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Soybean (Glycine max) cell wall composition and availability to feed enzymes

机译:大豆(Glycine max)细胞壁的组成和可利用的酶

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Defatted untoasted soybean cotyledons and hulls were fractionated as water solutes (WSc and WSh) and water unextractable (WUc and WUh). Further fractionation of WUc through deproteinization yielded the isolation of a water unextractable solid (WUS) fraction that was mainly composed (molar percent) of galactose (28.1%), glucose (27.8%), arabinose (13.3%), and uronic acids (17.6%), which accounted for 76% of the water insoluble polysaccharides in soybean cotyledons (WUc). The cell wall (WUS) was sequentially fractionated with chelating agents (chelating agent soluble solids, ChSS) and a gradient of agents (dilute alkali, DASS; 1 M alkali, 1MASS; and 4M alkali, 4MASS), which gave a final cellulosic residue. The ChSS and DASS extracts were characterized as pectin-rich fractions, whereas 1 MASS and 4MASS were hemicellulose- and cellulose-rich fractions. Incubation in vitro of the WUc fraction with pectinase, cellulase, and xylanase resulted in the release of low amounts (not more than 5% bound basis) of monosaccharides, mostly uronic acids, xylose, and arabinose. Protein extraction hardly increased this release after enzymatic incubation (<7%). However, progressive fractionation of the cell wall matrix markedly increased the release of monosaccharides from pectin(ChSS and DASS) and hemicellulose-rich fractions (1MASS and 4MASS). Significant degradation of cellulose (up to 20%) was achieved only after complete protein, pectin, and hemicellulose extraction.
机译:将脱脂的未烘烤的大豆子叶和壳分离为水溶质(WSc和WSh)和不可萃取的水(WUc和WUh)。通过脱蛋白进一步分离WUc分离出水不可提取的固体(WUS)馏分,该馏分主要由(摩尔%)半乳糖(28.1%),葡萄糖(27.8%),阿拉伯糖(13.3%)和糖醛酸(17.6)组成%),占大豆子叶(WUc)中水不溶性多糖的76%。依次用螯合剂(螯合剂可溶固体,ChSS)和梯度试剂(稀碱,DASS; 1M碱,1MASS;和4M碱,4MASS)对细胞壁(WUS)进行分级,得到最终的纤维素残留物。 ChSS和DASS提取物的特征是富含果胶的馏分,而1 MASS和4MASS是富含半纤维素和纤维素的馏分。 WUc级分与果胶酶,纤维素酶和木聚糖酶的体外温育导致释放出少量(不超过5%结合基)的单糖,主要是糖醛酸,木糖和阿拉伯糖。酶促孵育后,蛋白质提取几乎不会增加这种释放(<7%)。然而,细胞壁基质的逐步分级显着增加了果胶(ChSS和DASS)和富含半纤维素的级分(1MASS和4MASS)中单糖的释放。仅在完全提取蛋白质,果胶和半纤维素后,才能实现纤维素的显着降解(最高20%)。

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