CITAB-Centre for the Research and Technology for Agro-Environment and Biological Sciences, Integrative Biology and Quality group research, Universidade de Trás-os-Montes e Alto Douro, Apartado, Vila Real, Portugal.
J Appl Microbiol. 2009 Jun;106(6):2096-105. doi: 10.1111/j.1365-2672.2009.04181.x. Epub 2009 Mar 9.
The aim of the study was to evaluate the in vitro antibacterial effects of glucosinolate hydrolysis products (GHP) against plant pathogenic micro-organisms namely Agrobacterium tumefaciens, Erwinia chrysanthemi, Pseudomonas cichorii, Pseudomonas tomato, Xanthomonas campestris and Xanthomonas juglandis.
Using a disc diffusion assay, seven different doses of 10 GHP were tested against each bacteria. The results showed that the isothiocyanates were potent antibacterials, whilst the other GHP were much less efficient. Moreover, the antibacterial effects were dose-dependent, increasing with the dose applied; 2-phenylethylisothiocyanate and sulforaphane showed the strongest inhibitory effects. The overall results show a great potential for using the isothiocyanates as an alternative tool to control undesired bacterial growth in plants.
Glucosinolate hydrolysis products and more specifically the isothiocyanates: benzylisothiocyanate, 2-phenylethylisothiocyanate, the isothiocyanate Mix and sulforaphane, were effective phytochemicals against the in vitro growth of the phytopathogenic bacteria. The antibacterial activity exhibited by these phytochemicals reinforces their potential as alternatives to the traditional chemical control of phytopathogenic bacteria.
This current in vitro study is the first providing comparative data on GHP as potential control agents for plant pathogenic bacteria. However, more studies are needed to determine their possible allelopathic impacts e.g. inhibition of plant growth and negative effects on beneficial soil bacteria and fungi (mycorrhizae).
本研究旨在评估硫代葡萄糖苷水解产物(GHP)对植物病原微生物的体外抗菌作用,这些病原微生物包括根癌农杆菌、菊欧文氏菌、番茄假单胞菌、番茄假单胞菌、野油菜黄单胞菌和胡桃炭疽菌。
采用圆盘扩散法,测试了 7 种不同剂量的 10 种 GHP 对每种细菌的作用。结果表明,异硫氰酸酯是有效的抗菌剂,而其他 GHP 的抗菌效果要差得多。此外,抗菌效果呈剂量依赖性,随着剂量的增加而增加;苯乙基异硫氰酸酯和萝卜硫素表现出最强的抑制作用。总体结果表明,使用异硫氰酸酯作为替代工具来控制植物中不需要的细菌生长具有很大的潜力。
硫代葡萄糖苷水解产物,特别是异硫氰酸酯:苄基异硫氰酸酯、苯乙基异硫氰酸酯、异硫氰酸酯混合物和萝卜硫素,是对抗植物病原菌体外生长的有效植物化学物质。这些植物化学物质表现出的抗菌活性增强了它们作为传统化学防治植物病原菌替代品的潜力。
本体外研究首次提供了关于 GHP 作为植物病原菌潜在控制剂的比较数据。然而,还需要更多的研究来确定它们可能的化感作用,例如抑制植物生长和对有益土壤细菌和真菌(菌根)的负面影响。