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    中国百强科技报刊

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    Volume 47 Issue 10
    Oct.  2022
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    Article Contents
    Zhang Shuichang, Wang Xiaomei, Wang Huajian, Tang Qing, Zhang Fenglian, Lü Dan, 2022. What are the Limiting Environmental Factors for the Evolution of Early Eukaryotic Biodiversity?. Earth Science, 47(10): 3856-3857. doi: 10.3799/dqkx.2022.839
    Citation: Zhang Shuichang, Wang Xiaomei, Wang Huajian, Tang Qing, Zhang Fenglian, Lü Dan, 2022. What are the Limiting Environmental Factors for the Evolution of Early Eukaryotic Biodiversity?. Earth Science, 47(10): 3856-3857. doi: 10.3799/dqkx.2022.839

    What are the Limiting Environmental Factors for the Evolution of Early Eukaryotic Biodiversity?

    doi: 10.3799/dqkx.2022.839
    • Publish Date: 2022-10-25
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    • Agić, H., Moczydłowska, M., Yin, L. M., 2017. Diversity of Organic-Walled Microfossils from the Early Mesoproterozoic Ruyang Group, North China Craton: A Window into the Early Eukaryote Evolution. Precambrian Research, 297: 101-130. https://doi.org/10.1016/j.precamres.2017.04.042
      Canfield, D. E., van Zuilen, M. A., Nabhan, S., et al., 2021. Petrographic Carbon in Ancient Sediments Constrains Proterozoic Era Atmospheric Oxygen Levels. Proceedings of the National Academy of Sciences of the United States of America, 118(23): e2101544118. https://doi.org/10.1073/pnas.2101544118
      Eckford-Soper, L. K., Andersen, K. H., Hansen, T. F., et al., 2022. A Case for an Active Eukaryotic Marine Biosphere during the Proterozoic Era. Proceedings of the National Academy of Sciences of the United States of America, 119(41): e2122042119. https://doi.org/10.1073/pnas.2122042119
      Fan, J. X., Shen, S., Erwin, D., et al., 2020. A High-Resolution Summary of Cambrian to Early Triassic Marine Invertebrate Biodiversity. Science, 367: 272-277. https://doi.org/10.1126/science.aax4953
      Gold, D. A., Caron, A., Fournier, G. P., et al., 2017. Paleoproterozoic Sterol Biosynthesis and the Rise of Oxygen. Nature, 543(7645): 420-423. https://doi.org/10.1038/nature21412
      Lyons, T. W., Reinhard, C. T., Planavsky, N. J., 2014. The Rise of Oxygen in Earth's Early Ocean and Atmosphere. Nature, 506(7488): 307-315. https://doi.org/10.1038/nature13068
      Mills, D. B., Boyle, R. A., Daines, S. J., et al., 2022. Eukaryogenesis and Oxygen in Earth History. Nature Ecology & Evolution, 6(5): 520-532. https://doi.org/10.1038/s41559-022-01733-y
      Tang, M., Chu, X., Hao, J. H., et al., 2021. Orogenic Quiescence in Earth's Middle Age. Science, 371(6530): 728-731. https://doi.org/10.1126/science.abf1876
      Xiao, S. H., Muscente, A. D., Chen, L., et al., 2014. The Weng'an Biota and the Ediacaran Radiation of Multicellular Eukaryotes. National Science Review, 1(4): 498-520. https://doi.org/10.1093/nsr/nwu061
      Zhang, F. L., Wang, H. J., Ye, Y. T., et al., 2022. Did High Temperature rather than Low O2 Hinder the Evolution of Eukaryotes in the Precambrian? Precambrian Research, 378: 106755. https://doi.org/10.1016/j.precamres.2022.106755
      Zhang, S. C., Su, J., Ma, S. H., et al., 2021. Eukaryotic Red and Green Algae Populated the Tropical Ocean 1400 Million Years ago. Precambrian Research, 357: 106166. https://doi.org/10.1016/j.precamres.2021.106166
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