教育及工作经历
2020年5月至今,西南大学资源环境学院,教师;
2014年7月至2020年1月,德国弗莱堡大学,森林植物和树木生理研究所,博士后及专职科研人员;
2001年7月至2020年4月,西北农林科技大学,教师;
2009年7月至2013年6月, 德国弗莱堡大学,森林生态学,博士;
2006年7月至2008年12月,芬兰东芬兰大学和德国弗莱堡大学,欧洲林学和森林生态学,获双硕士学位;
2004年9月至2008年6月,西北农林科技大学,林木遗传育种,硕士。
学术兼职 中国林学会森林生态分会,理事。
主持科研项目
1、重庆市科技局,逆境胁迫下林木分子生物生理学研究,cstc2021ycjh-bgzxm0002,2021.05-2024.04,主持;
2、Bundesanstalt fuer Landwirtschaft und Ernaehrung (BLE),Germany (德国联邦食品农业部), WAHYKLAS: Waldhygienische Anpassungsstrategien fuer das steigende Potential von Schadorganismen in vulnerablen Regionen unter Beruecksichtigung von Klimawandel und zunehmenden Restriktionen, 2014.07-2019.06, 28WC403105,主持;
3、陕西省政府引进人才专项,白杨氮分配和光合特性对干旱胁迫的抗逆生理机制研究,Z111021507,2014.01-2016.12,主持;
4、国家自然科学基金,转gsh1基因杨增强重金属镉富集的分子生理调控机制,31470618,2015.01-2017.12,主研。
代表性学术成果 (*:Corresponding author; #: Equal contribution)
1. Hu B#, Hänsch R#, Grunau K, Hohtanz L, Kucklick M, Grünig N, Hänsch VG, Liu R, Peng T, Wiebicke M, Sarhangi Fard I, Messerer M, Gädeke F, Stradal TEB, Milatz M, Hertweck C, Engelmann S, Rennenberg H, and Oliphant KD. (2026). Symbiotic peptides modulate rhizobial physiology without terminal differentiation. Science Advances, 12(26):eaed2816.
2. Wang JH, Ngaba MJY, Rennenberg H, and Hu, B.*. (2026). Biochar application affects respiration and concomitant biological activities in agricultural soils: A global meta-analysis, Pedosphere, https://doi.org/10.1016/j.pedsph.2026.01.019
3. Peng, T., Wang, H., Liu, R., Xia, Z., Jia, J., Xue, C., Hu, B.*, and Rennenberg, H. (2026). Physiological responses of Robinia pseudoacacia L. of different origins to soil nitrogen supply. Plant Biology, 28.
4. Hui QL, Emmanouil F, Rennenberg H, and Hu B.*. (2026). The significance of microbial-root symbioses for the salt tolerance of N2-fixing plants. Plant Stress, 19, 101212.
5. Peng T, Rennenberg H, and Hu, B.*. (2026). Response of nitrogen-fixing plant symbioses to changing temperature. Journal of Integrative Plant Biology, 68, 2658-2672.
6. Ngaba MJY, Mgelwa AS, Ibrahim MM, Rennenberg H, and Hu, B.*. (2026). Biochar amendments mitigate soil greenhouse gas emissions by shifted soil properties, enzyme activities, and nitrogen cycling processes. Carbon Research,5, 14.
7. Hu, B.*, Liu R, Ramm E, Peng T, Dannenmann D, Chen Zh, Zou TT, Shi XJ, Chen XP, Haensch R, Schloter M, and Rennenberg H. (2025d). Impaired sustainability of thawing permafrost peatland ecosystems by Siberian alder colonization. Current Biology, 35: 5683-5695.e5.
8. Zhang RJ, Liu R, Hui QL, Li SM, Rennenberg H, and Hu, B.*. (2025). Phosphorus availability affects growth and physiological traits of Robinia pseudoacacia in mixed cultivation with Siberian alder (Alnus hirsuta). Plant Physiology and Biochemistry, 229(Pt C):110595.
9. Liu Z, Hu, B.*#, Flemetakis E, Haensch R, Franken P, and Rennenberg H. (2025). Convergent evolution and adaptive diversification of root symbioses. Biological Reviews of the Cambridge Philosophical Society, doi: 10.1111/brv.70077.
