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温度和湿度对葡萄浆果上[生物防治对象未明确]的影响

Biocontrol of on Grape Berries as Influenced by Temperature and Humidity.

作者信息

Fedele Giorgia, Brischetto Chiara, Rossi Vittorio

机构信息

Department of Sustainable Crop Production (DI.PRO.VE.S.), Università Cattolica del Sacro Cuore, Piacenza, Italy.

出版信息

Front Plant Sci. 2020 Aug 14;11:1232. doi: 10.3389/fpls.2020.01232. eCollection 2020.

Abstract

Six commercial biocontrol agents (BCAs, containing , or ) were applied to ripening berries that were then incubated at one of four temperatures (T, 15, 20, 25, and 30°C) and one of four relative humidity levels (RH, 60, 80, 90, and 100%). After 1 to 13 days of incubation (BCA colonization period), the berries were inoculated with conidia of and kept at 25°C and 100% RH for 7 days, at which time Botrytis bunch rot (BBR) was assessed. The response of BBR control to T/RH conditions and BCA colonization period differed among BCAs; the coefficients of variation among the BCAs ranged from 44.7 to 72.4%. An equation was developed that accounted for the combined effects of T, RH, and BCA colonization period on BBR control. The equation, which had an R>0.94, could help farmers select the BCA to be used for a specific application based on weather conditions at the time of treatment and in the following days.

摘要

六种商业生物防治剂(生物防治剂,含有 或 )被应用于成熟的浆果,然后将其在四个温度(T,15、20、25和30°C)之一和四个相对湿度水平(RH,60、80、90和100%)之一的条件下进行培养。在培养1至13天(生物防治剂定殖期)后,用 的分生孢子接种浆果,并在25°C和100%相对湿度下保存7天,此时评估灰霉病穗腐病(BBR)。生物防治剂对BBR防治的响应在不同生物防治剂之间因温度/相对湿度条件和生物防治剂定殖期而异;生物防治剂之间的变异系数范围为44.7%至72.4%。建立了一个方程,该方程考虑了温度、相对湿度和生物防治剂定殖期对BBR防治的综合影响。该方程的R>0.94,可帮助农民根据处理时及后续几天的天气条件选择用于特定应用的生物防治剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/218f/7457006/435b6a577f3d/fpls-11-01232-g001.jpg

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