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验证新型薄膜形成制剂 Candida sake CPA-1 的生防活性:与环境因素、降雨事件的弹性以及对不同宿主上 Botrytis cinerea 的防治。

Verifying the biocontrol activity of novel film-forming formulations of Candida sake CPA-1: resilience in relation to environmental factors, rainfall episodes, and control of Botrytis cinerea on different hosts.

机构信息

IRTA, XaRTA-Postharvest, Edifici Fruitcentre, Parc Científic i Tecnològic Agroalimentari de Lleida, Lleida, Catalonia, Spain.

出版信息

J Sci Food Agric. 2019 Aug 30;99(11):4969-4976. doi: 10.1002/jsfa.9731. Epub 2019 Jun 17.

DOI:10.1002/jsfa.9731
PMID:30980409
Abstract

BACKGROUND

The efficacy of Candida sake CPA-1 as a biocontrol agent against several diseases has been studied since it was isolated 20 years ago. However, it was only recently that two suitable and effective film-forming formulations based on potato starch and maltodextrins were developed using the fluidized-bed spray-drying system. The present work aimed to confirm the capability of both novel formulations by testing their resilience on grapes at different temperatures (0, 22, and 30 °C), relative humidities (40% and 85%), and simulated rainfall levels. Another objective was to examine the control of Botrytis cinerea in different hosts.

RESULTS

The CPA-1 cells from both dried formulations survived better than the liquid formulation on grapes stored at 0 and 22 °C regardless of the relative humidity. After simulated rainfall, potato starch formulation achieved significantly higher populations than maltodextrin formulation, although the highest reduction was -1.6 log N N . A positive effect of cell establishment prior to the simulated rainfall was shown, and recovered cells from the potato starch formulation were significantly higher after 72 h of cell establishment. Finally, both formulations reduced the incidence and severity of B. cinerea on pears, apples, and tomatoes.

CONCLUSION

The potential of these novel film-forming formulations of C. sake CPA-1 was verified. The resilience of formulated C. sake was better than the commercialized liquid formulation, the adherence of the formulations to the grapes improved after an establishment period prior to rain exposure, and the control of B. cinerea was verified in a wider range of hosts. © 2019 Society of Chemical Industry.

摘要

背景

自 20 年前分离出清酒假丝酵母 CPA-1 以来,人们一直在研究其作为生物防治剂对多种疾病的疗效。然而,直到最近才使用流化床喷雾干燥系统开发出两种基于马铃薯淀粉和麦芽糊精的合适且有效的成膜制剂。本工作旨在通过在不同温度(0、22 和 30°C)、相对湿度(40%和 85%)和模拟降雨水平下测试其在葡萄上的弹性,来确认这两种新型制剂的能力。另一个目的是检验其在不同宿主中对灰葡萄孢的控制效果。

结果

无论相对湿度如何,两种干燥制剂的 CPA-1 细胞在 0 和 22°C 下贮藏的葡萄上比液体制剂的存活率更高。模拟降雨后,马铃薯淀粉制剂的种群数量明显高于麦芽糊精制剂,尽管最高减少量为-1.6 log N N 。在模拟降雨之前建立细胞的效果呈阳性,且从马铃薯淀粉制剂中回收的细胞在 72 h 的细胞建立后显著更高。最后,两种制剂均降低了梨、苹果和番茄上灰葡萄孢的发病率和严重度。

结论

验证了这些新型清酒假丝酵母 CPA-1 成膜制剂的潜力。与商品化的液体制剂相比,制剂中假丝酵母的弹性更好,在暴露于雨水之前建立一段时间后,制剂的附着性得到改善,并且在更广泛的宿主中验证了对灰葡萄孢的控制效果。 © 2019 英国化学学会。

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