Benton, M. J., Xie, S. C., 2014. Defining the Discipline of Geobiology. National Science Review, 1(4): 484-485. https://doi.org/10.1093/nsr/nwu052 |
Bottjer, D. J., 2015. Geobiology Comes of Age. National Science Review, 2(1): 6. https://doi.org/10.1093/nsr/nwu053 |
Chen, X. Y., Li, B., Li, C., 2025. Chemical Weathering during the Neoproterozoic Snowball Earth Events. Earth Science, 50(3): 1048-1065 (in Chinese with English abstract). |
Chen, Z. -Q., Benton, M. J., 2012. The Timing and Pattern of Biotic Recovery Following the End-Permian Mass Extinction. Nature Geoscience, 5: 375-383. https://doi.org/10.1038/ngeo1475 |
Chen, Z. -Q., Huang, Y. G., 2022. How to Evaluate Quantitatively Collapse and Qecovery Processes of Ecosystems during and after Mass Extinctions? Earth Science, 47(10): 3827-3829 (in Chinese). |
Fang, Q., Yang, L., Qiu, X. C., et al., 2025. A New Tool for Unraveling Mineral-Microbe Interactions: Atom Probe Tomography (APT). Earth Science, 50(3): 1201-1219 (in Chinese with English abstract). |
Feng, X. Q., Chen, Z. -Q., Zhao, L. S., et al., 2025. The Evolution of Trace Fossils across the Permian-Triassic Mass Extinction in Deep Marine from the Western Qinling. Earth Science, 50(3): 1000-1022 (in Chinese with English abstract). |
Gu, Y. S., Guan, S., Li, Y. N., 2025. The Formation and Evolution of the Paleo-Yunmeng Lake Group in the Jianghan Plain and Its Influencing Mechanism. Earth Science, 50(3): 830-845 (in Chinese with English abstract). |
He, W. H., Wu, Y. Y., Zhang, K. X., et al., 2025. Gradual Collapse of Global Marine Ecosystem in the Late Permian and Its Link to the Anoxia. Earth Science, 50(3): 983-999 (in Chinese with English abstract). |
Huang, C. S., Yao, H. Z., Li, X., et al., 2022. Innovative Geological Survey Work Based on Geobiology. South China Geology, 38(2): 189-194 (in Chinese with English abstract). |
Huang, X. Y., Zhang, Y. M., Xue, J. T., et al., 2025. Influence of Warming and Water Level Drawdown on the Stability of Peatland Carbon Stock. Earth Science, 50(3): 846-856 (in Chinese with English abstract). |
Huang, Y. G., Xin, B. L., Guo, Z., et al., 2025. Modeling Method Enhances Temporal Resolution of Deep-Time Food Web Stability Evolution: A Case Study on Permian-Triassic Ecological Record from the Meishan Section. Earth Science, 50(3): 951-963 (in Chinese with English abstract). |
Jiang, H. C., Wang, B. C., 2025. Microbial Role in Carbon and Nitrogen Cycling in Lakes on the Qinghai-Xizang Plateau. Earth Science, 50(3): 877-886 (in Chinese with English abstract). |
Jiang, H. S., Chen, Y., 2025. Geological Events during the Extreme Greenhouse Interval of Norian, Late Triassic. Earth Science, 50(3): 1037-1047 (in Chinese with English abstract). |
