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People
Name:
PANG Ke
Education:
Ph.D.
Research direction:
 
Academic
title:
Associate Professor
Postal Code:
210008
Subject
categories:
Palaeontology
Mailing
Address:
29 East Bejing Road, Nanjing, China
E-mail:
kepang@nigpas.ac.cn

Resume:

2006.92010.7, B.S., Biology, School of Life Science, Peking University

2010.92015.7, Ph.D., Palaeontology and Stratigraphy, Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences

2015.72018.3, Research Assistant, Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences

2016.12–2017.12, Postdoc, Virginia Polytechnic Institute and State University

2018.3–, Associate Professor, Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences

Direction:

Precambrian paleontology and stratigraphy, focusing on microfossils from the Paleoproterozoic-Early Neoproterozoic strata in North China Craton and macrofossils from the Ediacaran Dengying Formation, Yangtze Gorges area.  

Achievements:
 
Publications:

()研究论文

(共同)第一作者/通讯作者论文

1. Wu C., Pang K., Chen Z., Wang X., Zhou C., Wan B., Yuan X., Xiao S., 2022. The rangeomorph fossil Charnia from the Ediacaran Shibantan biota in the Yangtze Gorges area, South China. Journal of Paleontology, in press.

2. 庞科*, 唐卿,; 万斌, 李光金, 陈雷, 袁训来, 周传明*. 2021. 华北地台胶辽徐淮地区中-新元古代地层研究进展. 地层学杂志: 45(4): 467–492. (*共同通讯作者)

3. 李光金#, 王霄鹏#, 孙云鹏, 庞科*, 万斌, 周传明. 2021. 淮南地区中-新元古界LA-ICP-MS碎屑锆石U-Pb年龄及地质意义. 地层学杂志: 45(2): 115–141. (#共同第一作者;*通讯作者)

4. Pang, K.*, Wu, C., Sun, Y., Ouyang, Q., Yuan, X., Shen, B., Lang, X., Wang, R., Chen, Z.*, Zhou, C.* 2021. New Ediacara-type fossils and late Ediacaran stratigraphy from the northern Qaidam Basin (China): paleogeographic implications. Geology, 49(10): 1160–1164 (*共同通讯作者)

5. 吴承羲, 陈哲, 庞科*,  王霄鹏, 万斌,  周传明, 袁训来. 2021. 三峡地区埃迪卡拉纪石板滩生物群定量古生物学和生态空间分析. 古生物学报, 60(1): 42–68. (*通讯作者)

6. Gan, T., Luo, T.*, Pang, K.*, Zhou, C., Zhou, G., Wan, B., Li, G., Yi, Q., Czaja, A.D., Xiao, S.* 2021. Cryptic terrestrial fungus-like fossils in the early Ediacaran Period. Nature Communications, 12: 641. (*共同通讯作者)

7. Han, C.#, Chen, L.#*, Li, G., Pang, K. *, Wang, W., Zhou, G., Yang, L., Lyu, W., Wang, K., Zhong, Z., Wu, C., Yang, F. 2021. First record of organic-walled microfossils from the Tonian Shiwangzhuang Formation of the Tumen Group in western Shandong, North China. Palaeoworld, 30(2): 208–219. (#共同第一作者;*共同通讯作者)

8. Pang, K.#*, Tang, Q.#, Wu, C., Li, G., Chen, L., Wan, B., Yuan, X., Bodnar, R.J., Xiao, S. * 2020. Raman Spectroscopy and structural heterogeneity of carbonaceous material in Proterozoic organic-walled microfossils in the North China Craton. Precambrian Research, 346: 105818. (#共同第一作者;*共同通讯作者)

9. Wang, X., Pang, K.*, Chen, Z.*, Wan, B., Xiao, S., Zhou, C., Yuan, X. 2020. The Ediacaran frondose fossil Arborea from the Shibantan limestone of South China. Journal of Paleontology, 94(6): 1034–1050. (*共同通讯作者)

10. Li, G#., Chen, L.#*, Pang, K.*, Zhou, G., Han, C., Yang, L., Lv, W., Wu, C., Wang, W., Yang, F. 2020. An assemblage of macroscopic and diversified carbonaceous compression fossils from the Tonian Shiwangzhuang Formation in western Shandong, North China. Precambrian Research, 346: 105801. (#共同第一作者;*共同通讯作者)

11. 李光金, 陈雷*, 庞科*, 汉春梅, 阳乐, 万斌, 杨锋杰. 2020. 鲁西地区寒武系李官组LA-ICP-MS碎屑锆石U-Pb年龄谱特征及其地质意义. 地层学杂志, 44(2): 115–135. (*共同通讯作者)

