首页> 外文期刊>BioControl: Journal of the International Organization for Biological Control >Combination of the biocontrol yeast Cryptococcus laurentii with UV-C treatment for control of postharvest diseases of tomato fruit.
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Combination of the biocontrol yeast Cryptococcus laurentii with UV-C treatment for control of postharvest diseases of tomato fruit.

机译:生防酵母菌劳伦隐球菌与UV-C处理相结合,可控制番茄果实的采后病害。

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摘要

Integrated management that combines different methods is being actively pursued in the control of postharvest disease. In this study, the biocontrol yeast Cryptococcus laurentii and ultraviolet-C (UV-C) treatment were evaluated for controlling infection following artificial inoculation with Botrytis cinerea or Alternaria alternata, and natural infection in tomato fruit. Applied separately, C. laurentii and UV-C (4 kJ m-2) effectively inhibited decay caused by B. cinerea or A. alternata, and natural infection. The combination of C. laurentii and UV-C showed better control efficiency. UV-C treatment did not affect yeast growth in fruit wounds, while the treatment induced the transcript expression of beta -1, 3-glucanase, phenylalanine ammonia-lyase, peroxidase and superoxide dismutase based on real-time PCR analysis, as well as increased the activity of these enzymes in tomato fruit. Results indicate that the mechanism by which UV-C enhanced the biocontrol efficacy of C. laurentii may be associated with the elicitation of defense response in tomato fruit.
机译:在收获后疾病的控制中,正在积极寻求结合不同方法的综合管理。在这项研究中,生物控制酵母劳伦隐球菌和紫外线-C(UV-C)处理被评估为控制感染灰葡萄孢或链格孢的人工接种后的感染,以及番茄果实的自然感染。单独使用劳伦梭菌和紫外线-C(4 kJ m -2 )可有效抑制灰葡萄孢杆菌或链球菌和自然感染引起的衰变。劳伦梭菌和UV-C的组合显示出更好的控制效率。 UV-C处理不影响水果伤口中的酵母生长,而基于实时PCR分析,该处理诱导了β-1、3-葡聚糖酶,苯丙氨酸氨裂合酶,过氧化物酶和超氧化物歧化酶的转录表达,并增加了这些酶在番茄果实中的活性。结果表明,UV-C增强劳伦梭菌生物防治功效的机制可能与引发番茄果实防御反应有关。

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