Knoll, A. H., Canfield, D. E., Konhauser, K. O., 2012. Fundamentals of Geobiology. Wiley-Blackwell, London. |
Kump, L., 2008. Geobiology-Quo Vadis? Geobiology, 6: 423-424. https://doi.org/10.1111/j.1472-4669.2008.00175.x |
Liu, J. H., Ye, M., He, Q. Y., 2022. Analysis on the Evolution Trend of Geobiology Based on Bibliometrics. Advances in Earth Science, 37(2): 212-220 (in Chinese with English abstract). |
Liu, Y., 2005. The National Science Foundation on Strategical Development in Paleontology during 2000-2010 and Paleontology Research in China. Bulletin of National Natural Science Foundation of China, 19: 347-351 (in Chinese). |
Luo, G. M., Wang, C., Yin, Z. J., et al., 2025. From Geobiology to Astrobiology. Earth Science, 50(3): 857-876 (in Chinese with English abstract). |
Noffke, N., 2005. Introduction: Geobiology-A Holistic Discipline. Palaeogeography, Palaeoclimatology, Palaeoecology, 219: 1-3. doi: 10.1016/j.palaeo.2004.10.010 |
Olszewski, T., 2001. Geobiology: A Golden Opportunity and a Call to Action. PALAIOS, 16(6): i-ii. |
Qiu, X. C., Yang, H., Zheng, Z. J., et al., 2025. NanoSIMS Techniques and Its Important Implications in Geomicrobiology and Biosedimentology. Earth Science, 50(3): 1220-1233 (in Chinese with English abstract). |
Saraswati, P. K., 2022. Geobiology: Deep Time Perspectives. Journal of Geological Society of India, 98: 727-730. https://doi.org/10.1007/s12594-022-2060-8 |
Sheng, G. L., Tao, H. L., Song, S. W., et al., 2025. Applications of Ancient DNA Research in the Field of Geobiology. Earth Science, 50(3): 1105-1121 (in Chinese with English abstract). |
Shi, Q., Shi, X. Y., Jiang, G. Q., et al., 2025. Microbial Silicon Cycling Promoted Shallow-Sea Chert Deposition in Mesoproterozoic Ocean. Earth Science, 50(3): 1082-1104 (in Chinese with English abstract). |
Sperling, E. A., Tecklenburg, S., Duncan, L. E., 2019. Statistical Inference and Reproducibility in Geobiology. Geobiology, 17: 261-271. https://doi.org/10.1111/gbi.12333 |
Sun, J., Wu, H. C., Huang, W., et al., 2025. Magnetic Records of Quaternary Sediments in the Eastern West Philippine Sea Basin and Its Paleoclimatic Implications. Earth Science, 50(3): 918-933 (in Chinese with English abstract). |
Sylvester-Bradley, P. C., 1972. Geobiology and the Future of Paleontology. Journal of the Geological Society, London, 28: 109-117. |
Wang, J. S., Song, Q., Lin, Q., et al., 2025. Enlargement of Pyrite Framboid Size in Sulfate-Methane Transition Zone of Marine Sediments and Its Implying of Marine Methane Event. Earth Science, 50(3): 908-917 (in Chinese with English abstract). |
Wu, Y. Y., Song, H. J., Chu, D. L., et al., 2025. Environmental Impacts and Biotic Responses to Volcanism during the Permian-Triassic Transition. Earth Science, 50(3): 964-982 (in Chinese with English abstract). |
