從事研究
主要從事新生代古植物學、植被演化方面的研究。先後承擔完成了國家自然基金項目、雲南省基礎研究項目、中國科學院西部之光項目等4項;在國內外核心刊物上發表學術論文60餘篇,其中SCI刊物上發表50餘篇。獲得雲南省科學技術一等獎(2023年)。
在新生代古植物學方面取得了突出成績,主要包括以下幾個方面:
(1)在雲南文山植物群的工作,表明其為我國古近紀多樣性最豐富的植物群,為西南喀斯特植被演化研究提供了科學依據。
(2) 在中南半島地區發現並報導了一系列新生代化石,填補了該地研究的空白,初步構建了中南半島新生代植被演化的框架。
(3)在青藏高原進行的一系列古植物學與古環境學研究,揭示了高原新生代氣候的乾旱化過程與植被變遷。
(4)完善了基於葉脈結構與葉表皮特徵的數據資料,套用於新生代古植物學的尤其是對葉片的鑑定。
人物經歷
2006.9-2010.7: 鹽城工學院化學與生物工程學院製藥工程,獲工學學士學位
2010.9-2013.7: 南京林業大學學習,植物學,獲理學碩士學位
2013.9-2017.7:中國科學院西雙版納熱帶植物園,生態學,獲生態學博士學位
科研項目
近十年主持或承擔的科研項目
2018年-2020年:中國科學院“西部青年學者”項目: 滇東南植物區系中若干類群的地史演變,項目負責人,經費15萬元
2019年-2021年:國家自然科學基金青年項目: 越南橫蒲(Hoanh-Bo)漸新世植物群的研究,項目負責人,經費28萬元
2019年-2022年:雲南省基礎研究項目面上項目: 滇東南植物區系中重要類群的新生代地史演變,經費10萬元
2024年-2027年:雲南省基礎研究項目面上項目: 滇東南岩溶植被的新生代地史演化,經費10萬元
社會兼職
中國古生物學會古植物學分會,理事(2023年~現在)
中國林學會櫟類分會,理事(2023年~現在)
獲獎情況
2023年獲雲南省科學技術一等獎(排名第4):中國西南植物多樣性演化及其驅動因素
主要論著
參加編寫的主要論著:
1. 鄧濤,王偉銘,黃健等著.2024年.中國新近紀地層及標誌化石圖集.杭州:浙江大學出版社.
學術論文
近十年發表主要學術論文
1. Huang, J.*, Spicer, R.A., Li, S.-F., Liu, J., Do, T.V., Nguyen, H.B., Zhou, Z.-K., Su, T., 2022. Long-term floristic and climatic stability of northern Indochina: Evidence from the Oligocene Ha Long flora, Vietnam. Palaeogeography, Palaeoclimatology, Palaeoecology 593, 110930.
2. Huang, J., Su, T., Li, S.-F., Wu, F.-X., Deng, T., Zhou, Z.-K., 2020. Pliocene flora and paleoenvironment of Zanda Basin, Tibet, China. Science China Earth Sciences 63, 212-223.
3. 黃健, 蘇濤, 李樹峰, 吳飛翔, 鄧濤, 周浙昆, 2020. 西藏札達盆地上新世植物群及古環境. 中國科學: 地球科學 50, 220-232.
4. Huang, J., Su, T., Jia, L.-B., Spicer, T., Zhou, Z.-K., 2018. A fossil fig from the Miocene of southwestern China: Indication of persistent deep time karst vegetation. Review of Palaeobotany and Palynology 258, 133-145.
5. Huang, J., Shi, G.-L., Su, T., Zhou, Z.-K., 2017. Miocene Exbucklandia (Hamamelidaceae) from Yunnan, China and its biogeographic and palaeoecologic implications. Review of Palaeobotany and Palynology 244, 96-106.
6. Huang, J., Su, T., Lebereton-Anberrée, J., Zhang, S.-T., Zhou, Z.-K., 2016. The oldest Mahonia (Berberidaceae) fossil from East Asia and its biogeographic implications. Journal of plant research 129, 209-223.