12. Pang, K. #*, Tang, Q. #, Wan, B., Yuan, X.-L.* 2020. New insights on the palaeobiology and biostratigraphy of the acritarch Trachyhystrichosphaera aimika: a potential late Mesoproterozoic to Tonian index fossil. Palaeoworld, 29(3): 476–489. (#共同第一作者;*共同通讯作者)

13. 周光照, 李光金, 庞科*, 汉春梅, 阳乐, 孙康, 陈雷*. 2019. LA-ICP-MS碎屑锆石U-Pb年龄与微体化石组合对佟家庄组沉积时代的约束. 地层学杂志, 43 (3): 229–242. (*共同通讯作者)

14. Li, G.#, Pang, K.#, Chen, L., Zhou, G., Han, C., Yang, L., Wang, W., Yang, F., Yin, L. 2019. Organic-walled microfossils from the Tonian Tongjiazhuang Formation of the Tumen Group in western Shandong, North China Craton and their biostratigraphic significance. Gondwana Research, 76: 260–289. (#共同第一作者)

15. Pang, K., Tang, Q., Chen, L., Wan, B., Niu, C., Yuan, X., Xiao, S. 2018. Nitrogen-fixing heterocystous cyanobacteria in the Tonian Period. Current Biology, 28, 616–622.

16. Pang, K., Tang, Q., Yuan, X., Wan, B., Xiao, S. 2015. A biomechanical analysis of the early eukaryotic fossil Valeria and new occurrence of organic-walled microfossils from the Paleo-Mesoproterozoic Ruyang Group. Palaeoworld, 24: 251–262.

17. Pang, K., Tang, Q., Schiffbauer, J.D., Yao, J., Yuan, X., Wan, B., Chen, L., Ou, Z., Xiao, S. 2013. The nature and origin of nucleus-like intracellular inclusions in Paleoproterozoic eukaryote microfossils. Geobiology, 11(6): 499–510.

18. 庞科,姚锦仙,王昊,刘松涛,李翀,吕植. 2011. 额尔古纳河流域秋季浮游植物群落结构特征. 生态学报, 31(12): 3391–3398.

其他合作研究论文

1. Sun Y, Ouyang Q, Pang K, Wu C, Chen Z, Yuan X and Zhou C, 2022. Detrital zircon geochronology and stratigraphy of the Proterozoic strata in the Olongbuluke terrane of Northwest China: Implications for the Great Unconformity. Precambrian Research, in press.

2. Gan T., Zhou G., Luo T., Pang K., Zhou M., Luo W., Wang S., Xiao S., 2022. Earliest Ediacaran speleothems and their implications for terrestrial life after the Marinoan snowball Earth. Precambrian Research, in press.

3. Lyu, D., Deng, Y., Wang, X., Ye, Y., Pang, K., Miao, L., Luo, Z., Zhang, F., Lu, Y., Deng, S., Wang, H., Zhang, S., 2022. New chronological and paleontological evidence for Paleoproterozoic eukaryote distribution and stratigraphic correlation between the Yanliao and Xiong’er basins, North China Craton. Precambrian Research, 371: 106577.

4. Ouyang, Q., Zhou, C., Pang, K., Chen, Z. 2022. Silicified Polybessurus from the Ediacaran Doushantuo Formation records microbial activities within marine sediments. Palaeoworld, 31(1): 1-13.

5. Wang, X., Wu, M., Wan, B., Niu, C., Zheng, W., Guan, C., Pang, K., Chen, Z., Yuan, X. 2021. Evolution of holdfast diversity and attachment strategies of Ediacaran benthic macroalgae. Frontiers in Earth Science, 9(1229): 783427.

6. Tang, Q., Pang, K., Li, G., Chen, L., Yuan, X., Sharma, M., Xiao, S. 2021. The Proterozoic macrofossil Tawuia as a coenocytic eukaryote and a possible macroalga. Palaeogeography, Palaeoclimatology, Palaeoecology, 576: 110485.

7. Tang, Q., Pang, K., Li, G., Chen, L., Yuan, X., Xiao, S. 2021. One-billion-year-old epibionts highlight symbiotic ecological interactions in early eukaryote evolution. Gondwana Research, 97: 22–33.

8. Wang, X., Chen, Z., Pang, K., Zhou, C., Xiao, S., Wan, B., Yuan, X. 2021. Dickinsonia from the Ediacaran Dengying Formation in the Yangtze Gorges area, South China. Palaeoworld, 30(4): 602–609.

