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Enzymology properties of two different xylanases and their impacts on growth performance and intestinal microflora of weaned piglets

Enzymology properties of two different xylanases and their impacts on growth performance and intestinal microflora of weaned piglets

作     者:Qinghua Chen Mengwei Li Xiong Wang 

作者机构:College of Animal Science and Technology Hunan Agricultural University 

出 版 物:《Animal Nutrition》 (动物营养(英文版))

年 卷 期:2016年第2卷第1期

页      面:18-23页

学科分类:0710[理学-生物学] 090502[农学-动物营养与饲料科学] 0905[农学-畜牧学] 09[农学] 0906[农学-兽医学] 

基  金:supported by the 'the twelfth five-year-plan' of China national science and technology for the rural development (2013BAD10B00) 

主  题:Xylanase Enzymology characteristics Weaned piglet Growth performance Microbial flora 

摘      要:The enzyme xylanase is more and more widely used in feed production, but different xylanase have different properties, mechanism and application effects. To provide a theoretical basis for choosing more suitable xylanase in feed production, we selected bacterial xylanase(BX), labeled enzyme A, and trichoderma xylanase(TX), labeled enzyme B, and studied the enzymology properties and application effects on growth performance and gut flora in weaned piglets. The results showed that the activity levels of both appear parabolic along with increasing pH or temperature, but the amplitude of enzyme activity changing curves and the pH/temperature of optimal activity level are different, where enzyme A has the optimal activity level at 50 ℃ with a pH value of 5.0. The optimal activity level of enzyme B was achieved at 70 ℃ with a pH around 6.0. Enzyme B suffered very little activity loss with moisture level at16% and temperature from 80℃ to 90 ℃. Enzyme A suffered a big drop in activity level when processed with high temperature from around 80 ℃ to 90 ℃, and it was even completely inactivated at 90 ℃,Enzyme A has very low activity level after being processed in acid environment, but enzyme B has minor changes in activity level with respect to changes in acid level, indicating significantly different enzymatic properties between the two different sources of xylanases. In feeding experiment, the control group, was fed the basal diet, and the BX group and TX group were fed basal diets supplemented with 0,01% bacterial and fungal xylanases, respectively. The results showed that ADG of the BX group and TX group increased by 3.25%(P 0.05) and 8.22%(P 0.05), respectively compared with the control group; TX group had significantly higher(P 0.05) between BX group and TX group in terms of lactic acid bacteria E. coli level. We concluded that fungal xylanase(enzyme B) has better performances in improving weaned piglet growth and in increasing ileal lactic acid bacteria level compared with bacterial xylanase(enzyme A).

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