7. Thongsangtum, N., Huang, J. *, Li, S.-F., Thasod, Y., Su, T., 2023. Calophyllum (Calophyllaceae) from late Oligocene–Early Miocene of Li Basin, northern Thailand and its biogeographic and paleoclimatic implications. Palaeoworld, in press.
8. Nguyen, H.B., Huang, J.*, Do, T.V., Nguyen, H.M.T., Li, S.-F., Nguyen, M.T., Doan, H.D., Zhou, Z.-K., Spicer, R.A., Su, T.*, 2024. Monsoon influence on plant diversity in northern Indochina: Evidence from the late Miocene Yen Bai flora, northern Vietnam. Palaeogeography, Palaeoclimatology, Palaeoecology 634, 111925.
9. Nguyen, H.B., Huang, J. *, Van Do, T., Srivastava, G., Nguyen, H.M.T., Li, S.-F., Chen, L.-L., Nguyen, M.T., Doan, H.D., Zhou, Z.-K., Su, T.*, 2023. Pod fossils of Albizia (Fabaceae: Caesalpinioideae) from the late Miocene of northern Vietnam and their phytogeographic history. Review of Palaeobotany and Palynology 308, 104801.
10. Del Rio, C., Huang, J. *, Stull, G.W., Allemand, R., Zhou, Z.-K., Su, T.*, 2022. First macrofossil record of Icacinaceae in East Asia (early Oligocene, Wenshan Basin) and its ecological implications. Journal of Systematics and Evolution 60, 445-455.
11. Nguyen, H.B., Huang, J.*, Van Do, T., Jia, L.-B., Nguyen, H.M.T., Doan, H.D., Li, S.-F., Zhou, Z.-K., Su, T.*, 2022. First pod record of Mucuna (Papilionoideae, Fabaceae) from the late Miocene of the Yen Bai Basin, northern Vietnam. Review of Palaeobotany and Palynology 298, 104592.
12. 趙弈善, 宋艾, 鄧煒煜東, 黃健*, 蘇濤, 2023. 雲南景谷早中新世翅子樹屬葉片化石的發現及其古生態和植物地理學意義. 第四紀研究 43, 884-898.
13. Li, W.-C., Huang, J. *, Chen, L.-L., Spicer, R.A., Li, S.-F., Liu, J., Gao, Y., Wu, F.-X., Farnsworth, A., Valdes, P.J., Zhou, Z.-K., Su, T.*, 2022. Podocarpium (Fabaceae) from the late Eocene of central Tibetan Plateau and its biogeographic implication. Review of Palaeobotany and Palynology 305, 104745.
14. Song, A., Liu, J., Liang, S.-Q., Van Do, T., Nguyen, H.B., Deng, W.-Y.-D., Jia, L.-B., Del Rio, C., Srivastava, G., Feng, Z., Zhou, Z.-K., Huang, J. *, Su, T., 2022. Leaf fossils of Sabalites (Arecaceae) from the Oligocene of northern Vietnam and their paleoclimatic implications. Plant Diversity 44, 406-416.
15. Tian, Y.-M., Huang, J. *, Su, T., Zhang, S.-T., 2021. Early Oligocene Itea (Iteaceae) leaves from East Asia and their biogeographic implications. Plant Diversity 43, 142-151.
16. 周浙昆, 黃健, 丁文娜, 2017. 若干重要地質事件對中國植物區系形成演變的影響. 生物多樣性 25, 123.
17. Aung, A.T., Huang, J., Van Do, T., Song, A., Liu, J., Zhou, Z.-K., Su, T., 2020. Three new fossil records of Equisetum (Equisetaceae) from the Neogene of south-western China and northern Vietnam. PhytoKeys 138, 3-15.
18. Del Rio, C., Huang, J., Liu, P., Deng, W.-Y.-D., Spicer, T.E.V., Wu, F.-X., Zhou, Z.-K., Su, T., 2021. New Eocene fossil fruits and leaves of Menispermaceae from the central Tibetan Plateau and their biogeographic implications. Journal of Systematics and Evolution 59, 1287-1306.
