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从堿性核苷类抗生素生物制造 ZnO NPs 以控制稻瘟病:对病原体()和宿主(水稻)的影响。

Bio-Fabrication of ZnONPs from Alkalescent Nucleoside Antibiotic to Control Rice Blast: Impact on Pathogen () and Host (Rice).

机构信息

Department of Resources and Environmental Microbiology, College of Land and Environment, Shenyang Agricultural University, Shenyang 110866, China.

Department of Plant Pathology, College of Plant Protection, Shenyang Agricultural University, Shenyang 110866, China.

出版信息

Int J Mol Sci. 2023 Feb 1;24(3):2778. doi: 10.3390/ijms24032778.

Abstract

In the traditional method of the bio-fabrication of zinc oxide nanoparticles (ZnONPs), bacterial strains face metal toxicity and antimicrobial action. In the current study, an alkalescent nucleoside antibiotic was mixed with zinc hexanitrate to fabricate the ZnONPs. An integrated approach of DIAION HP-20 macroporous resin and sephadex LH-20 column chromatography was adopted to separate and purify alkalescent nucleoside AN03 from . Alkalescent nucleoside was confirmed by the Doskochilova solvent system. The bio-fabricated ZnONPs were characterized by using Fourier transform infrared (FTIR), X-ray diffraction (XRD), and transmission electron microscopy (TEM) analyses. The XRD spectrum and the TEM images confirmed the crystallinity and the spherical shape of the ZnONPs with an average size of 22 nm. FTIR analysis showed the presence of functional groups, which confirmed the bio-fabrication of ZnONPs from alkalescent nucleoside ANO3. In-vitro studies showed that 75 μg/mL of ZnONPs had a strong inhibitory zone (28.39 mm) against the and significantly suppressed the spore germination. SEM and TEM observations respectively revealed that ZnONPs caused breakage in hyphae and could damage the cells of . Greenhouse experiments revealed that the foliar spray of ZnONPs could control the rice blast disease by 98%. Results also revealed that ZnONPs had positive effects on the growth of the rice plant. The present study suggested that ZnONPs could be fabricated from microbe-derived nucleoside antibiotics without facing the problems of metal toxicity and antimicrobial action, thus overcoming the problem of pathogen resistance. This could be a potent biocontrol agent in rice blast disease management.

摘要

在氧化锌纳米粒子(ZnONPs)的传统生物制造方法中,细菌菌株面临金属毒性和抗菌作用。在本研究中,碱性核苷抗生素与六硝酸锌混合制造 ZnONPs。采用 Diaion HP-20 大孔树脂和 Sephadex LH-20 柱层析的综合方法从 中分离和纯化碱性核苷 AN03。碱性核苷通过 Doskochilova 溶剂系统得到确认。通过傅里叶变换红外(FTIR)、X 射线衍射(XRD)和透射电子显微镜(TEM)分析来表征生物制造的 ZnONPs。XRD 光谱和 TEM 图像证实了 ZnONPs 的结晶度和球形,平均粒径为 22nm。FTIR 分析表明存在功能基团,这证实了碱性核苷 ANO3 生物制造 ZnONPs。体外研究表明,75μg/mL 的 ZnONPs 对 具有很强的抑制带(28.39mm),并显著抑制孢子萌发。SEM 和 TEM 观察分别显示,ZnONPs 导致菌丝断裂,并可能破坏 的细胞。温室实验表明,叶面喷施 ZnONPs 可控制水稻稻瘟病达 98%。结果还表明,ZnONPs 对水稻植株的生长有积极影响。本研究表明,ZnONPs 可以从微生物衍生的核苷抗生素中制造,而不会面临金属毒性和抗菌作用的问题,从而克服了病原体耐药性的问题。这可能是稻瘟病管理中的一种有效的生物防治剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa72/9918085/bb698588c8b3/ijms-24-02778-g001.jpg

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