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首页> 外文期刊>Crop Protection >Management of bacterial spot of tomato caused by copper-resistant Xanthomonas perforans using a small molecule compound carvacrol
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Management of bacterial spot of tomato caused by copper-resistant Xanthomonas perforans using a small molecule compound carvacrol

机译:使用小分子化合物碳酸铜抗性Xanthomonas穿过铜抗性引起的番茄细菌斑点

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摘要

Bacterial spot of tomato (BST), caused by Xanthomonas perforans, is one of the most serious diseases in fresh market tomato production in Florida, and currently available management measures are largely ineffective or insufficient. Using small molecule compounds has been shown to be promising in management of BST. Carvacrol is a plant-derived small molecule, which is effective against many human and plant pathogens. In this study, we evaluated the efficacy of carvacrol for control of BST in vitro, in the greenhouse and in field trials. In the laboratory, X. perforans strain used in this study was able to grow on nutrient agar (NA) amended with CuSO4 at 400 mg L-1, which proved that this X. perforans strain was copper resistant. Our results also showed that the minimum inhibitory concentration (MIC) of carvacrol was 32 mg L-1 and its minimum bactericidal concentration (MBC) was 64 mg L-1. Carvacrol increased the sensitivity of the copper-resistant X. perforans strain to copper. In the leaf disc assay, carvacrol combined with copper reduced recovery of X. perforans from tomato leaf discs. Seed priming with carvacrol at 32 mg L-1 was found to be effective in promoting seed germination and seedling vigor of tomato. In greenhouse assays, carvacrol foliar applied alone or in combination with copper significantly (P < 0.05) reduced BST severity. Moreover, carvacrol at 32 mg L-1 combined with copper at 76.8 mg L-1 was most effective in reducing BST severity, which was significantly greater than either treatment alone and also greater than copper at 153.6 mg L-1. In field trials during 2018 and 2019, control efficacy of carvacrol at 32 mg L-1 was significantly greater than copper. Results from this study indicate that carvacrol significantly reduces BST severity and enhances the efficacy of copper against copper resistant X. perforans. There is potential for the small molecule compound carvacrol to be integrated into BST management programs for copper resistant X. perforans and provide a more environmentally sustainable approach for controlling BST.
机译:由Xanthomonas Perforans引起的番茄(BST)的细菌斑是佛罗里达州新鲜市场番茄生产中最严重的疾病之一,目前可用的管理措施主要是无效或不足。使用小分子化合物已被证明在BST的管理中有望。 Carvacrol是一种植物衍生的小分子,对许多人和植物病原体有效。在这项研究中,我们评估了Carvacrol在温室和实地试验中对体外控制的疗效。在实验室中,本研究中使用的X.穿孔菌株能够在400mg L-1的CuSO4上修正的营养琼脂(NA)上生长,这证明了这种X.穿孔菌株是铜的耐铜。我们的研究结果还表明,碳酸的最小抑制浓度(MIC)为32mg L-1,其最小杀菌浓度(MBC)为64mg L-1。 Carvacrol增加了铜抗性X.穿孔血管抑制铜的敏感性。在叶片椎间盘测定中,Carvacrol结合铜的X.穿过番茄叶片的X.穿过铜。发现与32mg L-1的Carvacrol的种子引发有效促进番茄的种子萌发和幼苗活力。在温室测定中,单独涂抹的Carvacrol叶面或与铜的组合显着(P <0.05)降低了BST严重程度。此外,在32mg L-1的碳酸钾与76.8mg L-1结合的碳酸在减少BST严重程度最有效,其显着大于单独的治疗,也大于153.6mg L-1的铜。在2018年和2019年的现场试验中,32mg L-1的Carvacrol的控制疗效明显大于铜。本研究的结果表明,碳酸蟑螂显着降低了BST严重程度,并提高了铜对铜抗性X.穿孔铜的功效。小分子化合物碳酸潜力融入BST管理方案中,用于铜耐铜X.穿孔血管,并提供更环境可持续的控制BST方法。

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