共 18 条
- [1] LE D P, SMITH M, HUDLER G W, Et al., Pythium soft rot of ginger: detection and identification of the causal pathogens, and their control, Crop Protection, 65, pp. 153-167, (2014)
- [2] ATHAWALE V, PARALIKAR P, INGLE A P, Et al., Biogenically engineered nanoparticles inhibit Fusarium oхysрorum causing soft-rot of ginger, IET Nanobiotechnology, 12, 8, pp. 1084-1089, (2018)
- [3] RAI M, INGLE A P, PARALIKAR P, Et al., Effective management of soft rot of ginger caused by Pythium spp. and Fusarium spp.: emerging role of nanotechnology, Applied Microbiology and Biotechnology, 102, pp. 6827-6839, (2018)
- [4] ZHANG L L, QIN M L, YIN J L, Et al., Antibacterial activity and mechanism of ginger extract against Ralstonia solanacearum, Journal of Applied Microbiology, 133, 4, pp. 2642-2654, (2022)
- [5] PENG H M, HU H J, XI K Y, Et al., Silicon nanoparticles enhance ginger rhizomes tolerance to postharvest deterioration and resistance to Fusarium solani, Frontiers in Plant Science, 13, (2022)
- [6] LIU Y, WISNIEWSHI M, KENNEDY J F, Et al., Chitosan and oligochitosan enhance ginger (Zingiber officinale Roscoe) resistance to rhizome rot caused by Fusarium oхysрorum in storage, Carbohydrate Polymers, 151, pp. 474-479, (2016)
- [7] YU D, WANG J, SHAO X, Et al., Antifungal modes of action of tea tree oil and its two characteristic components against Вotrytis cinerea, Journal of Applied Microbiology, 119, 5, pp. 1253-1262, (2015)
- [8] MATHERON M E, PORCHAS M., Impact of azoxystrobin, dimethomorph, fluazinam, fosetyl-Al, and metalaxyl on growth, sporulation, and zoospore cyst germination of three Phytoрhthora spp, Plant Disease, 84, 4, pp. 454-458, (2000)
- [9] LIU X, CAI J X, CHEN H M, Et al., Antibacterial activity and mechanism of linalool against Pseudomonas aeruginosa, Microbial Pathogenesis, 141, (2020)
- [10] LI Y, GUO L, ZHOU Z., Exploring the antifungal mechanism of limonin-loaded eugenol emulsion against Penicillium italicum: from the perspective of microbial metabolism, Postharvest Biology and Technology, 182, (2021)