Xylanopectinolytic enzymes by marine actinomycetes from sediments of Sarena Kecil, North Sulawesi: high potential to produce galacturonic acid and xylooligosaccharides from raw biomass.

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Hana Nadhifah, Nanik Rahmani, Wibowo Mangunwardoyo, Yopi, Akhirta Atikana, Shanti Ratnakomala, Puspita Lisdiyanti
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Abstract

Background: Actinomycetes isolated from marine habitats are known to have the potential for novel enzymes that are beneficial in the industry. In-depth knowledge is necessary given the variety of this bacterial group in Indonesia and the lack of published research. Actinomycetes isolates (BLH 5-14) obtained from marine sediments of Sarena Kecil, Bitung, North Sulawesi, Indonesia, showed an ability to produce pectinase and xylanase that have equal or even higher potential for pectic-oligosaccharides (POS) and xylooligosaccharides (XOS) production from raw biomass than from commercial substrates. This study's objective was to characterize both enzymes to learn more for future research and development.

Results: Pectinase had the highest activity on the 6th day (1.44±0.08 U/mL) at the optimum pH of 8.0 and optimum temperature of 50 °C. Xylanase had the maximum activity on the 6th day (4.33±0.03 U/mL) at optimum pH 6.0 and optimum temperature 60 °C. Hydrolysis and thin layer chromatography also showed that pectinase was able to produce monosaccharides such as galacturonic acid (P1), and xylanase was able to yield oligosaccharides such as xylotriose (X3), xylotetraose (X4), and xylopentaose (X5). BLH 5-14 identified as the genus Streptomyces based on the 16S rDNA sequences and the closely related species Streptomyces tendae (99,78%).

Conclusions: In the eco-friendly paper bleaching industry, Streptomyces tendae has demonstrated the potential to create enzymes with properties that can be active in a wide range of pH levels. The oligosaccharides have the potential as prebiotics or dietary supplements with anti-cancer properties. Further research is needed to optimize the production, purification, and development of the application of pectinase and xylanase enzymes produced by Actinomycetes isolates.

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北苏拉威西岛Sarena Kecil沉积物中海洋放线菌的木聚糖水解酶:从原料生物质中生产半乳糖醛酸和低聚木糖的高潜力。
背景:从海洋生境中分离的放线菌被认为具有在工业上有益的新酶的潜力。鉴于印度尼西亚这种细菌群的多样性和缺乏已发表的研究,深入的知识是必要的。从印度尼西亚北苏拉威西岛比东的Sarena Kecil海洋沉积物中获得的放线菌分离物(BLH 5-14)显示出生产果胶酶和木聚糖酶的能力,从原料生物质中生产果胶寡糖(POS)和低聚木糖(XOS)的潜力与从商业底物中生产相同甚至更高。这项研究的目的是表征这两种酶,以便为未来的研究和开发了解更多。结果:最适pH为8.0,最适温度为50℃时,果胶酶在第6天的活性最高(1.44±0.08 U/mL)。在最适pH 6.0、最适温度60℃条件下,木聚糖酶活性在第6天达到最大值(4.33±0.03 U/mL)。水解和薄层色谱还表明,果胶酶能产生半乳糖醛酸(P1)等单糖,木聚糖酶能产生木糖三糖(X3)、木糖四糖(X4)和木糖戊糖(X5)等低聚糖。根据16S rDNA序列,BLH 5-14被鉴定为链霉菌属(Streptomyces tendae),近缘种链霉菌(Streptomyces tendae)为99.78%。结论:在环保纸张漂白行业,趋势链霉菌已经证明了创造酶的潜力,这些酶可以在很宽的pH水平范围内发挥活性。低聚糖具有作为益生元或具有抗癌特性的膳食补充剂的潜力。放线菌分离物产生的果胶酶和木聚糖酶的优化生产、纯化和开发应用有待进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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