19. Ding, W.-N., Huang, J., Su, T., Xing, Y.-W., Zhou, Z.-K., 2018. An early Oligocene occurrence of the palaeoendemic genus Dipteronia (Sapindaceae) from Southwest China. Review of Palaeobotany and Palynology 249, 16-23.
20. Hu, Q., Huang, J., Chen, Y.-F., Manchester, S.R., 2017. Mahonia fossils from the Oligocene of South China: Taxonomic and biogeographic implications. Palaeoworld 26, 691-698.
21. Jia, L.-B., Huang, J., Su, T., Spicer, R.A., Zhang, S.-T., Li, S.-F., Pan, B., Nam, G.-S., Huang, Y.-J., Zhou, Z.-K., 2021. Fossil infructescence from southwestern China reveals Paleogene establishment of Cladrastis in Asia. Review of Palaeobotany and Palynology 292, 104456.
22. Wang, T.-X., Huang, J., Ding, W.-N., Del Rio, C., Su, T., Zhou, Z.-K., 2020. Fossil involucres of Ostrya (Betulaceae) from the early Oligocene of Yunnan and their biogeographic implications. Palaeoworld 29, 752-760.
23. Wu, M.-X., Huang, J., Manchester, S.R., Tang, H., Gao, Y., Wang, T.-X., Zhou, Z.-K., Su, T., 2023. A new fossil record of Palaeosinomenium (Menispermaceae) from the Upper Eocene in the southeastern margin of the Tibetan Plateau and its biogeographic and paleoenvironmental implications. Review of Palaeobotany and Palynology 310, 104827.
24. Wu, M.-X., Huang, J., Spicer, R.A., Li, S.-F., Zhao, J.-G., Deng, W.-Y.-D., Ding, W.-N., Tang, H., Xing, Y.-W., Tian, Y.-M., Zhou, Z.-K., Su, T., 2022. The early Oligocene establishment of modern topography and plant diversity on the southeastern margin of the Tibetan Plateau. Global and Planetary Change 214, 103856.
25. Wu, M.-X., Huang, J., Su, T., Leng, Q., Zhou, Z.-K., 2020. Tsuga seed cones from the late Paleogene of southwestern China and their biogeographical and paleoenvironmental implications. Palaeoworld 29, 617-628.
26. Wu, M.-X., Huang, J., Su, T., Zhou, Z.-K., Xing, Y.-W., 2021. Fraxinus L. (Oleaceae) fruits from the early Oligocene of Southwest China and their biogeographic implications. Fossil Imprint 77, 287-298.
27. Xu, C.-L., Huang, J., Su, T., Zhang, X.-C., Li, S.-F., Zhou, Z.-K., 2017. The first megafossil record of Goniophlebium (Polypodiaceae) from the Middle Miocene of Asia and its paleoecological implications. Palaeoworld 26, 543-552.
28. Zhang, J.-W., Huang, J., D'Rozario, A., Adams, J.M., Zhou, Z.-K., 2015. Calocedrus shengxianensis, a late Miocene relative of C. macrolepis (Cupressaceae) from South China: Implications for paleoclimate and evolution of the genus. Review of Palaeobotany and Palynology 222, 1-15.
29. Zhang, Q.-Y., Huang, J., Jia, L.-B., Su, T., Zhou, Z.-K., Xing, Y.-W., 2018. Miocene Ulmus fossil fruits from Southwest China and their evolutionary and biogeographic implications. Review of Palaeobotany and Palynology 259, 198-206.
30. Su, T., Farnsworth, A., Spicer, R., Huang, J., Wu, F.-X., Liu, J., Li, S.-F., Xing, Y.-W., Huang, Y.-J., Deng, W.-Y.-D., 2019a. No high tibetan plateau until the neogene. Science advances 5, eaav2189.
31. Su, T., Spicer, R.A., Li, S.-H., Xu, H., Huang, J., Sherlock, S., Huang, Y.-J., Li, S.-F., Wang, L., Jia, L.-B., 2019b. Uplift, climate and biotic changes at the Eocene–Oligocene transition in south-eastern Tibet. National Science Review 6, 495-504.
