Chichlowski M, Croom J, McBride B W, Daniel L, Davis G, Koci M D
Department of Poultry Science, North Carolina State University, Raleigh 27695, USA.
Poult Sci. 2007 Jun;86(6):1100-6. doi: 10.1093/ps/86.6.1100.
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.
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。