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1. Guangliang Zhang, Junhong Bai*, Yujia Zhai, Jia Jia, Qingqing Zhao, Wei Wang, Xingyun Hu, 2023. Microbial diversity and functions in saline soils: A review from a biogeochemical perspective. Journal of Advanced Research. https://doi.org/10.1016/j.jare.2023.06.015
2. Guangliang Zhang, Junhong Bai*, Jia Jia, Wei Wang, Dawei Wang, Qingqing Zhao, Chen Wang, Guozhu Chen, 2023. Soil microbial communities regulate the threshold effect of salinity stress on SOM decomposition in coastal salt marshes. Fundamental Research, 3, 868-879
3. Guangliang Zhang, Junhong Bai*, Wei Wang, Jia Jia, Laibin Huang, Fanlong Kong, Min Xi, 2023. Plant invasion reshapes the latitudinal pattern of soil microbial necromass and its contribution to soil organic carbon in coastal wetlands. Catena, 222, 106859.
4. Guangliang Zhang, Jia Jia, Qingqing Zhao, Wei Wang, Dawei Wang, Junhong Bai*. 2023. Seasonality and assembly of soil microbial communities in coastal salt marshes invaded by a perennial grass. Journal of Environmental Management, 331, 117247.
5. Guangliang Zhang, Junhong Bai*, Christoph C. Tebbe, Laibin Huang, Jia Jia, Wei Wang, Xin Wang, Lu Yu, Qingqing Zhao, 2022. Plant invasion reconstructs soil microbial assembly and functionality in coastal salt marshes. Molecular Ecology, 31, 4478-4494.
6. Laibin Huang, Junhong Bai*, Junjing Wang, Guangliang Zhang, Wei Wang, Xin Wang, Ling Zhang, Yaqi Wang, Xinhui Liu, Baoshan Cui, 2022. Different stochastic processes regulate bacterial and fungal community assembly in estuarine wetland soils. Soil Biology and Biochemistry, 167, 108586.
7. Lu Yu, Junhong Bai*, Laibin Huang, Guangliang Zhang, Wei Wang, Xin Wang, Zibo Yu, 2022. Carbon-rich substrates altered microbial communities with indication of carbon metabolism functional shifting in a degraded salt marsh of the Yellow River Delta, China. Journal of Cleaner Production, 331, 129898.
8. Guangliang Zhang, Junhong Bai*, Christoph C. Tebbe, Laibin Huang, Jia Jia, Wei Wang, Xin Wang, Lixiang Wen, Fanlong Kong, Min Xi, Qiang He, 2022. Habitat-specific responses of soil organic matter decomposition to Spartina alterniflora invasion along China’s coast. Ecological Applications, e2741.
9. Guangliang Zhang, Junhong Bai*, Qingqing Zhao, Jia Jia, Xin Wang, Wei Wang, Xinyan Wang, 2021. Soil carbon storage and carbon sources under different Spartina alterniflora invasion periods in a salt marsh ecosystem. Catena, 196, 104831.
10. Guangliang Zhang, Junhong Bai*, Christoph C. Tebbe, Laibin Huang, Jia Jia, Wei Wang, Xin Wang, Lu Yu, Qingqing Zhao, 2021. Spartina alterniflora invasions reduce soil fungal diversity and simplify co-occurrence networks in a salt marsh ecosystem. Science of the Total Environment, 758, 143667.
11. Guangliang Zhang, Junhong Bai*, Christoph C. Tebbe, Qingqing Zhao, Jia Jia, Wei Wang, Xin Wang, Lu Yu, 2021. Salinity controls soil microbial community structure and function in coastal estuarine wetlands. Environmental Microbiology, 23(2), 1020-1037.
12. Xin Wang, Junhong Bai*, Tian Xie, Wei Wang, Guangliang Zhang, Shuo Yin, Dawei Wang, 2021. Effects of biological nitrification inhibitors on nitrogen use efficiency and greenhouse gas emissions in agricultural soils: A review. Ecotoxicology and Environmental Safety, 220, 112338.
13. Wei Wang, Junhong Bai*, Qiongqiong Lu, Guangliang Zhang, Dawei Wang, Jia Jia, Yanan Guan, Lu Yu, 2021. Pyrolysis temperature and feedstock alter the functional groups and carbon sequestration potential of Phragmites australis- and Spartina alterniflora-derived biochars. Global Change Biology Bioenergy, 13, 493-506.
14. Guangliang Zhang, Junhong Bai*, Qingqing Zhao, Jia Jia, Wei Wang, Xin Wang, 2020. Bacterial succession in salt marsh soils along a short-term invasion chronosequence of Spartina alterniflora in the Yellow River Estuary, China. Microbial Ecology, 79, 644-661.
15. Laibin Huang, Junhong Bai*, Xiaojun Wen, Guangliang Zhang, Chengdong Zhang, Baoshan Cui, Xinhui Liu, 2020. Microbial resistance and resilience in response to environmental changes under the higher intensity of human activities than global average level. Global Change Biology, 26, 2377-2389.