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291 Effects of replacing inorganic trace minerals with low level of organic trace minerals on growth performance tissue mineral deposition and mineral excretion in piglets

机译:291在仔猪生长性能组织矿物沉积和仔猪中的矿物排泄中替代无机痕量矿物质的影响

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摘要

This study was conducted to investigate effects of inorganic trace mineral (ITMs) replacement with low level organic trace minerals (glycine complex minerals, GCMs; proteolytic complex minerals, PCMs) on growth, tissue mineral retention and mineral excretion in piglets. A total of 128 weaned piglets (Duroc × Landrace × Largewhite, 14.37 ± 0.32kg BW) aged 40d were randomly divided into 4 dietary treatments and fed for 28 days, with 4 replicates of 8 piglets per treatment. Dietary treatments were:(T1) basal + ITMs (Cu, Zn, Fe and Mn, sulfate) at 100% commercial level;(T2) basal + ITMs at 50% commercial level + GCMs at 50% commercial level;(T3) basal + GCMs at 50% commercial level;(T4) basal + PCMs at 50% commercial level respectively. On day 29, six piglets from each group were slaughtered to collect serum, muscle and organ samples. The results showed that ADG of T1, T2 and T3 was higher than that of T4 (P < 0.05), FCR of T1, T2 and T3 was lower than that of T4 (P < 0.01). The retention of trace minerals in tissues and serum is significantly correlated with the supplemental level and source of trace minerals. When 50% commercial level ITMs replaced with GCMs, Cu in serum, heart, liver and pancreas, Fe in liver and muscle was increased (P < 0.05), and liver Zn, Mn in heart, liver and muscle was increased (P < 0.01) respectively. Muscle Zn in T3 was higher than that from T4 (P < 0.05) with same level of organic minerals. Zn, Fe, Mn excreted from urine in pigs fed T2 diet was less than that from T1 (P < 0.05), and urine Zn in T3 treatment is lower than that from T4 (P < 0.05). This study indicated that dietary ITMs replacement with GCMs resulted in higher tissue minerals deposition, and organic trace minerals from GCMs exhibited higher bioavailability than those from PCMs.
机译:进行该研究以调查与低电平有机微量元素无机微量矿物质(ITMS)置换的影响;对生长,组织矿物保留和矿物质排泄仔猪(甘氨酸复合矿物质,环流模型蛋白水解复合矿物质,PCMS)。甲40D老化总共128头断奶仔猪(杜×长×Largewhite,14.37±0.32公斤BW)随机分为4个饮食治疗和喂养28天,用4个重复每个处理8头仔猪。膳食处理为:(T1)基+ ITMS(铜,锌,铁,锰,硫酸)以100%的商业水平;(T2)基+ ITMS在50%商业水平+环流模型以50%的商业水平;(T3)基+环流模型以50%的商业水平;(T4)基+的PCM在分别为50%商业水平。第29天,从每组6头被宰杀,收集血清,肌肉和器官标本。结果表明,T1,T2和T3的平均日增重显着比T4(P <0.05)高,T1,T2和T3的FCR比T4(P <0.01)低。在组织和血清的微量矿物质的保留与补充水平和微量矿物质的来源是显著相关。当50%的商业水平ITMS与大气环流取代,铜在血清,心脏,肝脏和胰腺的Fe,肝脏和肌肉增加(P <0.05),和肝锌,锰在心脏,肝脏和肌肉增加(P <0.01 ) 分别。肌肉中的Zn T3高于从T4(P <0.05)用的有机矿物质相同的水平。锌,铁,锰从尿中排出供入T2饮食猪明显低于从T1(P <0.05),和尿中的Zn T3治疗是低于从T4(P <0.05)。这项研究表明,饮食ITMS置换大气环流导致更高的组织的矿物质沉积,以及从大气环流有机微量矿物质显示出比那些从PCM的较高的生物利用率。

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