代表性论文:
◆ Zhang, B., Huang, S., Guo, S., Meng, Y., Tian, Y., Zhou, Y., Chen, H., Li, X., Zhou, J.*, Chen, W.*. (2024). ATG6 interacting with NPR1 increases Arabidopsis thaliana resistance to Pst DC3000/avrRps4 by increasing its nuclear accumulation and stability. eLife, doi:10.7554/eLife.97206.2.
◆ Zhou, J.#*, Ma, J.#, Yang, C.#, Zhu, X., Li, J., Zheng, X., Li, X., Chen, S., Feng, L., Wang, P., Ho, M. I., Ma, W., Liao, J., Li, F., Wang, C., Zhuang, X., Jiang, L., Kang, B.-H.*, Gao, C*. (2023). A non-canonical role of ATG8 in the Golgi recovery from heat stress in plants. Nature Plants, 2023, 9: 749-765.
◆ Zheng, X., Chen, S., Gao, C.*, Zhou, J.* (2023). An emerging role of non-canonical conjugation of ATG8 proteins in plant response to heat stress. Autophagy, doi:10.1080/15548627.2023.2219161.
◆ Li, H., Liao, Y., Zheng, X., Zhuang, X., Gao, C.*, Zhou, J.* (2022). Shedding light on the role of phosphorylation in plant autophagy. FEBS letters, 596(17), 2172-2185.
◆ Yu, J., Zhou, J.* (2021). Vacuolar accumulation and colocalization is not a proper criterion for cytoplasmic soluble proteins undergoing selective autophagy. Plant Signaling & Behavior, 16(10), 1932319.
◆ Ji, C.#, Zhou, J.#, Guo, R.#, Lin, Y., Kung, C. H., Hu, S., Ng, W. Y., Zhuang, X. H., Jiang, L*. (2020). AtNBR1 is a selective autophagic receptor for AtExo70E2 in Arabidopsis. Plant Physiology, 184(2), 777-791.
◆ Lin, Y., Guo, R., Ji, C*., Zhou, J.*, Jiang, L.* (2020). New insights into AtNBR1 as a selective autophagy cargo receptor in Arabidopsis. Plant Signaling & Behavior, 1839226.
◆ Yin, R., Liu, X., Yu, J., Ji, Y., Liu, J., Cheng, L.*, Zhou, J.* (2020). Up-regulation of autophagy by low concentration of salicylic acid delays methyl jasmonate-induced leaf senescence. Scientific Reports, 10(1), 1-10.
◆ Zhou, J., Cheng, M., Zeng, L., Liu, W., Zhang, T., & Xing, D.* (2016). Specific capture of the hydrolysate on magnetic beads for sensitive detecting plant vacuolar processing enzyme activity. Biosensors and Bioelectronics, 79, 881-886.
◆ Zhou, J., Zeng, L., Liu, J., Xing, D.* (2015). Manipulation of the xanthophyll cycle increases plant susceptibility to Sclerotinia sclerotiorum. PLOS Pathogens, 11(5): e1004878.
◆ Zhou, J., Sun, A., Xing, D.* (2013). Modulation of cellular redox status by thiamine-activated NADPH oxidase confers Arabidopsis resistance to Sclerotinia sclerotiorum. Journal of Experimental Botany. 64(11): 3261-3272.