10. Zhao M, Liu Z, Hu Y, Yi S, Zhang Y, and Hu, B.*, Shi X, Rennenberg H. (2025) Efficient photosynthesis and economic water use of citrus leaves depend on hybrid, cultivar and leaf type. Frontiers in Plant Science, 16:1536703.
11. Heine, P.A., Nosenko, T., Kistner, S., Oliphant, K.D., Hanke-Uhe, M., Shahid, A., Hu, B., Kucklick, M., Lehmler, N., Becker, M., Goerke, N., Korn, J., Linke, T., Meier, D., Perl, A., Polten, S., Priess, V., Schäckermann, D., Schubert, M., Schumacher, J., Winkler, J.B., Engelmann, S., Rennenberg, H., Schnitzler, J.-P., Dübel, S., Hust, M., Hänsch, R. and Kaufholdt, D. (2026), Phage display derived antibodies against antimicrobial peptide FsPDF2 reveal stress response in European Beech. Plant Biotechnology Journal, 24: 1950-1965.
12. Li S, Zhang R, Hui Q, Rennenberg H, and Hu, B.*. (2025). Mixed cultivation with Siberian alder worsens the negative impact of salt exposure on growth and major physiological processes of black locust plants. Physiologia Plantarum, 177(5):e70494.
13. Hu, B.*, Liu, Z., Peng, T., Yin, M., Efrose, R.C., Flemetakis, E., Franken, P., and Rennenberg, H. (2025c). Revealing the role of actinorhizal symbioses in ecosystem nitrogen dynamics. Plant, Cell & Environment. https://doi.org/10.1111/pce.70146
14. Chen Z, Hou R, Hui Q, Liu R, Liu A, and Hu, B.*, and Rennenberg H. (2025) Petroleum exposure alters the salt tolerance and rhizosphere bacterial diversity of Hippophae rhamnoides L. Environmental Pollution, 384:126954.
15. Liu R, Oliphant KD, Xia Z, Chen Z, Hou R, Zhang R, Peng T, Hänsch R, Wang D, Rennenberg H, and Hu, B.*. (2025). Rhizobial symbiosis modulates mercury accumulation and metabolic adaptation under hydrological extremes. Journal of Hazardous Materials, 495:139141.
16. Ngaba MJY, Yemele OM, Hu, B.*, and Rennenberg H. (2025b). Biochar application as a green clean-up method: Bibliometric analysis and review of current trends and future perspectives. Biochar, 7: 83.
17. Hui Q, Li S, Chen Z, Zhang R, Hou R, Efrose R, Flemetakis E, Hu, B.*, and Rennenberg H. (2025). Inoculation With Salt-Tolerant Rhizobia and AMF Regulates K+/Na+ Homeostasis in Robinia pseudoacacia L. Alleviating Salinity. Plant, Cell & Environment, doi: 10.1111/pce.15621.
18. Yannick Ngaba MJ, Rennenberg H, and Hu, B.*. (2025a). Insights Into the Efficiency and Health Impacts of Emerging Microplastic Bioremediation Approaches. Global Change Biology, 31(5):e70226.
19. Zhao M, Liu Z, Hu Y, Yi S, Zhang Y, Hu, B.*, Shi X, and Rennenberg H. (2025). Carbon metabolism and partitioning in citrus leaves is determined by hybrid, cultivar and leaf type. Plant Physiology and Biochemistry, 224:109978.
20. Hu, B.*, Jarosch AM, Grote R, Yannick Ngaba MJ, Schnitzler JP, Kreuzwieser J, and Rennenberg H. (2025b). Ontogenetic, diurnal, and environmental impacts on VOC emission from sugarcane. Environmental International, 199:109502.
21. Hu, B.*, Messerer M, Haberer G, Lux T, Marosi V, Mayer KFX, Oliphant KD, Kaufholdt D, Schulze J, Kreth LS, Jurgeleit J, Geffers R, Hänsch R, and Rennenberg H. (2025a). Genomic and transcriptomic insights into legume-rhizobia symbiosis in the nitrogen-fixing tree Robinia pseudoacacia. New Phytologist, 246(6):2522-2536.
22. Xiong H, Hu, B, Wang J, Fu XZ, Zhang Y, Shi X, and Rennenberg H. (2025). Evergreen citrus trees exhibit distinct seasonal nitrogen remobilization patterns between mature leaves and bark. Horticulture Research, 12(7):uhaf103.