9. Xiao, S., Chen, Z., Pang, K., Zhou, C., Yuan, X. 2020. The Shibantan Lagerst?tte: insights into the Proterozoic-Phanerozoic transition. Journal of the Geological Society, 178(1): jgs2020-135.

10. Liang, Y., Hints, O., Tang, P., Cai, C., Goldman, D., N?lvak, J., Tihelka, E., Pang, K., Bernardo, J., Wang, W. 2020. Fossilized reproductive modes reveal a protistan affinity of Chitinozoa. Geology, 48(12):1200–1204.

11. 周光照, 陈焕元, 李光金, 庞科, 王凯, 陈雷, 钟振华, 杨锋杰. 2020. 前寒武纪沉积碎屑岩中有机质壁微体化石的分析处理及观察方法. 微体古生物学报, 37(2): 115–120.

12. Ye, Q., Tong, J., Pang, K., Tian, L., Hu, J., An, Z. 2020. Fossils or sedimentary structures? Carbonaceouss spheroids from the shale of the Cryogenian Nantuo Formation in Shengnongjia area, South China. Precambrian Research, 345: 105759.

13. 阳乐, 庞科, 陈雷, 钟振华. 杨锋杰. 2020. 湖北保康白竹磷矿埃迪卡拉系陡山沱组微体化石新材料. 微体古生物学报, 37(1): 1–20.

14. Wan, B., Chen, Z., Yuan, X., Pang, K., Tang, Q., Guan, C., Wang, X., Pandey, S.K., Droser, M.L., Xiao, S. 2020. A tale of three taphonomic modes: the Ediacaran fossil Flabellophyton preserved in limestone, black shale, and sandstone. Gondwana Research, 84: 296–314.

15. Tang, Q., Pang, K., Yuan, X., Xiao, S. A one-billion-year-old multicellular chlorophyte. 2020. Nature Ecology & Evolution, 4: 543–549.

16. Wan, B., Tang, Q., Pang, K., Wang, X., Bao, Z., Meng, F., Zhou, C., Yuan, X., Hua, H., Xiao, S. 2019. Repositioning the Great Unconformity at the southeastern margin of the North China Craton. Precambrian Research, 324: 1–17.

17. Tang, Q., Pang, K., Yuan, X., Xiao, S. 2017. Electron microscopy reveals evidence for simple multicellularity in the Proterozoic fossil Chuaria. Geology, 45: 75–78.

18. Wan, B., Yuan, X., Chen, Z., Guan, C., Pang, K., Tang, Q., Xiao, S., 2016. Systematic description of putative animal fossils from the early Ediacaran Lantian Formation of South China. Palaeontology 59, 515-532.

19. Chen, L., Xiao, S., Pang, K., Zhou, C.-M., Yuan, X.-L. 2016. Are the new Ediacaran Doushantuo embryo-like fossils early metazoans? A reply. Palaeoworld, 25: 132–134.

20. Tang, Q., Pang, K., Yuan, X., Wan, B., Xiao, S. 2015. Organic-walled microfossils from the Tonian Gouhou Formation, Huaibei region, North China Craton, and their biostratigraphic implications. Precambrian Research, 266: 296–318.

21. Chen, L., Xiao, S., Pang, K., Zhou, C., Yuan, X. 2014. Cell differentiation and germ–soma separation in Ediacaran animal embryo-like fossils. Nature, 516: 238–241.

22. Wan, B., Xiao, S., Yuan, X., Chen, Z., Pang, K., Tang, Q., Guan, C., Maisano, J.A. 2014. Orbisiana linearis from the early Ediacaran Lantian Formation of South China and its taphonomic and ecological implications. Precambrian Research, 255: 266–275.

23. Tang, Q., Pang, K., Xiao, S., Yuan, X., Ou, Z., Wan, B. 2013. Organic-walled microfossils from the early Neoproterozoic Liulaobei Formation in the Huainan region of North China and their biostratigraphic significance. Precambrian Research, 236: 157–181.

24. Wan, B., Yuan, X., Chen, Z., Guan, C., Pang, K., Tang, Q., Rao, X. 2013. Quantitative analysis of Flabellophyton from the Ediacaran Lantian Biota, South China: Application of geometric morphometrics in precambrian fossil research. Acta Geologica Sinica (English Edition), 87(4): 905–915.

25. 万斌,关成国,周传明,孟凡巍,庞科,唐卿,饶馨. 华南埃迪卡拉系底部钾质斑脱岩的岩石地球化学特征及其地质意义. 岩石学报, 2013, 29(12): 4373–4386.

