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从海藻到海藻:从海洋中提取藻红蛋白的增强方法——从海洋中分离的真菌菌株木聚糖酶和纤维素酶活性的定量研究。

Quantification of Xylanolytic and Cellulolytic Activities of Fungal Strains Isolated from to Enhance R-Phycoerythrin Extraction of : From Seaweed to Seaweed.

机构信息

Nantes Université, Institut des Substances et Organismes de la Mer, ISOMer, UR 2160, F-44000 Nantes, France.

出版信息

Mar Drugs. 2023 Jul 5;21(7):393. doi: 10.3390/md21070393.

Abstract

R-phycoerythrin (R-PE) can be enzymatically extracted from red seaweeds such as . This pigment has numerous applications and is notably known as an antioxidant, antitumoral or anti-inflammatory agent. Enzymes secreted by associated fungal strains were assumed to be efficient and adapted for R-PE extraction from this macroalga. The aim of the present study was to quantify both xylanolytic and cellulolytic activities of enzymatic extracts obtained from six derived fungal strains. Degradation of biomass by fungal enzymatic extracts was also investigated, focused on soluble protein and R-PE extraction. Enzymatic extracts were obtained by solid state fermentation. Macroalgal degradation abilities were evaluated by measuring reducing sugar release using DNS assays. Soluble proteins and R-PE recovery yields were evaluated through bicinchoninic acid and spectrophotometric assays, respectively. Various enzymatic activities were obtained according to fungal isolates up to 978 U/mL for xylanase and 50 U/mL for cellulase. Enzymatic extract allowed high degrading abilities, with four of the six fungal strains assessed exhibiting at least equal results as the commercial enzymes for the reducing sugar release. Similarly, all six strains allowed the same soluble protein extraction yield and four of them led to an improvement of R-PE extraction. R-PE extraction from using marine fungal enzymes appeared particularly promising. To the best of our knowledge, this study is the first on the use of enzymes of associated fungi in the degradation of its own biomass for biomolecules recovery.

摘要

藻红蛋白(R-PE)可以从红海藻如 中通过酶提取得到。这种色素有许多应用,尤其作为一种抗氧化剂、抗肿瘤或抗炎剂而闻名。 相关真菌菌株分泌的酶被认为是从这种大型藻类中提取 R-PE 的有效且适应性强的酶。本研究的目的是定量测定从 6 株 来源的真菌菌株获得的酶提取物的木聚糖酶和纤维素酶活性。还研究了真菌酶提取物对 生物质的降解作用,重点是可溶性蛋白质和 R-PE 的提取。通过固态发酵获得酶提取物。通过 DNS 测定法测量还原糖释放来评估宏藻类的降解能力。通过双缩脲法和分光光度法分别评估可溶性蛋白质和 R-PE 的回收产率。根据真菌分离株获得了各种酶活性,木聚糖酶高达 978 U/mL,纤维素酶为 50 U/mL。酶提取物具有很高的降解能力,在所评估的 6 株真菌菌株中,有 4 株的还原糖释放与商业酶相当。同样,所有 6 株菌株都允许相同的可溶性蛋白质提取产率,其中 4 株菌株导致 R-PE 提取得到改善。使用海洋真菌酶从 提取 R-PE 似乎特别有前景。据我们所知,这是首次在降解其自身生物质以回收生物分子方面使用 相关真菌的酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3877/10381405/6ec23425295f/marinedrugs-21-00393-g001.jpg

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