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直接投喂微生物制剂PrimaLac和盐霉素可调节肉鸡的全身及肠道耗氧量以及肠道黏膜细胞因子的产生。

Direct-fed microbial PrimaLac and salinomycin modulate whole-body and intestinal oxygen consumption and intestinal mucosal cytokine production in the broiler chick.

作者信息

Chichlowski M, Croom J, McBride B W, Daniel L, Davis G, Koci M D

机构信息

Department of Poultry Science, North Carolina State University, Raleigh 27695, USA.

出版信息

Poult Sci. 2007 Jun;86(6):1100-6. doi: 10.1093/ps/86.6.1100.

DOI:10.1093/ps/86.6.1100
PMID:17495079
Abstract

The current study investigated whole-body O2 consumption, intestinal O2 consumption, and intestinal inflammation status through mucosal cytokine production on broiler chicks fed the direct-fed microbial PrimaLac. One hundred twenty 1-d-old broiler chicks were randomly assigned to 1 of 3 experimental diets: standard starter diet (control), standard starter diet with added salinomycin (SAL), and standard starter diet with added PrimaLac (DFM). Birds were housed in 2 separate rooms, the control and SAL treatments in one room and the DFM in another. Intact ileal and cecal samples were collected on d 19, 20, and 21 after measuring whole-body O2 consumption using indirect calorimetry. The O2 up-take of ileal tissue was measured using an in vitro O2 monitor. Analysis of intestinal immune status of broilers was measured by the relative differences in mRNA of both pro- and antiinflammatory cytokines: interleukin-(IL) 1beta, IL-6, and IL-10 using real-time reverse transcription-PCR. Broilers exhibited a 6 to 16% decrease in whole-body energy expenditures and up to a 47% decrease (P<0.05) in ileal energy expenditures in the DFM group compared with other treatments. The reverse transcription-PCR data demonstrated that DFM consortium numerically altered both pro- and antiinflammatory cytokines within the ileum of 19-d posthatch broilers. These data suggest that direct-fed microbials like PrimaLac increase metabolic efficiency via changes in intestinal physiology and metabolism.

摘要

本研究通过对饲喂直接投喂微生物制剂PrimaLac的肉鸡雏鸡进行黏膜细胞因子产生情况的检测,来研究其全身氧气消耗、肠道氧气消耗及肠道炎症状态。120只1日龄肉鸡雏鸡被随机分配到3种试验日粮中的1种:标准开食日粮(对照组)、添加盐霉素的标准开食日粮(SAL)和添加PrimaLac的标准开食日粮(DFM)。鸡只饲养在2个单独的房间,对照组和SAL处理组在一个房间,DFM处理组在另一个房间。在使用间接测热法测量全身氧气消耗后的第19、20和21天,采集完整的回肠和盲肠样本。使用体外氧气监测仪测量回肠组织的氧气摄取量。通过实时逆转录PCR检测促炎和抗炎细胞因子(白细胞介素-(IL)1β、IL-6和IL-10)mRNA的相对差异,来测定肉鸡的肠道免疫状态。与其他处理组相比,DFM组肉鸡的全身能量消耗降低了6%至16%,回肠能量消耗最多降低了47%(P<0.05)。逆转录PCR数据表明,DFM组合在孵化后19天的肉鸡回肠内,在数值上改变了促炎和抗炎细胞因子。这些数据表明,像PrimaLac这样的直接投喂微生物通过改变肠道生理和代谢来提高代谢效率。

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