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1,3-1,4-beta-Glucanases and not 1,4-beta-glucanases improve the nutritive value of barley-based diets for broilers

机译:1,3-1,4-β-葡聚糖酶而非1,4-β-葡聚糖酶可改善大麦类日粮对肉鸡的营养价值

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Barley-based diets contain a significant proportion of highly soluble 1,3-1,4-beta-glucans that display anti-nutritive properties for monogastric animals, in particular for poultry. Cleavage of mixed linked glucans by the addition of exogenous enzymes leads to a significant reduction in the degree of polymerization of the polysaccharide and a consequent reduction of digesta viscosity. Plant cell wall 1,3-1,4-beta-glucans may be hydrolyzed by 1,3-1,4-beta-glucanases (EC 3.2.1.73) or by 1,4-beta-glucanases (EC 3.2.1.4), generally termed cellulases, although it remains unknown which enzymes are more effective in the degradation of feed mixed linked anti-nutritive glucans. Here we compared the capacity of two recombinant Clostridium thermocellum enzymes, 1,3-1,4-beta-glucanase 16A (CtGlc16A) and 1,4-beta-glucanase 8A (CtCel8A), to improve the nutritive value of barley based diets for broilers. As already shown in a previous study (Ribeiro et al., 2012), CtGlc16A is very effective to improve the performance of broilers fed with a highly viscous barley -based diet. In contrast, although remaining active and retaining its molecular integrity during passage through the GI tract, CtCel8A was unable to affect the nutritive value of the cereal based diet. In vitro studies revealed that CtGlc16A and CtCel8A are equally effective in reducing the viscosity of a purified 1,3-1,4-beta-glucan solution. However, the capacity of CtCel8A to cleave 1,3-1,4-beta-glucans is significantly affected by the presence of the barley -based feed. Taken together the results suggest that in vivo 1,4-beta-glucanases tend to act preferentially on cellulosic substrates and not on mixed linked glucans. Although further work is required to extend these observations to other cellulases, the data suggest that exogenous 1,3-1,4-beta-glucanases but not 1,4-beta-glucanases are obligatory enzymes to improve the nutritive value of barley based diets for broilers. (C) 2015 Elsevier B.V. All rights reserved.
机译:大麦为基础的饮食包含很大比例的高可溶性1,3-1,4-β-葡聚糖,对单胃动物,特别是家禽具有抗营养作用。通过添加外源酶来切割混合连接的葡聚糖,会导致多糖的聚合度显着降低,进而导致消化液粘度降低。植物细胞壁1,3-1,4-β-葡聚糖可以被1,3-1,4-β-葡聚糖酶(EC 3.2.1.73)或被1,4-β-葡聚糖酶(EC 3.2.1.4)水解,通常称为纤维素酶,尽管尚不清楚哪种酶在混合饲料中添加抗营养葡聚糖更有效。在这里,我们比较了两种重组梭状热纤梭菌酶1,3-1,4-β-葡聚糖酶16A(CtGlc16A)和1,4-β-葡聚糖酶8A(CtCel8A)的能力,以提高基于大麦的日粮的营养价值肉鸡。如先前的研究(Ribeiro等人,2012)中已经显示的那样,CtGlc16A在提高以高粘度大麦为基础的日粮饲喂的肉鸡的生产性能方面非常有效。相反,尽管CtCel8A在通过胃肠道时仍保持活性并保持其分子完整性,但它不能影响谷物饮食的营养价值。体外研究表明,CtGlc16A和CtCel8A在降低纯化的1,3-1,4-β-葡聚糖溶液的粘度方面同样有效。但是,CtCel8A裂解1,3-1,4-β-葡聚糖的能力受到基于大麦的饲料的显着影响。综上所述,结果表明,体内1,4-β-葡聚糖酶倾向于优先作用于纤维素底物而不是混合连接的葡聚糖。尽管需要进一步的工作将这些发现扩展到其他纤维素酶,但数据表明外源的1,3-1,4-β-葡聚糖酶而不是1,4-β-葡聚糖酶是提高大麦饮食营养价值的必需酶。用于肉鸡。 (C)2015 Elsevier B.V.保留所有权利。

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