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紫外线介导损伤的波长依赖性恢复:梳理基于光学的白粉病防治中的遗留问题。

Wavelength dependent recovery of UV-mediated damage: Tying up the loose ends of optical based powdery mildew management.

作者信息

Suthaparan Aruppillai, Pathak Ranjana, Solhaug Knut Asbjørn, Gislerød Hans Ragnar

机构信息

Department of Plant Sciences, Faculty of Biosciences, Norwegian University of Life Sciences, 1432 Ås, Norway.

Department of Plant Sciences, Faculty of Biosciences, Norwegian University of Life Sciences, 1432 Ås, Norway.

出版信息

J Photochem Photobiol B. 2018 Jan;178:631-640. doi: 10.1016/j.jphotobiol.2017.12.018. Epub 2017 Dec 18.

Abstract

Controlled environment chamber experiments at Petri dish level were conducted to examine the wavelength and dose dependent efficacy of ultraviolet (UV) radiation, the recovery action potential of optical radiation applied concomitantly/subsequently to effective UV treatment, and the lapse time between UV treatment and subsequent exposure to recovery wavelength on germination efficiency of Oidium neolycopersici conidia. Conidia of eight- to nine-day-old colonies were dusted on water agar surface in Petri dishes and exposed to UV treatments (without lid). Immediately after UV treatments, Petri dishes were sealed and incubated in darkness or differing optical environments generated using seven different radiation sources (range 290nm to 780nm). Twenty-four hours after UV treatment, fifty conidia from each sample were assessed for germination. Compared to non-UV controls, <10% of the conidia germinated after 30s of exposure to 254nm or 283nm UV and subsequent dark incubation. Conidia germination was almost negligible if the exposure duration increased to 4min. Germination was about 60% with broad spectrum UV after 1min of exposure, and about 35% after 2 to 4min of exposure. There was no reduction of conidia germination with the exposure of ≤4min with 310nm. With the tested wavelength and dose ranges, germination recovery was effective in the 350nm to 500nm range. Germination efficiency of conidia treated with effective UV was significantly higher (>73%) if incubated subsequently in the 350nm to 500nm range (germination recovery). Furthermore, germination recovery depends on the characteristics of UV treatment (wavelength, and duration of exposure) and the lapse time between UV treatment and subsequent exposure to optical radiation in the recovery range. The findings of this study provide key criteria for wavelength selection, combination and application time in the optical radiation range, enabling improved design of optical based management strategies against powdery mildews.

摘要

在培养皿水平上进行了可控环境舱实验,以研究紫外线(UV)辐射的波长和剂量依赖性功效、在有效紫外线处理的同时/之后施加光辐射的恢复动作电位,以及紫外线处理与随后暴露于恢复波长之间的时间间隔对新番茄粉孢分生孢子萌发效率的影响。将八至九天龄菌落的分生孢子撒在培养皿中的水琼脂表面上,并进行紫外线处理(无盖子)。紫外线处理后立即将培养皿密封,并在黑暗中或使用七种不同辐射源(范围为290nm至780nm)产生的不同光学环境中孵育。紫外线处理24小时后,评估每个样品中50个分生孢子的萌发情况。与未进行紫外线处理的对照相比,暴露于254nm或283nm紫外线30秒并随后进行黑暗孵育后,不到10%的分生孢子萌发。如果暴露持续时间增加到4分钟,分生孢子萌发几乎可以忽略不计。暴露1分钟后,广谱紫外线照射下的萌发率约为60%,暴露2至4分钟后约为35%。在310nm下暴露≤4分钟,分生孢子萌发没有降低。在所测试的波长和剂量范围内,在350nm至500nm范围内萌发恢复有效。用有效紫外线处理的分生孢子,如果随后在350nm至500nm范围内孵育(萌发恢复),其萌发效率显著更高(>73%)。此外,萌发恢复取决于紫外线处理的特性(波长和暴露持续时间)以及紫外线处理与随后暴露于恢复范围内的光辐射之间的时间间隔。本研究的结果为光辐射范围内的波长选择、组合和应用时间提供了关键标准,有助于改进针对白粉病的基于光的管理策略的设计。

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引用本文的文献

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