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1. Wu, Q. S., He, J. D., Srivastava, A. K., Zou, Y. N., & Kuča, K. (2019). Mycorrhizas enhance drought tolerance of citrus by altering root fatty acid compositions and their saturation levels. Tree Physiology, 39(7), 1149-1158.

https://doi.org/10.1093/treephys/tpz039

2. Shu, B., Cai, D., Zhang, F., Zhang, D. J., Liu, C. Y., Wu, Q. S., & Luo, C. (2020). Identifying citrus CBL and CIPK gene families and their expressions in response to drought and arbuscular mycorrhizal fungi colonization. Biologia plantarum, 64, 773-783.

https://doi.org/10.32615/bp.2020.123

3. Huang, D., Ma, M., Wang, Q., Zhang, M., Jing, G., Li, C., & Ma, F. (2020). Arbuscular mycorrhizal fungi enhanced drought resistance in apple by regulating genes in the MAPK pathway. Plant Physiology and Biochemistry, 149, 245-255.

http://lps3.doi.org.libproxy.snu.ac.kr/10.1016/j.plaphy.2020.02.020
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1. Birch, J. D., Simard, S. W., Beiler, K. J., & Karst, J. (2021). Beyond seedlings: Ectomycorrhizal fungal networks and growth of mature Pseudotsuga menziesii. Journal of Ecology, 109(2), 806-818. https://doi.org/10.1111/1365-2745.13507 2. Wu, Q. S., & Zou, Y. N. (2017). Arbuscular my..
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Low-cost chamber design for simultaneous CO2and O2flux measurements between tree stems and the atmosphere Tree Physiology, Volume 41, Issue 9, September 2021, Pages 1767–1780,https://doi.org/10.1093/treephys/tpab022