23. Liu, Z., Hu, B.*#, Flemetakis, E. et al. (2024). Interactions between plant-soil feedbacks and climate control root symbioses. Plant and Soil, 512: 261-279.
24. Xia, Z., Xue, C., Liu, R., Hui, Q., Hu, B.*, and Rennenberg, H. (2024). Lead accumulation and concomitant reactive oxygen species (ROS) scavenging in Robinia pseudoacacia are dependent on nitrogen nutrition. Plant Physiology and Biochemistry, 219: 109388.
25. Jia, J., Zhao, M., Liu, R., Xue, C., Xia, Z., Hu, B.*, and Rennenberg, H. (2024). Drought-mediated oxidative stress and its scavenging differ between citrus hybrids with medium and late fruit maturation. Plant Stress, 14: 100670.
26. Mgelwa, A.S., Yannick Ngaba, M.J., Hu, B., Gurmesa, G.A., Mwakaje, A.G., Bernadette Nyemeck, M.P., Zhu, F., Qiu, Q., Song, L., Wang, Y., Fang, Y., and Rennenberg, H. (2024c). Meta-analysis of 21st century studies shows that deforestation induces profound changes in soil characteristics, particularly soil organic carbon accumulation. Forest Ecosystems.
27. Ngaba MJY, Uwiragiye Y, Hu, B.*, Zhou J, Dannenmann M, Calanca P, Bol R, de Vries W, Kuzyakov Y, and Rennenberg H. (2024b). Effects of environmental changes on soil respiration in arid, cold, temperate, and tropical zones. Science of the Total Environment, 952:175943.
28. Ngaba MJY, Hu, B.*, and Rennenberg H. (2024a). Biochar amendment affects the microbial genetic profile of the soil, its community structure and phospholipid fatty acid contents. Science of the Total Environment, 955:176748.
29. Xue, C., Liu, R., Xia, Z., Jia, J., Hu, B.*, and Rennenberg, H. (2024). Sulfur availability and nodulation modify the response of Robinia pseudoacacia L. to lead (Pb) exposure. Journal of Hazardous Materials, 478: 135612.
30. Liu, R., Hu, B.*, Dannenmann, M., Giesemann, A., Geilfus, C., Li, C., Gao, L., Flemetakis, E., Haensch, R., Wang, D., and Rennenberg, H.(2024). Significance of phosphorus deficiency for the mitigation of mercury toxicity in the Robinia pseudoacacia L.- rhizobia symbiotic association. Journal of Hazardous Materials, 467: 133717.
31. Liu R, Hu, B.*, Flemetakis E, Dannenmann M, Geilfus CM, Haensch R, Wang D, and Rennenberg H. (2024). Antagonistic effect of mercury and excess nitrogen exposure reveals provenance-specific phytoremediation potential of black locust-rhizobia symbiosis. Environmental Pollution, 342: 123050.
32. Ngaba, Mbezele Junior Yannick, Abubakari Said Mgelwa, Geshere Abdisa Gurmesa, Yves Uwiragiye, Feifei Zhu, Qingyan Qiu, Yunting Fang, Hu, B.*, and Heinz Rennenberg. (2023). Meta-analysis unveils differential effects of agroforestry on soil properties in different zonobiomes. Plant and Soil, 496: 589-607.
33. Zhang Y, Liu R, Liu Z, Hu Y, Xia Z, Hu, B.*, and Rennenberg H. (2024). Consequences of excess urea application on photosynthetic characteristics and nitrogen metabolism of Robinia pseudoacacia seedlings. Chemosphere, 346:140619.
34. Yanping Hu, Mingjiong Zhao, Zhenshan Liu, Shilai Yi, Yueqiang Zhang, Xiaojun Shi, Hu, B.*, and Rennenberg H. (2023). Seasonal changes in gas exchange, water and macro-nutrient content differ between Citrus cultivars, Environmental and Experimental Botany, 213:105432,
35. Hu, B.*, Emmanouil Flemetakis, Zhenshan Liu, Robert Haensch, and Rennenberg H. (2023). Significance of nitrogen fixing actinorhizal symbioses for the restoration of depleted, degraded and contaminated soil. Trends in Plant Science, 28(7): 752-764
36. Hongguang Sun, Rui Liu, Hui Yuan, Mi Zhou, Zhenshan Liu, Hu, B.*, and Rennenberg H. (2023). Interaction of nitrogen availability in the soil with leaf physiological traits and nodule formation of Robinia pseudoacacia-rhizobia symbiosis depends on provenance. Plant and Soil, 490: 239-259
37. Hu, B.*#, #Liu, Z., Haensch, R., Mithöfer, A., Peters, F. S., Vornam, B., Messerer, M., Mayer, K., Wirén, N., and Rennenberg, H. (2023). Diplodia sapinea infection reprograms foliar traits of its pine (Pinus sylvestris L.) host to death. Tree Physiology, tpac137. https://doi.org/10.1093/treephys/tpac137
38. Zhou M, Liu Zhsh, Yuan H, Sun HG, *Hu B., and Rennenberg H. (2022) physiological sensitivity of Robinia pseudoacacia L.-rhizobia association to low phosphorus availability. Enviromental and Experiemntal Botany, 199, 104893.