Xie, B. Z., Tang, D. J., Liu, Y. J., et al., 2025. Authigenic Clay Minerals from North China Reveal Spatiotemporal Variations in Shallow Seawater Redox Conditions during the Terminal Mesoproterozoic. Earth Science, 50(3): 1066-1081 (in Chinese with English abstract). |
Xie, S. C., Gong, Y. M., Tong, J. N. et al., 2006. Disciplinary Shift from Paleontology to Geobiology. Chinese Science Bulletin, 51(19): 2327-2336 (in Chinese) doi: 10.1007/s11434-006-2111-3 |
Xie, S. C., Luo, G. M., 2023. Opportunities and Challenges for the Development of Geobiology. Acta Palaeontologica Sinca, 62(4): 454-462 (in Chinese with English abstract). |
Xie, S. C., Yan, D. T., Zhu, Z. M., et al., 2025. Earth System Science in Drainage Regions Connected with Societal Development. Earth Science, 50(3): 815-829 (in Chinese with English abstract). |
Xie, S. C., Yin, H. F., 2014. Progress and Perspective on Frontiers of Geobiology. Science China Earth Sciences, 44(6): 1072-1086 (in Chinese) |
Xie, S. C., Yin, H. F., Liu, D., et al., 2018. On Development from Paleontology to Geobiology: Overview of Innovationand Expansion of Application Fields. Earth Science, 43(11): 3823-3836 (in Chinese with English abstract). |
Xie, S. C., Yin, H. F., Shi, X. Y., et al., 2011. Geobiology: Interaction and Coevolution of Life with Earth Environments. Science Press, Beijing (in Chinese). |
Xie, S. C., Zhu, X. C., Algeo, T., Qiu, X., 2023. Geovirology: Viruses and Their Roles in Geological History. Science Bulletin, 68: 379-382. http://doi.org/10.1016/j.scib.2023.02.001 |
Xu, Z., Yu, J. X., Peng, N., et al., 2025. Modern Climate - Controlled Plant Growth Experiments Exploring the Microbial Drivers of Terrestrial Vegetation Succession after the Permian-Triassic Mass Extinction. Earth Science, 50(3): 934-950 (in Chinese with English abstract). |
Yin, H. F., 1994. Biogeology. Advances in Earth Science, 9(6): 79-82 (in Chinese). |
Yin, H. F., Xie, S. C., Tong, J. N., et al., 2009. On the Significance of Geobiology. Acta Palaeontologica Sinca, 48(3): 293-301 (in Chinese with English abstract). |
Yu, W. C., Polgári, M., Zhou, Q., et al., 2025. Geobiological Perspective for the Formation of Manganiferous Deposit: Principle, Evidence, and Model. Earth Science, 50(3): 1142-1161 (in Chinese with English abstract). |
Yuan, A. H., Wan, J. Y., Zhao, K., et al., 2025. Differential Response of Ostracod Ontogeny after the End Permian Mass Extinction. Earth Science, 50(3): 1023-1036 (in Chinese with English abstract). |
Yuan, Y., Liu, Y. Q., 2025. Research Progress on Microbes Involved in Lacustrine Iron/Sulfur Cycling. Earth Science, 50(3): 887-907 (in Chinese with English abstract). |
Zhang, K. X., Song, B. W., He, W. H., et al., 2025. Distribution and Evolution of the Tethyan OPS in the Central-Southern Qinghai-Xizang Region. Earth Science, 50(3): 1162-1200 (in Chinese with English abstract). |
