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Minimum inhibitory concentration of nano-silver bactericides for beneficial microbes and its effect on Ralstonia solanacearum and seed germination of Japanese Cucumber (Cucumis sativus)

机译:纳米银杀菌剂的最小抑制浓度及其对日本黄瓜菌和种子萌发的影响及其对日本黄瓜的种子萌发(Cucumis Sativus)

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摘要

Background Plant growth-promoting rhizobacteria (PGPR) are highly promising biofertilizers that contribute to eco-friendly sustainable agriculture. There have been many reports on the anti-microbial properties of nanoparticles (NPs). Toxic effects of NPs under laboratory conditions have also reported; however, there is a lack of information about their uptake and mobility in organisms under environmental conditions. There is an urgent need to determine the highest concentration of NPs which is not detrimental for growth and proliferation of PGPR. Methods Transmission electron microscopy (TEM) and scanning electron microscopy (SEM) were used to measure the size and shape of NPs. Minimum inhibitory concentrations (MIC) of nano-silver on selected beneficial microbes and Ralstonia solanacearum were measured using the microdilution broth method. The percentage of seed germination was measured under in vitro conditions. Results NPs were spherical with a size of 16 ± 6 nm. Nano-silver at 12–40 mg l−1 inhibited the growth of bacteria. Seed application at 40 mg l−1 protected seeds from R. solanacearum and improved the rate of seed germination.
机译:背景技术植物生长促进的relizobacteria(PGPR)是具有促进生态友好的可持续农业的生物元化器。有很多关于纳米颗粒(NPS)的抗微生物性质的报道。还报道了NPS在实验室条件下的毒性影响;然而,在环境条件下,缺乏有关他们的吸收和流动性的信息。迫切需要确定最高浓度的NPS,这是对PGPR的生长和增殖不利的NPS。方法使用透射电子显微镜(TEM)和扫描电子显微镜(SEM)测量NPS的尺寸和形状。使用微量稀释肉汤法测量选定的有益微生物和RalstoniaSolanacearum上的最小抑制浓度(MIC)纳米银。在体外条件下测量种子萌发的百分比。结果NPS是球形,尺寸为16±6nm。纳米银在12-40mg L-1抑制细菌的生长。种子施用在40mg L-1保护种子中,来自R.Solanacearum的种子,提高了种子萌发速率。

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