39. Yuan H, *Hu B., Liu Zhsh, Sun HG,Zhou M and Rennenberg H. (2022) Physiological responses of black locust-rhizobia symbiosis to water stress. Physiologia Plantarium, https://doi.org/10.1111/ppl.13641
40. Elisabeth R.,... Hu B., et al. (2022) A review of the importance of mineral nitrogen cycling in the plant-soil-microbe system of permafrost-affected soils—changing the paradigm. Environmental Research Letters, 17, 013004.
41. Xiong H, Ma H, Zhao H, Yang L, Hu B, Wang J, Shi X, Zhang Y, and Rennenberg H. Integrated physiological, proteome and gene expression analyses provide new insights into nitrogen remobilization in citrus trees. (2022) Tree Physiology, 42:1628-1645. https://doi: 10.1093/treephys/tpac024
42. *Hu., B., Mithöfer, A., Reichelt, M., Eggert, K., Peters, F.S., Ma, M., Schumacher, J., Kreuzwieser, J., von Wirén, N., and Rennenberg, H. 2021. Systemic reprogramming of phytohormone profiles and metabolic traits by virulent Diplodia infection in its pine (Pinus sylvestris L.) host. Plant, Cell & Environment, 44, 2744-2764. https://doi.org/10.1111/pce.14061
43. *Hu, B., Flemetakis, E., and Rennenberg, H. 2021. Pedospheric microbial nitric oxide production challenges root symbioses. Trends in Plant Science, 26, 104-107. https://doi.org/10.1016/j.tplants.2020.11.007
44. Xiong H, Ma H, Hu B, Zhao H, Wang J, Rennenberg H, Shi X, and Zhang Y. (2021) Nitrogen fertilization stimulates nitrogen assimilation and modifies nitrogen partitioning in the spring shoot leaves of citrus (Citrus reticulata Blanco) trees. Journal of Plant Physiology, 267:153556. https://doi: 10.1016/j.jplph.2021.153556
45. Mao, QZH., Tang, LZH., Ji, WW., Rennenberg, H., *Hu, B., and Ma, M. 2021. Elevated CO2 and soil mercury stress affect photosynthetic characteristics and mercury accumulation of rice. Ecotoxicology and Environmental Safety, 208, 111605. https://doi.org/10.1016/j.ecoenv.2020.111605
46. Ma, M., Wendehenne, D., Philippot, L. Hänsch, R., Flemetakis, E., *Hu, B., and Rennenberg, H. 2020. Physiological significance of pedospheric nitric oxide for root growth, development, and organismic interactions. Plant, Cell & Environment, 43, 2336-2354. https://doi.org/10.1111/pce.13850
47. Liu, ZhSh., *Hu, B., Bell, T.L., Flemetakis, E., and Rennenberg, H. 2020. Significance of mycorrhizal associations for the performance of N2-fixing Black Locust (Robinia pseudoacacia L.). Soil Biology & Biochemistry, 145, 107776.
48. Ramm E., *Liu Ch.Y., Wang X.W., Yue H.Y., Zhang W., Pan Y.P., Scholoter M., Gschwendtner S., Mueller C.W., Hu B., Rennenberg H., and *Dannenmann M. 2020. The Forgotten Nutrient—The Role of Nitrogen in Permafrost Soils of Northern China. Advances in Atmospheric Sciences, 37, 1-7. DOI: 10.1007/s00376-020-0027-5
49. #Du, B., #Pang, J., *#Hu, B., Allen, D. E., Bell, T. L., Pfautsch, S., ... and Rennenberg, H. 2019. N2-fixing black locust intercropping improves ecosystem nutrition at the vulnerable semi-arid Loess Plateau region, China. Science of The Total Environment, 688, 333-345.