Zhang, L., Zhao, H., Lü, Z. Y., et al., 2025. Progress in Study of Conodont Bioapatite Geochemistry. Earth Science, 50(3): 1122-1141 (in Chinese with English abstract). |
陈欣阳, 李彪, 李超, 2025. 新元古代成冰纪雪球地球与化学风化作用. 地球科学, 50(3): 1048-1065. |
陈中强, 黄元耕, 2022. 如何定量评价大灭绝时期生态系统的坍塌与重建过程? 地球科学, 47(10): 3827-3829. doi: 10.3799/dqkx.2022.827 |
方谦, 杨僚, 仇鑫程, 等, 2025. 矿物‒微生物相互作用研究的新利器: 三维原子探针(APT). 地球科学, 50(3): 1201-1219. |
冯学谦, 陈中强, 赵来时, 等, 2025. 西秦岭地区二叠纪‒三叠纪之交深海遗迹化石演化特征. 地球科学, 50(3): 1000-1022. |
顾延生, 管硕, 李越南, 2025. 江汉平原古云梦泽形成演化及其影响机制. 地球科学, 50(3): 830-845. |
何卫红, 吴攸攸, 张克信, 等, 2025. 晚二叠世全球海洋生态系统逐步坍塌与缺氧的可能联系. 地球科学, 50(3): 983-999. |
黄长生, 姚华舟, 李璇, 等, 2022. 从地球生物学视角创新地质调查工作. 华南地质, 38(2): 189-194. |
黄咸雨, 张一鸣, 薛建涛, 等, 2025. 升温和水位下降对泥炭地碳库稳定性的影响. 地球科学, 50(3): 846-856. |
黄元耕, 辛佰仑, 郭镇, 等, 2025. 计算模拟方法提高深时食物网稳定性演变的时间分辨率: 以煤山剖面二叠纪‒三叠纪生态记录为例. 地球科学, 50(3): 951-963. |
蒋宏忱, 王北辰, 2025. 青藏高原湖泊碳氮循环微生物作用. 地球科学, 50(3): 877-886. |
江海水, 陈龑, 2025. 晚三叠世诺利期极端温室期地质事件. 地球科学, 50(3): 1037-1047. |
刘建辉, 叶玫, 何清吟, 2022. 基于文献计量学的地球生物学发展和演变趋势分析. 地球科学进展, 37(2): 212-220. |
刘羽, 2005. 国家自然科学基金古生物学2000-2010年发展战略及中国古生物学研究. 国家自然科学基金通信, 19: 347-351. |
罗根明, 王畅, 殷宗军, 等, 2025. 从地球生物学到天体生物学. 地球科学, 50(3): 857-876. |
仇鑫程, 杨浩, 郑子杰, 等, 2025. 纳米离子探针分析技术在地质微生物学和生物沉积学研究中的应用与展望. 地球科学, 50(3): 1220-1233. |
盛桂莲, 陶华林, 宋世文, 等, 2025. 古DNA研究在地球生物学领域的应用. 地球科学, 50(3): 1105-1121. |
史青, 史晓颖, Jiang Ganqing, 等, 2025. 中元古代微生物硅循环促进浅海硅岩沉积. 地球科学, 50(3): 1082-1104. |
孙军, 吴怀春, 黄威, 等, 2025. 西菲律宾海盆东部第四纪沉积物磁学记录及其古气候意义. 地球科学, 50(3): 918-933. |
王家生, 宋强, 林杞, 等, 2025. 海洋沉积物SMTZ带黄铁矿莓球粒径增大现象的甲烷事件意义. 地球科学, 50(3): 908-917. |
吴玉样, 宋海军, 楚道亮, 等, 2025. 二叠纪‒三叠纪之交火山活动及其环境效应和生物响应. 地球科学, 50(3): 964-982. |
谢宝增, 汤冬杰, 刘亚婕, 等, 2025. 华北自生黏土矿物指示中元古代末期浅海氧化还原条件的时空差异性. 地球科学, 50(3): 1066-1081. |
谢树成, 龚一鸣, 童金南, 等, 2006. 从古生物学到地球生物学的跨越. 科学通报, 51(19): 2327-2336. |
谢树成, 罗根明, 2023. 地球生物学发展的机遇与挑战. 古生物学报, 62(4): 454-462. |
谢树成, 严德天, 朱宗敏, 等, 2025. 流域地球系统科学与区域发展战略. 地球科学, 50(3): 815-829. |
谢树成, 殷鸿福, 2014. 地球生物学前沿: 进展与问题. 中国科学: 地球科学, 44(6): 1072-1086. |
谢树成, 殷鸿福, 刘邓, 等, 2018. 再谈古生物学向地球生物学的发展: 服务领域的拓展与创新. 地球科学, 43(11): 3823-3836. doi: 10.3799/dqkx.2018.169 |
谢树成, 殷鸿福, 史晓颖, 等, 2011. 地球生物学: 生命与地球环境的相互作用和协同演化. 北京: 科学出版社, 345. |
徐珍, 喻建新, 彭念, 等, 2025. 现代植物培养实验探索二叠纪‒三叠纪大灭绝事件后陆地植被演替的微生物驱动力. 地球科学, 50(3): 934-950. |
殷鸿福, 1994. 生物地质学. 地球科学进展, 9(6): 79-82. |
殷鸿福, 谢树成, 童金南, 等, 2009. 谈地球生物学的重要意义. 古生物学报, 48(3): 293-301. |
余文超, Márta Polgári, 周琦, 等, 2025. 地球生物学视角下的富锰沉积形成过程: 原理、证据与模式. 地球科学, 50(3): 1142-1161. |
袁爱华, 万俊雨, 赵奎, 等, 2025. 二叠纪末生物大灭绝后介形虫个体发育的差异响应. 地球科学, 50(3): 1023-1036. |
袁媛, 刘勇勤, 2025. 湖泊铁硫循环微生物研究进展. 地球科学, 50(3): 887-907. |
张克信, 宋博文, 何卫红, 等, 2025. 青藏中-南部特提斯洋板块地层分布与演化. 地球科学, 50(3): 1162-1200. |
张磊, 赵赫, 吕政艺, 等, 2025. 牙形石生物磷灰石地球化学研究进展. 地球科学, 50(3): 1122-1141. |