26. 王丹,陈雷,唐卿,庞科. 贵州瓮安埃迪卡拉纪陡山沱组磷块岩中具螺旋孔的微体化石.古生物学报, 2012, 51(1): 88–95.

27. 姜英,姚锦仙,庞科,王昊,刘松涛,吕植. 2010. 额尔古纳河流域秋季浮游动物群落结构特征. 北京大学学报(自然科学版), 46(6): 870–876.

 

()专著或专著章节

1. 袁训来万斌关成国陈哲周传明肖书海王伟庞科唐卿华洪. 2016. 蓝田生物群. 上海科学技术出版社上海.

 

()会议摘要或报告

1. 李光金, 庞科, 陈雷. 2020. 鲁西地区拉伸纪石旺庄组宏体碳质压膜化石研究. 中国古生物学会化石藻类专业委员会第十九次学术年会、中国古生物学会微体学分会第十一届会员代表大会暨第十八次学术年会、江苏省古生物学会2020年学术年会, 云南玉溪.

2. 万斌, 王霄鹏, 庞科, 牛长泰, 关成国, 陈哲, 袁训来. 2020. 埃迪卡拉纪早期“蓝田生物群”中疑难化石Chuarids的再研究.中国古生物学会化石藻类专业委员会第十九次学术年会、中国古生物学会微体学分会第十一届会员代表大会暨第十八次学术年会、江苏省古生物学会2020年学术年会, 云南玉溪.

3. 欧阳晴, 周传明, 庞科, 陈哲. 2020. 微体化石Polybessurus在埃迪卡拉系陡山沱组中的发现. 中国古生物学会化石藻类专业委员会第十九次学术年会、中国古生物学会微体学分会第十一届会员代表大会暨第十八次学术年会、江苏省古生物学会2020年学术年会, 云南玉溪.

4. 梁艳, Olle Hints, 唐鹏, 王文卉, Daniel Goldman, Jaak N?lvak, 蔡晨阳, 庞科, Joseph Bernardo, Erik Tihelka. 2020. 从形态差异到生殖瞬间:探索几丁虫的生物学属性. 中国古生物学会化石藻类专业委员会第十九次学术年会、中国古生物学会微体学分会第十一届会员代表大会暨第十八次学术年会、江苏省古生物学会2020年学术年会, 云南玉溪.

5. Pang K., Tang Q., Wu C. 2019. Raman Spectroscopy of Proterozoic organic-walled microfossils in North China Craton. The 1st Asian Palaeontological Congress - with celebrations on the 90th Anniversary of the Palaeontological Society of China, Beijing, China.

6. Li, G., Pang, K., Chen, L. 2019. Organic-walled microfossils from the early Neoproteorozoic Tongjiazhuang Formation in western Shandong, North China and their biostratigraphic significance. The 1st Asian Palaeontological Congress - with celebrations on the 90th Anniversary of the Palaeontological Society of China, Beijing, China.

7. Zhou G., Chen L., Li G., Pang K., Han C., Yang L., Wang K., Lv W. 2019. Constraints on the depositional age of the Tongjiazhuang Formation by LA-ICP-MS detrital zircon U-Pb age and microfossil assemblage. The 1st Asian Palaeontological Congress - with celebrations on the 90th Anniversary of the Palaeontological Society of China, Beijing, China.

8. Pang, K., Li, G., Chen, L. 2019. Organic-walled microfossils from the Lower Neoproterozoic Tongjiazhuang Formation in western Shandong, North China and their biostratigraphic significance. Estudios Geologicos-Madrid, 75, p002 (030–031). (2019 International Meeting on the Ediacaran and Ediacaran-Cambrian Transition, Guadalupe, Extremadura, Spain)

9. Wan, B., Tang, Q., Pang, K., Wang, X., Bao, Z., Meng, F., Zhou, C., Yuan, X., Hua, H., Xiao, S. 2019. The Precambrian-Cambrian boundary at the southeastern margin of the North China Craton. Estudios Geologicos-Madrid, 75, p002 (045). (2019 International Meeting on the Ediacaran and Ediacaran-Cambrian Transition, Guadalupe, Extremadura, Spain)

10. Wan, B., Wang, X., Pang, K., Niu, C., Guan, C., Chen, Z., Yuan, X. 2019. New morphological structures revealing the phylogenetic affinity of problematic fossil chuarids from the early Ediacaran Lantian biota. Acta Geologica Sinica (English Edition), 93: 276–277.

11. Pang K., Tang Q., Wan B., Yuan X., Xiao S. 2018. Heterocystous Nitrogen-fixing Cyanobacteria from the Tonian Period and their implication for geobiological feedbacks. The 5th International Paleontological Congress, Paris, France.