50. Baillie, C.K., Meinen, R., Kaufholdt, D., Hänsch, S., Schmidt, N., Zwerschke, D., Kojima, M., Takebayashi, Y., Sakakibara, H., Bloem, E., Rennenberg, H., Hu, B., Mendel, R.R., and *Hänsch, R. 2019. Apoplastic peroxidases enable an additional sulphite detoxification strategy and act as first line of defence upon exposure to sulphur containing gas. Environmental and Experimental Botany, 157, 140-150.
51. Baillie, C.K., Kaufholdt, D., Meinen, R., Hu, B., Rennenberg, H., *Haensch, R. and Bloem, E. 2018. Surviving volcanic environments–Interaction of soil mineral content and plant element composition. Frontiers in Environmental Science, 6, p.52.
52. Hu, B., Jarosch, A.M., Gauder, M., Graeff-Hönninger, S., Schnitzler, J.P., Grote, R., Rennenberg, H. and *Kreuzwieser, J. 2018. VOC emissions and carbon balance of two bioenergy plantations in response to nitrogen fertilization: A comparison of Miscanthus and Salix. Environmental Pollution, 237, 205-217.
53. *Hu, B., Sakakibara, H., Kojima, M., Takebayashi, Y., Bußkamp, J., Langer, G.J., Peters F.S., Schumacher, J., Eiblmeier, M., Kreuzwieser, J. and Rennenberg, H. 2018. Consequences of Sphaeropsis tip blight disease for the phytohormone profile and anti‐oxidative metabolism of its pine host. Plant, Cell & Environment, 41(4), 737-754
54. *Hu, B., Sakakibara, H., Takebayashi, Y., Peters, F.S., Schumacher, J., Eiblmeier, M., Arab, L., Kreuzwieser, J., Polle, A. and Rennenberg, H. 2017c. Mistletoe infestation mediates alteration of the phytohormone profile and anti-oxidative metabolism in bark and wood of its host Pinus sylvestris. Tree Physiology, 37(5), 676-691.
55. *#Hu, B., #Zhou, M., Bilela, S., Simon, J., Dannenmann, M., Liu, X., Alfarraj, S., Hou, L., Chen, H., Zhang, S., Butterbach-Bahl, K. and Rennenberg, H. 2017b. Nitrogen nutrition of native and introduced forest tree species in N-limited ecosystems of the Qinling Mountains, China. Trees, 31(4), 1-14.
56. Hu, B., *Zhou, M., Dannenmann, M., Saiz, G., Simon, J., Bilela, S., Liu, X., Hou, L., Chen, H., Zhang, S. and Butterbach-Bahl, K., Rennenberg, H. 2017a. Comparison of nitrogen nutrition and soil carbon status of afforested stands established in degraded soil of the Loess Plateau, China. Forest Ecology and Management, 389, 46-58.
57. *Hu, B., Simon, J., Günthardt-Goerg, M.S., Arend, M., Kuster, T.M. and Rennenberg, H. 2015. Changes in the dynamics of foliar N metabolites in oak saplings by drought and air warming depend on species and soil type. PloS ONE, 10(5), p.e0126701.
58. Hu, B., *Simon J., and Rennenberg, H. 2013. Drought and air warming affect the species-specific levels of stress-related foliar metabolites of three oak species on acidic and calcareous soil. Tree Physiology, 33, 489-504.
59. Hu, B., *Simon, J., Kuster, T.M., Arend, M., Siegwolf, R., and Rennenberg, H. 2013. Nitrogen partitioning in oak leaves depends on species, provenances, climate conditions and soil type. Plant Biology, 15(Suppl.1), 198-209.
60. *Kuster, T.M., Schleppi, P., Hu, B., Schulin R., and Günthardt-Goerg, M.S. 2013. Nitrogen dynamics in oak model ecosystems subjected to air warming and drought on two different soils. Plant Biology, 15(Suppl.1), 220-229.
61. Hoernfeldt, R., *Hu, B., and Chiriaco, M.V. 2012. Optimum timing of soil scarification for the natural regeneration of Pinus sylvestris in Central Sweden. Scandinavian Journal of Forest Research, 27, 423-431.