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低压等离子体用于种子携带病原菌野油菜黄单胞菌的灭活

Low-Pressure Plasma Application for the Inactivation of the Seed-borne Pathogen Xanthomonas campestris.

作者信息

Nishioka Terumi, Takai Yuichiro, Mishima Tomoko, Kawaradani Mitsuo, Tanimoto Hideo, Okada Kiyotsugu, Misawa Tatsuya, Kusakari Shinichi

机构信息

Research Institute of Environment, Agriculture and Fisheries, Osaka Prefecture.

出版信息

Biocontrol Sci. 2016;21(1):37-43. doi: 10.4265/bio.21.37.

Abstract

The aim of this study was to investigate the effect of low-pressure plasma treatment on seed disinfection and the possible mechanisms underlying this effect. Seed-borne disease refers to plant diseases that are transmitted by seeds; seed disinfection is an important technique for prevention of such diseases. In this study, the effectiveness of low-pressure plasma treatment in the inactivation of the seed-borne plant pathogenic bacterium, Xanthomonas campestris, inoculated on cruciferous seeds, was evaluated. The highest inactivation effect was observed when the treatment voltage and argon gas flow rate were 5.5 kV and 0.5 L/min, respectively. The viable cell number of X. campestris was 6.6 log cfu/seed before plasma treatment, and decreased by 3.9 log after 5 min of treatment and by 6.6 log after 40 min. Ethidium monoazide treatment and quantitative real-time PCR results indicated that both the cell membrane and target DNA region were damaged following 5 min of plasma treatment. Although both heat and ozone were generated during the plasma treatment, the contribution of both factors to the inactivation of X. campestris was small by itself in our low-pressure plasma system. Overall, we have shown that our low-pressure plasma system has great applicability to controlling plant pathogenic bacterium contamination of seeds.

摘要

本研究的目的是探讨低压等离子体处理对种子消毒的效果及其潜在机制。种传病害是指通过种子传播的植物病害;种子消毒是预防此类病害的一项重要技术。在本研究中,评估了低压等离子体处理对接种在十字花科种子上的种传植物病原菌野油菜黄单胞菌的灭活效果。当处理电压和氩气流量分别为5.5 kV和0.5 L/min时,观察到最高的灭活效果。等离子体处理前,野油菜黄单胞菌的活菌数为6.6 log cfu/种子,处理5分钟后减少了3.9 log,处理40分钟后减少了6.6 log。单叠氮化乙锭处理和定量实时PCR结果表明,等离子体处理5分钟后,细胞膜和目标DNA区域均受到损伤。虽然在等离子体处理过程中会产生热量和臭氧,但在我们的低压等离子体系统中,这两个因素本身对野油菜黄单胞菌灭活的贡献较小。总体而言,我们已经表明,我们的低压等离子体系统在控制种子的植物病原菌污染方面具有很大的适用性。

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