共 33 条
- [1] 11, (1997)
- [2] CHENG Yulin, LIN Yunlong, CAO Haohao, Et al., Citrus postharvest green mold: recent advances in fungal pathogenicity and fruit resistance, Microorganisms, 8, 3, (2020)
- [3] MARCET-HOUBEN M, BALLESTER A R, DE LA FUENTE B, Et al., Genome sequence of the necrotrophic fungus Penicillium digitatum, the main postharvest pathogen of citrus, BMC Genomics, 13, (2012)
- [4] CHEN Jinyin, SHEN Yuting, CHEN Chuying, Et al., Inhibition of key citrus postharvest fungal strains by plant extracts in vitro and in vivo: a review, Plants, 8, (2019)
- [5] JIMENEZ-REYES M F, CARRASCO H, OLEA A F, Et al., Natural compounds: a sustainable alternative to the phytopathogens control, Journal of the Chilean Chemical Society, 64, 2, (2019)
- [6] ZHAO Zhongmin, SHANG Xiaofei, LAWOE R K, Et al., Antiphytopathogenic activity and the possible mechanisms of action of isoquinoline alkaloid sanguinarine, Pesticide Biochemistry and Physiology, 159, pp. 51-58, (2019)
- [7] OLIVA A, MEEPAGALA K M, WEDGE D E, Et al., Natural fungicides from Ruta graveolens L.leaves, including a new quinolone alkaloid, Journal of Agricultural and Food Chemistry, 51, 4, pp. 890-896, (2003)
- [8] WANG Yonghong, WEN Baofang, YU Hongli, Et al., Berberine hydrochloride-loaded chitosan nanoparticles effectively targets and suppresses human nasopharyngeal carcinoma, Journal of Biomedical Nanotechnology, 14, 8, pp. 1486-1495, (2018)
- [9] ZOU Kun, LI Zhao, ZHANG Yong, Et al., Advances in the study of berberine and its derivatives: a focus on anti-inflammatory and antitumor effects in the digestive system, Acta Pharmacologica Sinica, 38, 2, pp. 157-167, (2017)
- [10] LEE C, LEE H, JEON J, Et al., In vivo antifungal effects of Coptis japonica root-derived isoquinoline alkaloids against phytopathogenic fungi, Journal of Microbiology and Biotechnology, 15, 6, pp. 1402-1407, (2005)