首页> 外文期刊>Journal of Agricultural Science >Enzymatic Solubilisation and Degradation of Soybean Fibre Demonstrated by Viscosity, Fibre Analysis and Microscopy
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Enzymatic Solubilisation and Degradation of Soybean Fibre Demonstrated by Viscosity, Fibre Analysis and Microscopy

机译:粘度,纤维分析和显微镜观察表明大豆纤维的酶促增溶和降解

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The effect of a commercial multienzyme product obtained by fermentation from Aspergillus aculeatus on soybean and soybean meal was investigated using viscosity measurements, dietary fibre component analysis and different microscopy techniques utilizing histochemical dyes and antibody labelling. The results obtained demonstrated a strong viscosity reducing effect of the enzyme preparation on soluble galactomannan and xyloglucan polysaccharides and in addition non-starch polysaccharide analysis demonstrated a notable solubilisation of all polysaccharide constituents. The degradation of these components as native integral parts of cell walls upon exposure to the enzyme was visualized with microscopy. Two histochemical dyes, coriphosphine O and alcian blue were successfully used to follow pectin solubilisation after enzyme treatment. Commercial antibodies recognizing specific components of pectin and hemicellulose components of soybean cell wall were also used to visualize several enzyme activities in the commercial enzyme preparation The challenges of using commercial antibodies elicited from a given plant source to detect similar epitiopes on another plant source are also discussed. Non-starch polysaccharide analysis of the insoluble dietary fibre constituents before and after enzyme treatment corroborated the visualized mode of action demonstrated by microscopy. The combination of techniques provided visual and quantitative measurements of the solubilisation and degradation of hemicellulose pectic soybean cell wall components as part of the undesirable antinutrients in animal feed.
机译:使用粘度测量,膳食纤维成分分析和利用组织化学染料和抗体标记的不同显微镜技术,研究了从棘孢曲霉发酵获得的商用多酶产品对大豆和豆粕的影响。获得的结果证明了该酶制剂对可溶性半乳甘露聚糖和木葡聚糖多糖的强烈的降粘作用,此外,非淀粉多糖分析表明所有多糖成分均具有显着的增溶作用。这些组分作为细胞壁的天然组成部分的降解在暴露于酶后通过显微镜观察。酶处理后,成功使用两种组织化学染料Coriphosphine O和阿尔辛蓝来跟踪果胶增溶。还可将识别果胶中特定成分和大豆细胞壁半纤维素成分的商业抗体用于可视化商业酶制剂中的几种酶活性。还讨论了使用从给定植物来源获得的商业抗体来检测另一种植物来源的相似表位的挑战。 。酶处理之前和之后的不溶性膳食纤维成分的非淀粉多糖分析证实了显微镜显示的可视化作用方式。这些技术的结合提供了视觉和定量测量,作为动物饲料中不希望有的抗营养成分的半纤维素果胶大豆细胞壁成分的溶解和降解。

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