12. Pang K., Tang Q. 2018. Raman Spectroscopy of Proterozoic organic-walled microfossils in North China Craton. 2018 International Conference of Ediacaran and Cambrian Sciences (ICECS2018), Xi’an, China.

13. Pang K., Tang Q., Chen L., Wan B., Yuan X., Xiao S. 2017. Mat-forming heterocystous cyanobacteria from the early Neoproterozoic Liulaobei Formation, Huainan region, North China. The International Symposium on the Ediacaran–Cambrian Transition (ISECT 2017), St. John’s, Newfoundland, Canada.

14. Pang K., Chen Z., Zhou C., Yuan X., Xiao S. 2017. New observations of branching macrofossils from the Ediacaran Dengying Formation in the Yangtze Gorges Area, South China. GSA Annual Meeting 2017 (GSA), Seattle, Washington, USA.

15. Tang Q., Pang K., Chen L., Wan B., Xiao S., Zhou C., Yuan X., Hua H. 2017.  Biostratigraphic constraint on Tonian successions in eastern North China Block. GSA Annual Meeting 2017 (GSA), Seattle, Washington, USA.

16. Xiao S., Tang Q., Pang K., Bykova N., Ye Q., Yuan X. 2017. Life after the “boring billion”: The fossil record in the Tonian Period. GSA Annual Meeting 2017 (GSA), Seattle, Washington, USA. (特邀报告)

17. Xiao S., Tang Q., Pang K., Bykova N., Ye Q., Yuan X. 2017. Tonian Evolution and Geobiology. Goldschmidt 2017, Paris, France.

18. Pang K., Tang Q., Xiao S., Yuan X., Wan B., Schiffbauer James D. 2016. Unraveling biological information from early single-celled eukaryotes in the Paleo-Mesoproterozoic Ruyang Group, North China. 35th International Geological Congress, Cape Town, South Africa.

19. 万斌, 袁训来, 陈哲, 关成国, 庞科, 唐卿, 肖书海. 2016. 埃迪卡拉纪早期“蓝田生物群”中可能的后生动物化石的系统描述.中国古生物学会微体学分会第十六次学术年会、中国古生物学会化石藻类专业委员会第十七次学术年会暨和政化石论坛, 甘肃和政.

20. 万斌, 陈哲, 陈翔, 庞科, 关成国, 袁训来, 肖书海. 2015. 埃迪卡拉纪蓝田生物群和埃迪卡拉生物群中的Flabellophyton. 中国古生物学会第28届学术年会, 辽宁沈阳.

21. Tang Q., Pang K., Xiao S., Yuan X., Ou Z., Wan B. 2014. Organic-walled microfossils from the early Neoproterozoic Liulaobei Formation in the Huainan region of North China and their biostratigraphic significance. A symposium and field workshop on Ediacaran and Cryogenian Stratigraphy, Wuhan, China.

22. Wan B., Xiao S., Yuan X., Chen Z., Pang K., Tang Q., Guan C., and Maisano Jessica A. 2014. Orbisiana linearis from the early Ediacaran Lantian Formation of South China and its taphonomic and ecological implications. A symposium and field workshop on Ediacaran and Cryogenian Stratigraphy, Wuhan, China.

23. Xiao, S., Pang, K., Schiffbauer, J.D., Yuan, X. 2013. What biology can we learn from nucleus-like intracellular inclusions in Proterozoic cells? Acta Geologica Sinica (English Edition), 87(supp.): 878–879.

24. 庞科, 唐卿, 袁训来, 万斌, 陈翔. 2013. 山西永济古元古代晚期汝阳群化石新材料. 中国古生物学会第十一次会员代表大会暨第27 届学术年会, 浙江东阳.

25. 庞科, 唐卿, 肖书海, 姚锦仙, 袁训来, 万斌, 陈雷, 欧志吉.中元古代汝阳群化石细胞核状结构研究. 2012. 全国微体古生物学分会第九届会员代表大会暨第十四次学术年会, 全国化石藻类专业委员会第七届会员代表大会暨第十五次学术讨论会, 云南腾冲.

26. 万斌, 袁训来, 陈哲, 关成国, 唐卿, 庞科, 欧志吉. 2011. “蓝田生物群”中扇形藻属(Flabellophyton)的定量分析 ——几何形态测量法在前寒武纪化石研究中的应用.中国古生物学会第26届学术年会, 贵州关岭.

 

()科普文章

庞科. 2012. 火星生命探索的岩石学进展. 生物进化, 22: 47–53.

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