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在不同剩余采食量选择的猪中,肠道完整性、内毒素转运和解毒。

Intestinal integrity, endotoxin transport and detoxification in pigs divergently selected for residual feed intake.

机构信息

Department of Animal Science, Iowa State University, Ames, IO 50011, USA.

出版信息

J Anim Sci. 2013 May;91(5):2141-50. doi: 10.2527/jas.2012-6053. Epub 2013 Mar 5.

Abstract

Microbes and microbial components potentially impact the performance of pigs through immune stimulation and altered metabolism. These immune modulating factors can include endotoxin from gram negative bacterial outer membrane component, commonly referred to as lipopolysaccharide (LPS). In this study, our objective was to examine the relationship between intestinal barrier integrity, endotoxin and inflammation with feed efficiency (FE), using pig lines divergently selected for residual feed intake (RFI) as a model. Twelve gilts (62 ± 3 kg BW) from the low RFI (LRFI, more efficient) and 12 from the high RFI (HRFI, less efficient) were used. Individual performance data was recorded for 5 wk. At the end of the experimental period, ADFI of LRFI pigs was less (P < 0.001), ADG not different between the 2 lines (P = 0.72) but the G:F of LRFI pigs was greater than for HRFI pigs (P = 0.019). Serum endotoxin concentration (P < 0.01) and the acute phase protein haptoglobin (P < 0.05) were greater in HRFI pigs. Transepithelial resistance of the ileum, transport of fluorescein isothiocyanate labeled-Dextran and-LPS in ileum and colon, as well as tight junction protein mRNA expression in ileum, did not differ between the lines, indicating the 2 lines did not differ in transport characteristics at the intestinal level. Ileum inflammatory markers, myeloperoxidase (P < 0.05) and IL-8 (P < 0.10), were found to be greater in HRFI pigs. Alkaline phosphatase (ALP) activity was significantly increased in the LRFI pigs in ileum and liver tissues and negatively correlated with blood endotoxin (P < 0.05). Lysozyme activity in the liver was not different between the lines; however, the LRFI pigs had a twofold greater lysozyme activity in ileum (P < 0.05). Despite the difference in their activity, ALP or lysozyme mRNA expression was not different between the lines in either tissue. Decreased endotoxin and inflammatory markers and the enhanced activities of antimicrobial enzymes in the LRFI line may not fully explain the difference in the FE between the lines, but they have the potential to prevent the growth potential in HRFI pigs. Further studies are needed to identify the other mechanisms that may contribute to the greater endotoxin and acute phase proteins in the HRFI pigs and the greater FE in the LRFI pigs.

摘要

微生物和微生物成分通过免疫刺激和代谢改变可能影响猪的性能。这些免疫调节因子可以包括革兰氏阴性菌外膜成分的内毒素,通常称为脂多糖(LPS)。在这项研究中,我们的目的是检查肠道屏障完整性、内毒素和炎症与饲料效率(FE)之间的关系,使用残留饲料摄入量(RFI)差异选择的猪系作为模型。12 头母猪(62±3kgBW)来自低 RFI(LRFI,更有效)和 12 头来自高 RFI(HRFI,效率较低)。记录了 5 周的个体性能数据。在实验结束时,LRFI 猪的 ADFI 较低(P<0.001),2 条线之间的 ADG 没有差异(P=0.72),但 LRFI 猪的 G:F 大于 HRFI 猪(P=0.019)。HRFI 猪的血清内毒素浓度(P<0.01)和急性相蛋白触珠蛋白(P<0.05)较高。回肠的上皮间电阻、荧光素异硫氰酸酯标记的葡聚糖和 LPS 在回肠和结肠中的转运以及回肠中紧密连接蛋白 mRNA 的表达在两条线之间没有差异,表明两条线在肠道水平的转运特性上没有差异。发现 HRFI 猪的回肠炎症标志物髓过氧化物酶(P<0.05)和 IL-8(P<0.10)较高。碱性磷酸酶(ALP)活性在 LRFI 猪的回肠和肝脏组织中显著增加,并与血液内毒素呈负相关(P<0.05)。两条线之间的肝脏溶菌酶活性没有差异;然而,LRFI 猪的回肠溶菌酶活性高两倍(P<0.05)。尽管它们的活性不同,但在两条线的任何组织中,ALP 或溶菌酶 mRNA 的表达都没有差异。LRFI 系中内毒素和炎症标志物的减少以及抗菌酶活性的增强可能无法完全解释两条线之间 FE 的差异,但它们有可能阻止 HRFI 猪的生长潜力。需要进一步的研究来确定可能导致 HRFI 猪中内毒素和急性期蛋白增加以及 LRFI 猪中 FE 增加的其他机制。

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