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从分离放线菌菌株中生物合成的银纳米颗粒 (Ag NPs) 及其对斜纹夜蛾 Agrotis ipsilon 的影响。

Biosynthesized silver nanoparticles (Ag NPs) from isolated actinomycetes strains and their impact on the black cutworm, Agrotis ipsilon.

机构信息

Botany and Microbiology Dept., Faculty of Science, Al-Azhar University-Cairo, Cairo, Egypt.

Zoology and Entomology Dept., Faculty of Science, Al-Azhar University-Cairo, Cairo, Egypt.

出版信息

Pestic Biochem Physiol. 2023 Aug;194:105492. doi: 10.1016/j.pestbp.2023.105492. Epub 2023 Jun 10.

Abstract

Nanomaterials have been produced with the use of bio-nanotechnology, which is a low-cost approach. Currently, research is being conducted to determine whether actinomycetes isolated from Egyptian soil can biosynthesize Ag nanoparticles (Ag NPs) and characterized by using the following techniques: Transmission electron microscopy (TEM), Dynamic light scattering (DLS), Fourier transforms infrared (FT-IR), Energy-dispersive X-ray spectroscopy (EDX), UV-Vis spectroscopy and X-ray diffraction (XRD). The most promising actinomycetes isolate were identified, morphologically, biochemically, and molecularly. Streptomyces avermitilis Azhar A.4 was found to be able to reduce silver metal nanoparticles from silver nitrate in nine isolates collected from Egyptian soil. Toxicity of biosynthesized against 2nd and 4th larval instar of Agrotis ipsilon (Hufn.) (Lepidoptera: Noctuidae) was estimated. In addition, activity of certain vital antioxidant and detoxifying enzymes as well as midgut histology of treated larvae were also investigated. The results showed appositive correlations between larval mortality percentage (y) and bio-AgNPs concentrations (x) with excellent (R). The 4th larval instar was more susceptible than 2nd larval instar with LC (with 95% confirmed limits) =8.61 (2.76-13.89) and 26.44(13.25-35.58) ppml, respectively of 5 days from treatment. The initial stages of biosynthesized AgNps exposure showed significant increases in carboxylesterase (CarE) and peroxidases (PODs) activity followed by significant suppression after 5 days pos-exposure. While protease activity was significantly decreased by increasing time post-exposure. Midgut histology showed abnormality and progressive damage by increasing time post exposure leading to complete destruction of midgut cells after 5 days from exposure. These results make biosynthesized AgNPs an appropriate alternative to chemical insecticide in A. ipsilon management.

摘要

纳米材料是利用生物纳米技术生产的,这是一种低成本的方法。目前,正在研究从埃及土壤中分离出的放线菌是否可以生物合成银纳米粒子(Ag NPs),并使用以下技术进行表征:透射电子显微镜(TEM)、动态光散射(DLS)、傅里叶变换红外(FT-IR)、能谱(EDX)、紫外可见分光光度法(UV-Vis)和 X 射线衍射(XRD)。从埃及土壤中分离出的 9 株放线菌中,最有前途的放线菌被鉴定为形态学、生物化学和分子学。发现阿扎尔 A.4 链霉菌能够从硝酸银中还原银纳米颗粒。测定了生物合成的对 2 龄和 4 龄幼虫的银纹夜蛾(Hufn.)(鳞翅目:夜蛾科)的毒性。此外,还研究了处理幼虫的某些重要抗氧化和解毒酶的活性以及中肠组织学。结果表明,幼虫死亡率(y)与生物 AgNPs 浓度(x)之间存在正相关关系,相关系数(R)良好。4 龄幼虫比 2 龄幼虫更敏感,LC(置信限为 95%)分别为 8.61(2.76-13.89)和 26.44(13.25-35.58)ppml,5 天处理后。生物合成 AgNps 暴露的初始阶段,羧基酯酶(CarE)和过氧化物酶(PODs)活性显著增加,5 天暴露后显著抑制。而蛋白酶活性随着暴露时间的增加而显著降低。中肠组织学显示出异常和进行性损伤,随着暴露时间的增加,中肠细胞在 5 天后完全破坏。这些结果表明,生物合成的 AgNPs 是管理银纹夜蛾的一种合适的化学杀虫剂替代品。

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