)袁紫微,何丹钰,唐梦天,等.生物炭配施磷肥对红壤有机磷周转与大豆磷吸收的影响[J].华南农业大学学报,2025,46(01):53-61.
(20)何丹钰,袁紫微,邓金环,蔡昆争,田纪辉*.生物炭对大豆不同生育期根际土壤磷组分、磷酸酶活性及植株磷吸收的影响[J].土壤通报,2025,56(2) : 448-456.
(21)祝晓慧,谭婧琳,周慧颖,王天琪,张兵兵,陆星,田纪辉*,梁翠月,田江.不同基因型大豆与玉米间作对土壤磷组分与作物磷吸收的影响.应用生态学报2024;DOI: 10.13287/j.1001-9332.202406.013
(22)阮文亮,彭 松,祝晓慧,崔凯荣,赵利强,揭佳惠,李瑞琦,王建武*,田纪辉*.减量施氮与间作大豆对甜玉米土壤团聚体及有机碳含量的影响.四川农业大学学报2023;41:811-819
(23)邝曦芝,邓伟明,唐乐乐,黄期,蔡昆争,田纪辉*.不同磷水平配施生物炭对土壤磷有效性的影响.应用生态学报2022,33(7):1911-1918.
(24)邓伟明,唐梦天,郭玉栋,池哲伟,黄期,邝曦芝,蔡昆争,田纪辉*.生物炭与磷肥添加对红壤团聚体及其磷组分分布的影响.土壤通报2020; 31: 2381-2389.