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Brown seaweed processing: enzymatic saccharification of Laminaria digitata requires no pre-treatment

机译:褐海藻加工:不需要对海带指进行酶促糖化处理

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摘要

This study assesses the effect of different milling pre-treatments on enzymatic glucose release from the brown seaweed Laminaria digitata having high glucan (laminarin) content. Wet refiner milling, using rotating disc distances of 0.1-2 mm, generated populations of differently sized pieces of lamina having decreasing average surface area (100-0.1 mm(2)) with increased milling severity. Higher milling severity (lower rotating disc distance) also induced higher spontaneous carbohydrate solubilization from the material. Due to the seaweed material consisting of flat blades, the milling did not increase the overall surface area of the seaweed material, and size diminution of the laminas by milling did not improve the enzymatic glucose release. Milling was thus not required for enzymatic saccharification because all available glucose was released even from unmilled material. Treatment with a mixture of alginate lyase and a cellulase preparation (CellicA (R) CTec2) on large-sized milled material released all available glucose within 8 h. Application of the cellulase preparation alone released only half of the available glucose. The alginate lyase catalysis apparently induced selective removal of alginate to improve the cellulase catalyzed degradation of laminarin and cellulose in the material.
机译:这项研究评估了不同的碾磨预处理对具有高葡聚糖(laminarin)含量的褐藻海带中的酶促葡萄糖释放的影响。使用0.1-2 mm的转盘距离进行湿式精磨机铣削,会生成不同尺寸的薄片,其平均表面积(100-0.1 mm(2))会减小,而铣削的严重程度则会增加。较高的研磨强度(较低的转盘距离)也会导致材料中更高的自发碳水化合物溶解。由于海藻材料由扁平叶片组成,因此研磨不会增加海藻材料的总表面积,并且通过研磨减小叶片的尺寸不会改善酶促葡萄糖的释放。因此,酶促糖化不需要研磨,因为即使从未研磨的材料中释放出所有可用的葡萄糖。用藻酸盐裂解酶和纤维素酶制剂(CellicA(R)CTec2)的混合物在大型碾磨的物料上处理,在8小时内释放了所有可用的葡萄糖。单独使用纤维素酶制剂仅释放了可用葡萄糖的一半。藻酸盐裂解酶催化显然诱导选择性去除藻酸盐,以改善纤维素酶催化的材料中层板蛋白和纤维素的降解。

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