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High-level expression of an acidic thermostable xylanase in Pichia pastoris and its application in weaned piglets

机译:Pichia Pastoris中酸性热稳定木聚糖酶的高水平表达及其在断奶仔猪中的应用

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摘要

An acidic thermostable xylanase (AT-xynA) which was stable at low pH and high temperature was considered to have great potential in animal feed. For large-scale production, AT-xynA activity was enhanced about 1-fold in Pichia pastoris by constructing a double-copy expression strain in this study. Furthermore, impacts of different AT-xynA levels on growth performance, nutrient digestibility, short-chain fatty acids, and bacterial community in weaned piglets were determined. Compared with the control group, ADFI and ADG were higher for the pigs fed 4,000 or 6,000 U/kg AT-xynA (P < 0.05). AT-xynA supplementation also significantly increased the digestibility of OM, GE, and DM (P < 0.05). AT-xynA supplementation increased the concentrations of acetate in ileal (P < 0.01) and cecal digesta (P < 0.05). Isobutyrate (P < 0.05) and valerate (P < 0.05) concentrations in colonic digesta also significantly increased compared with the control group. AT-xynA supplementation increased the abundance of Lactobacillus in the ileal, cecal, and colonic digesta of weaned piglets (P < 0.05). AT-xynA alleviated anti-nutritional effects of nonstarch polysaccharides (NSP) by preventing the growth of Pateurella and Leptotrichia in the ileum (P < 0.05). AT-xynA increased the abundance of NSP-degrading bacteria, such as Ruminococcaceae, Prevotella in the cecum and colon (P < 0.05). In summary, AT-xynA addition could improve the growth performance of weaned piglets by altering gut microbiota.
机译:在低pH和高温下稳定的酸性热稳定的木聚糖酶(AT-XYNA)被认为具有巨大的动物饲料潜力。对于大规模的生产,通过在本研究中构建双重拷贝表达菌株,在Pichia Pastoris中提高了约1倍的Xyna活性。此外,确定了不同AT-XYNA水平对生长性能,营养消化率,短链脂肪酸和断奶仔猪中的细菌群落的影响。与对照组相比,饲喂4,000或6,000 u / kg AT-XYNA的猪的ADFI和ADG较高(P <0.05)。 AT-XYNA补充还显着提高了OM,GE和DM的消化率(P <0.05)。 XYNA补充在髂骨中增加乙酸盐(P <0.01)和CeCal Digesta(P <0.05)。与对照组相比,异丁丁酸酯(P <0.05)和戊酯(P <0.05)浓度也显着增加。 AT-XYNA补充在断奶仔猪的髂骨,肠和结肠内消化物中增加了乳杆菌的丰度(P <0.05)。通过预防回肠生长和leptoTrichia的生长(P <0.05),通过防止菌菌和LeptoTrichia的生长缓解了非淀粉多糖(NSP)的抗营养作用(P <0.05)。在-Xyna增加了盲肠和结肠中的Nsp降解细菌的丰度,例如喇叭杆菌,Phivotella(p <0.05)。总之,AT-XYNA添加可以通过改变肠道微生物液来改善断奶仔猪的生长性能。

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