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首页> 外文期刊>Cereal Chemistry >Visualization of the anticaging effect of Ronozyme WX xylanase on wheat substrates.
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Visualization of the anticaging effect of Ronozyme WX xylanase on wheat substrates.

机译:可视化的Ronozyme WX木聚糖酶对小麦底物的抗凝作用。

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摘要

A fluorescence microscope was used for visualization of the anticaging effect of a commercial xylanase on milled wheat, microtome cuts of wheat grains, and digesta samples obtained from piglets 1 or 4 h after feeding a wheat-based diet (wheat 490 g/kg of diet, barley 100 g/kg of diet, and oats 100 g/kg of diet). Both starchy endosperm and aleurone cell walls were shown to be broken down by Ronozyme WX commercial xylanase. Data obtained by fluorescence microscopy was supplemented with measurements of starch and xylose released as a result of degradation of nonstarch polysaccharides by the xylanase. The results visualize and provide evidence that Ronozyme WX commercial xylanase can overcome the so-called cage effect. This release of nutrients from their encapsulation in cereal cell wall structures has positive impact on nutrient digestibility and partially explains the positive effect of xylanase supplementation on livestock performance.
机译:荧光显微镜用于观察商业化木聚糖酶对碾磨的小麦,小麦切片机切片和饲喂基于小麦的日粮(小麦490 g / kg日粮)后1或4小时获得的消化物样品的消结作用。 ,大麦100克/千克的饮食和燕麦100克/千克的饮食)。淀粉质胚乳和糊粉细胞壁均被Ronozyme WX商业木聚糖酶分解。通过荧光显微镜获得的数据补充了由于木聚糖酶降解非淀粉多糖而释放的淀粉和木糖的测量值。结果可视化并提供了证据,证明Ronozyme WX商业木聚糖酶可以克服所谓的笼子效应。从包裹在谷类细胞壁结构中的养分中释放出来的养分对养分的消化率具有积极影响,并部分解释了木聚糖酶对家畜生长性能的积极影响。

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