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小球藻可溶多糖的生产、提取与特性及其在 AgNPs 生物合成和植物生长生物刺激中的应用。

Production, extraction and characterization of Chlorella vulgaris soluble polysaccharides and their applications in AgNPs biosynthesis and biostimulation of plant growth.

机构信息

Department of Bioprocess Development, Genetic Engineering and Biotechnology Research Institute, City of Scientific Research and Technological Applications, Alexandria, Egypt.

Botany Department, Faculty of Science, Mansoura University, Mansoura, Egypt.

出版信息

Sci Rep. 2020 Feb 20;10(1):3011. doi: 10.1038/s41598-020-59945-w.

Abstract

Chlorella vulgaris, like a wide range of other microalgae, are able to grow mixotrophically. This maximizes its growth and production of polysaccharides (PS). The extracted polysaccharides have a complex monosaccharide composition (fructose, maltose, lactose and glucose), sulphate (210.65 ± 10.5 mg g PS), uronic acids (171.97 ± 5.7 mg g PS), total protein content (32.99 ± 2.1 mg g PS), and total carbohydrate (495.44 ± 8.4 mg g PS). Fourier Transform infrared spectroscopy (FT-IR) analysis of the extracted polysaccharides showed the presence of N-H, O-H, C-H, -CH, >CH, COO, S=O and the C=O functional groups. UV-Visible spectral analysis shows the presence of proteins, nucleic acids and chemical groups (ester, carbonyl, carboxyl and amine). Purified polysaccharides were light green in color and in a form of odorless powder. It was soluble in water but insoluble in other organic solvents. Thermogravimetric analysis demonstrates that Chlorella vulgaris soluble polysaccharide is thermostable until 240°C and degradation occurs in three distinct phases. Differential scanning calorimetry (DSC) analysis showed the characteristic exothermic transition of Chlorella vulgaris soluble polysaccharides with crystallization temperature peaks at 144.1°C, 162.3°C and 227.7°C. The X-ray diffractogram illustrated the semicrystalline nature of these polysaccharides. Silver nanoparticles (AgNPs) had been biosynthesized using a solution of Chlorella vulgaris soluble polysaccharides. The pale green color solution of soluble polysaccharides was turned brown when it was incubated for 24 hours with 100 mM silver nitrate in the dark, it showed peak maximum located at 430 nm. FT-IR analysis for the biosynthesized AgNPs reported the presence of carbonyl, -CH, >CH, C-H,-OH and -NH functional groups. Scanning and transmission electron microscopy show that AgNPs have spherical shape with an average particle size of 5.76. Energy-dispersive X-ray (EDX) analysis showed the dominance of silver. The biosynthesized silver nanoparticles were tested for its antimicrobial activity and have positive effects against Bacillus sp., Erwinia sp., Candida sp. Priming seeds of Triticum vulgare and Phaseolus vulgaris with polysaccharides solutions (3 and 5 mg mL) resulted in significant enhancement of seedling growth. Increased root length, leaf area, shoot length, photosynthetic pigments, protein content, carbohydrate content, fresh and dry biomass were observed, in addition these growth increments may be attributed to the increase of antioxidant activities.

摘要

小球藻等多种微藻都能够混合营养生长,这使其多糖(PS)的产量和生长达到最大化。提取的多糖具有复杂的单糖组成(果糖、麦芽糖、乳糖和葡萄糖)、硫酸盐(210.65±10.5mg/g PS)、糖醛酸(171.97±5.7mg/g PS)、总蛋白质含量(32.99±2.1mg/g PS)和总碳水化合物(495.44±8.4mg/g PS)。提取多糖的傅里叶变换红外光谱(FT-IR)分析表明存在 N-H、O-H、C-H、-CH、>CH、COO、S=O 和 C=O 官能团。紫外可见光谱分析表明存在蛋白质、核酸和化学基团(酯基、羰基、羧基和胺基)。纯化的多糖呈淡绿色,为无味粉末。它可溶于水,但不溶于其他有机溶剂。热重分析表明,小球藻可溶性多糖在 240°C 之前热稳定,并且在三个不同阶段发生降解。差示扫描量热法(DSC)分析表明,小球藻可溶性多糖具有特征性的放热转变,结晶温度峰值在 144.1°C、162.3°C 和 227.7°C。X 射线衍射图说明了这些多糖的半结晶性质。使用小球藻可溶性多糖溶液合成了银纳米颗粒(AgNPs)。当在黑暗中用 100mM 硝酸银孵育 24 小时时,淡黄色的可溶性多糖溶液变成棕色,其最大峰值位于 430nm。对于生物合成的 AgNPs 的傅里叶变换红外光谱(FT-IR)分析报告了存在羰基、-CH、>CH、C-H、-OH 和 -NH 官能团。扫描和透射电子显微镜显示,AgNPs 具有球形形状,平均粒径为 5.76nm。能量色散 X 射线(EDX)分析表明银的主导地位。生物合成的银纳米颗粒对芽孢杆菌、欧文氏菌和假丝酵母具有抗菌活性,并具有积极影响。用多糖溶液(3 和 5mg/mL)对小麦和菜豆种子进行预处理,可显著促进幼苗生长。观察到根长、叶面积、茎长、光合色素、蛋白质含量、碳水化合物含量、鲜重和干重增加,这些生长增量可能归因于抗氧化活性的增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2475/7033187/6ab2f2bf7103/41598_2020_59945_Fig1_HTML.jpg

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