1. Li, W. 1, Yang, B.1, Xu, J., Peng, L., Sun, S., Huang, Z., ... & Wang, Z. (2021). A genome‐wide association study reveals that the 2‐oxoglutarate/malate translocator mediates seed vigor in rice. The Plant Journal, 108: 478-491.
2. Li, W. 1, Niu, Y., Zheng, Y., Wang, Z. (2022). Advances in the understanding of reactive oxygen species-dependent regulation on seed dormancy, germination, and deterioration in Crops. Frontiers in Plant Science,13: 826809.
3. Li, W.1, Hu, M.1, Xue, Y., Li, Z., Zhang, Y., Zheng, D., ... & Zhou, J. (2020). Five fungal pathogens are responsible for bayberry twig blight and fungicides were screened for disease control. Microorganisms, 8(5), 689.
4. Zhao, J.1, Li, W.1, Sun, S., Peng, L., Huang, Z., He, Y., & Wang, Z. (2021). The rice small Auxin-Up RNA gene OsSAUR33 regulates seed vigor via sugar pathway during early seed germination. International Journal of Molecular Sciences, 22(4), 1562.
5. Luo, H.1, Li, W.1, Zhang, X. 1, Deng, S., Xu, Q., Hou, T., ... & Zhang, X. (2019). In planta high levels of hydrolysable tannins inhibit peroxidase mediated anthocyanin degradation and maintain abaxially red leaves of Excoecaria Cochinchinensis. BMC Plant Biology, 19(1), 1-20.
6. Zhao, J. 1, Yang, B. 1, Li, W., Sun, S., Peng, L., Feng, D., ... & Wang, Z. (2021). A genome-wide association study reveals that the glucosyltransferase OsIAGLU regulates root growth in rice. Journal of Experimental Botany, 72(4), 1119-1134.
7. Peng, L., Sun, S., Yang, B., Zhao, J., Li, W., Huang, Z., ... & Wang, Z. (2022). Genome‐wide association study reveals that the cupin domain protein OsCDP3. 10 regulates seed vigour in rice. Plant Biotechnology Journal, 20(3), 485-498.
8. Hu, M., Li, J., Chen, R., Li, W., Feng, L., Shi, L., ... & Zhou, J. (2018). Dickeya zeae strains isolated from rice, banana and clivia rot plants show great virulence differentials. BMC Microbiology, 18(1), 1-15.
9. Dong, B., Luo, H., Liu, B., Li, W., Ou, S., Wu, Y., ... & Zhang, Z. (2019). BcXyl, a β-xylosidase isolated from Brunfelsia Calycina flowers with anthocyanin-β-glycosidase activity. International Journal of Molecular Sciences, 20(6), 1423.
10. Fang, F., Zhang, X. L., Luo, H. H., Zhou, J. J., Gong, Y. H., Li, W. J., ... & Pang, X. Q. (2015). An intracellular laccase is responsible for epicatechin-mediated anthocyanin degradation in litchi fruit pericarp. Plant Physiology, 169(4), 2391-2408.
(更新日期:2022.11.09)