Department of Animal Sciences, University of Illinois at Urbana-Champaign, Urbana 61801, USA.
J Anim Sci. 2013 Mar;91(3):1391-9. doi: 10.2527/jas.2012-5281. Epub 2013 Jan 10.
Two experiments were conducted to determine apparent ileal digestibility (AID) and standardized (SID) ileal digestibility of AA (Exp. 1) and the concentration of DE and ME (Exp. 2) in copra meal (CM), palm kernel expellers from Indonesia (PKE-IN), palm kernel expellers from Costa Rica (PKE-CR), palm kernel meal from Costa Rica (PKM), and soybean meal (SBM). In Exp. 1, 6 barrows (BW = 34.0 ± 1.4 kg) were randomly allotted to a 6 × 6 Latin square design with 6 diets and 6 periods. One diet contained 30% SBM and 4 diets were formulated with 20% SBM and 30% (as-fed basis) CM, PKE-IN, PKE-CR, or PKM. The last diet was an N-free diet that was used to measure basal endogenous losses of CP and AA. The SID of CP and all indispensable AA except Met, Thr, and Trp was less (P < 0.05) in CM than in SBM, and the SID of CP and all indispensable AA except Trp was less (P < 0.05) in PKE-IN than in SBM. There were no differences (P > 0.05) in the SID of CP and all indispensable AA between PKE-CR and SBM, but the SID of CP and all indispensable AA were less (P < 0.05) in PKM than in SBM. The SID of CP was less (P < 0.05) in PKM compared with CM and PKE-CR, but there were no differences (P > 0.05) in the SID of all indispensable AA among CM, PKE-IN, PKE-CR, and PKM. In Exp. 2, 48 barrows (BW = 35.2 ± 3.0 kg) were housed individually in metabolism cages and allotted to 6 diets in a randomized complete block design with 8 replicate pigs per diet. A corn-based diet and 5 diets containing 70% of the corn diet and 30% of CM, PKE-IN, PKE-CR, PKM, or SBM were formulated, and the DE and ME in CM, PKE-IN, PKE-CR, PKM, and SBM were calculated using the substitution procedure. The DE (3692, 3304, 2994, and 2905 kcal/kg DM) and ME (3496, 3184, 2883, and 2766 kcal/kg DM) in CM, PKE-IN, PKE-CR, and PKM, respectively, were less (P < 0.05) than the DE and ME in SBM (4275 and 4062 kcal/kg DM, respectively). Copra meal had greater (P < 0.05) DE than PKE-IN, PKE-CR, and PKM and greater (P < 0.05) ME than PKE-CR and PKM. The DE in PKE-IN was greater (P < 0.05) than in PKM. In conclusion, the SID of most indispensable AA is less in CM, PKE-IN, and PKM than in SBM, but no differences among CM, PKE-IN, PKE-CR, and PKM were observed. The concentrations of DE and ME are less in CM, PKE-IN, PKE-CR, and PKM than in SBM. The DE and ME of CM are greater than in PKE-CR and PKM.
进行了两项实验,以确定椰子粕(CM)、印度尼西亚的棕榈仁粕(PKE-IN)、哥斯达黎加的棕榈仁粕(PKE-CR)、哥斯达黎加的棕榈仁粕(PKM)和大豆粕(SBM)中的 AA(实验 1)和 DE 和 ME(实验 2)的表观回肠可消化率(AID)和标准化回肠可消化率(SID)。在实验 1 中,将 6 头阉公猪(BW=34.0±1.4kg)随机分配到 6×6 拉丁方设计的 6 种日粮和 6 个时期。一种日粮含有 30%的 SBM,4 种日粮是用 20%的 SBM 和 30%(以干物质为基础)的 CM、PKE-IN、PKE-CR 或 PKM 配制的。最后一种日粮是无氮日粮,用于测量 CP 和 AA 的基础内源性损失。CM 中 CP 和除 Met、Thr 和 Trp 之外的所有必需 AA 的 SID 均低于 SBM(P<0.05),PKE-IN 中 CP 和除 Trp 之外的所有必需 AA 的 SID 均低于 SBM(P<0.05)。PKE-CR 和 SBM 之间 CP 和所有必需 AA 的 SID 没有差异(P>0.05),但 PKM 中 CP 和所有必需 AA 的 SID 均低于 SBM(P<0.05)。与 PKM 和 PKE-CR 相比,CP 的 SID 较低(P<0.05),但 CM、PKE-IN、PKE-CR 和 PKM 之间所有必需 AA 的 SID 没有差异(P>0.05)。在实验 2 中,将 48 头阉公猪(BW=35.2±3.0kg)单独饲养在代谢笼中,并按随机完全区组设计分配到 6 种日粮中,每种日粮有 8 个重复猪。配制了一种以玉米为基础的日粮和 5 种含有 70%玉米日粮和 30%CM、PKE-IN、PKE-CR、PKM 或 SBM 的日粮,并使用替代程序计算 CM、PKE-IN、PKE-CR、PKM 和 SBM 中的 DE 和 ME。CM(3692、3304、2994 和 2905kcal/kg DM)和 ME(3496、3184、2883 和 2766kcal/kg DM)中的 DE 和 ME 分别低于 SBM(分别为 4275 和 4062kcal/kg DM)(P<0.05)。CM 的 DE(3692、3304、2994 和 2905kcal/kg DM)和 ME(3496、3184、2883 和 2766kcal/kg DM)高于 PKE-IN、PKE-CR 和 PKM(P<0.05),ME 高于 PKE-CR 和 PKM(P<0.05)。与 PKE-CR 和 PKM 相比,PKE-IN 的 DE 更高(P<0.05)。总之,CM、PKE-IN 和 PKM 中大多数必需 AA 的 SID 低于 SBM,但 CM、PKE-IN、PKE-CR 和 PKM 之间没有差异。CM、PKE-IN、PKE-CR 和 PKM 中的 DE 和 ME 浓度低于 SBM。CM 的 DE 和 ME 高于 PKE-CR 和 PKM。