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日粮添加活酵母对热应激和营养受限猪生长性能、代谢及炎症生物标志物的影响。

Effects of dietary live yeast supplementation on growth performance and biomarkers of metabolism and inflammation in heat-stressed and nutrient-restricted pigs.

作者信息

Mayorga Edith J, Kvidera Sara K, Horst Erin A, Al-Qaisi Mohmmad, McCarthy Carrie S, Abeyta Megan A, Lei Samantha, Elsasser Theodore H, Kahl Stanislaw, Kiros Tadele G, Baumgard Lance H

机构信息

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

U.S. Department of Agriculture, Animal Biosciences and Biotechnology Laboratory, Beltsville, MD 20705, USA.

出版信息

Transl Anim Sci. 2021 May 27;5(2):txab072. doi: 10.1093/tas/txab072. eCollection 2021 Apr.

Abstract

Study objectives were to determine the effects of dietary live yeast ( strain CNCM I-4407; ActisafHR+; 0.25g/kg of feed; Phileo by Lesaffre, Milwaukee, WI) on growth performance and biomarkers of metabolism and inflammation in heat-stressed and nutrient-restricted pigs. Crossbred barrows ( = 96; 79 ± 1 kg body weight []) were blocked by initial BW and randomly assigned to one of six dietary-environmental treatments: 1) thermoneutral () and fed ad libitum the control diet (), 2) TN and fed ad libitum a yeast containing diet (), 3) TN and pair-fed () the control diet (), 4) TN and PF the yeast containing diet (), 5) heat stress () and fed ad libitum the control diet (), or 6) HS and fed ad libitum the yeast diet (). Following 5 d of acclimation to individual pens, pigs were enrolled in two experimental periods (). During P1 (7 d), pigs were housed in TN conditions (20 °C) and fed their respective dietary treatments ad libitum. During P2 (28 d), HSCon and HSYeast pigs were fed ad libitum and exposed to progressive cyclical HS (28-33 °C) while TN and PF pigs remained in TN conditions and were fed ad libitum or PF to their HSCon and HSYeast counterparts. Pigs exposed to HS had an overall increase in rectal temperature, skin temperature, and respiration rate compared to TN pigs (0.3 °C, 5.5 °C, and 23 breaths per minute, respectively; < 0.01). During P2, average daily feed intake () decreased in HS compared to TN pigs (30%; < 0.01). Average daily gain and final BW decreased in HS relative to TN pigs ( < 0.01); however, no differences in feed efficiency () were observed between HS and TN treatments ( > 0.16). A tendency for decreased ADFI and increased G:F was observed in TNYeast relative to TNCon pigs ( < 0.10). Circulating insulin was similar between HS and TN pigs ( > 0.42). Triiodothyronine and thyroxine levels decreased in HS compared to TN treatments (~19% and 20%, respectively; < 0.05). Plasma tumor necrosis factor-alpha () did not differ across treatments ( > 0.57) but tended to decrease in HSYeast relative to HSCon pigs ( = 0.09). In summary, dietary live yeast did not affect body temperature indices or growth performance and had minimal effects on biomarkers of metabolism; however, it tended to improve G:F under TN conditions and tended to reduce the proinflammatory mediator TNF-α during HS. Further research on the potential role of dietary live yeast in pigs during HS or nutrient restriction scenarios is warranted.

摘要

研究目的是确定日粮添加活性酵母(菌株CNCM I - 4407;Actisaf HR+;0.25g/kg饲料;法国乐斯福公司,密尔沃基,威斯康星州)对热应激和营养限制猪生长性能以及代谢和炎症生物标志物的影响。杂交公猪(n = 96;体重79 ± 1 kg)按初始体重进行分组,并随机分配到六种日粮 - 环境处理之一:1)热中性(TN),自由采食对照日粮(Con);2)TN,自由采食含酵母日粮(Yeast);3)TN,配对饲喂(PF)对照日粮;4)TN,PF含酵母日粮;5)热应激(HS),自由采食对照日粮;或6)HS,自由采食酵母日粮。在个体栏舍适应5天后,猪进入两个实验阶段。在P1(7天)期间,猪饲养在TN条件(20°C)下,自由采食各自的日粮处理。在P2(28天)期间,HSCon和HSYeast组猪自由采食并暴露于渐进性周期性热应激(28 - 33°C),而TN和PF组猪仍处于TN条件下,自由采食或与HSCon和HSYeast组猪配对饲喂。与TN组猪相比,暴露于HS的猪直肠温度、皮肤温度和呼吸频率总体升高(分别为0.3°C、5.5°C和每分钟23次呼吸;P < 0.01)。在P2期间,与TN组猪相比,HS组猪的平均日采食量(ADFI)下降(30%;P < 0.01)。与TN组猪相比,HS组猪的平均日增重和末重下降(P < 0.01);然而,HS和TN处理之间的饲料效率(G:F)没有差异(P > 0.16)。与TNCon组猪相比,TNYeast组猪有ADFI下降和G:F升高的趋势(P < 0.10)。HS和TN组猪的循环胰岛素水平相似(P > 0.42)。与TN处理相比,HS组猪的三碘甲状腺原氨酸和甲状腺素水平下降(分别约为19%和20%;P < 0.05)。血浆肿瘤坏死因子 - α(TNF - α)在各处理间无差异(P > 0.57),但与HSCon组猪相比,HSYeast组猪有下降趋势(P = 0.09)。总之,日粮添加活性酵母不影响体温指标或生长性能,对代谢生物标志物影响最小;然而,在TN条件下它有改善G:F的趋势,在HS期间有降低促炎介质TNF - α的趋势。有必要进一步研究日粮活性酵母在猪热应激或营养限制情况下的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6a5/8223600/9e5d0454df64/txab072_fig1.jpg

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