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Pre- and postharvest treatment with alternatives to synthetic fungicides to control postharvest decay of sweet cherry.

机译:采前和采后处理,使用合成杀菌剂的替代品来控制甜樱桃的采后腐烂。

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摘要

The effectiveness of alternatives to synthetic fungicides for the control of pathogens causing postharvest diseases of sweet cherry was tested in vitro and in vivo. When amended to potato dextrose-agar, oligosaccharides, benzothiadiazole, chitosan, calcium plus organic acids, and nettle macerate reduced the growth of Monilinia laxa, Botrytis cinerea and Rhizopus stolonifer. Treatment of sweet cherries three days before harvest or soon after harvest with oligosaccharides, benzothiadiazole, chitosan, calcium plus organic acids, nettle extract, fir extract, laminarin, or potassium bicarbonate reduced brown rot, gray mold, Rhizopus rot, Alternaria rot, blue mold and green rot of cherries kept 10 d at 20 +or- 1 degrees C, or 14 d at 0.5 +or- 1 degrees C and then exposed to 7 d of shelf-life at 20 +or- 1 degrees C. Among these resistance inducers, when applied either preharvest or postharvest, chitosan was one of the most effective in reducing storage decay of sweet cherry, and its antimicrobial activity in vitro and in field trials was comparable to that of the fungicide fenhexamid. Benzothiadiazole was more effective when applied postharvest than with preharvest spraying. These resistance inducers could represent good options for organic growers and food companies, or they can complement the use of synthetic fungicides in an integrated disease management strategy
机译:在体外和体内测试了合成杀真菌剂替代品对控制引起甜樱桃采后病害的病原体的有效性。当将其修改为马铃薯葡萄糖琼脂时,寡糖,苯并噻二唑,壳聚糖,钙加有机酸和荨麻浸渍液会减少莫妮莉亚疏松,灰葡萄孢和根腐菌的生长。收获前三天或收获后不久用低聚糖,苯并噻二唑,壳聚糖,钙加有机酸,荨麻提取物,冷杉提取物,层粘连蛋白或碳酸氢钾处理甜樱桃,减少了褐腐,灰霉病,根瘤菌腐烂,链格孢属腐烂,蓝霉病樱桃的青腐病在20 +/- 1摄氏度下保持10 d,在0.5 +/- 1摄氏度下保持14 d,然后在20 +/- 1摄氏度下暴露于7 d的保质期。诱导剂,无论是在收获前还是收获后施用,壳聚糖都是减少甜樱桃贮藏衰减最有效的方法之一,其体外和田间试验的抗菌活性均与杀真菌剂fenhexamid相当。收获后施用苯并噻二唑比收获前喷雾更有效。这些抗药性诱导剂可能代表有机种植者和食品公司的良好选择,或者可以在综合疾病管理策略中补充合成杀真菌剂的使用

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