32. Su, T., Spicer, R.A., Wu, F.-X., Farnsworth, A., Huang, J., Del Rio, C., Deng, T., Ding, L., Huang, Y.-J., Hughes, A., 2020. A Middle Eocene lowland humid subtropical “Shangri-La” ecosystem in central Tibet. Proceedings of the National Academy of Sciences.
33. Tian, Y.-M., Spicer, R.A., Huang, J., Zhou, Z.-K., Su, T., Widdowson, M., Jia, L.-B., Li, S.-H., Wu, W.-J., Xue, L., Luo, P.-H., Zhang, S.-T., 2021. New early oligocene zircon U-Pb dates for the ‘Miocene’ Wenshan Basin, Yunnan, China: Biodiversity and paleoenvironment. Earth and Planetary Science Letters 565, 116929.
34. Kunzmann, L., Li, S.-F., Huang, J., Utescher, T., Su, T., Zhou, Z.-K., 2022. Assessment of Phytogeographic Reference Regions for Cenozoic vegetation: a case study on the Miocene flora of Wiesa (Germany). Fossil Imprint 78, 1-43.
35. Zhang, J.-W., D'Rozario, A., Wang, L., Huang, J., Li, Y., Liang, X.-Q., Zhou, Z.-K., 2023. Geographical and morphological changes of conifers in Yunnan, China during the Cenozoic in response to climatic changes. Review of Palaeobotany and Palynology 318, 104986.
36. Zhang, X.-W., Gélin, U., Spicer, R.A., Wu, F.-X., Farnsworth, A., Chen, P.-R., Del Rio, C., Li, S.-F., Liu, J., Huang, J., Spicer, T.E.V., Tomlinson, K.W., Valdes, P.J., Xu, X.-T., Zhang, S.-T., Deng, T., Zhou, Z.-K., Su, T., 2022. Rapid Eocene diversification of spiny plants in subtropical woodlands of central Tibet. Nature Communications 13, 3787.
37. Linnemann, U., Su, T., Kunzmann, L., Spicer, R.A., Ding, W.-N., Spicer, T.E.V., Zieger, J., Hofmann, M., Moraweck, K., Gärtner, A., Gerdes, A., Marko, L., Zhang, S.-T., Li, S.-F., Tang, H., Huang, J., Mulch, A., Mosbrugger, V., Zhou, Z.-K., 2017. New U-Pb dates show a Paleogene origin for the modern Asian biodiversity hot spots. Geology 46, 3-6.
38. Xiao, S.-M., Li, S.-F., Huang, J., Wang, X.-J., Wu, M.-X., Karim, R., Deng, W.-Y.-D., Su, T., 2024. Influence of climate factors on the global dynamic distribution of Tsuga (Pinaceae). Ecological Indicators 158, 111533.
39. Liu, G.-N., Ma, D.-K., Xu, C., Huang, J., Ge, B.-J., Luo, Q., Wei, Y., Liu, B.-B., 2023. Malus includes Docynia (Maleae, Rosaceae): evidence from phylogenomics and morphology. PhytoKeys 229, 47-60.陳馥艷, 游旨價, 張秋月, 黃健, 星耀武, 2023. 小檗科鬼臼亞科多樣性格局的演化歷史和成因. 生物多樣性 31, 23100.
40. 丁洪波, 周仕順, 李劍武, 申健勇, 馬興達, 黃健, 宋鈺, 文雪梅, 雷鳴, 土艷麗, 星耀武, 譚運洪, 2022. 中國西藏種子植物區系新資料. 生物多樣性 30, 22085.
41. 周浙昆, 劉佳, 陳琳琳, Spicer, R.A., 李樹峰, 黃健, 張世濤, 黃永江, 賈林波, 胡瑾瑾, 蘇濤, 2022. 西藏新生代植物近十年來的重要發現、認識及其意義. 中國科學: 地球科學 53, 193-215.