首页> 美国卫生研究院文献>Journal of Animal Science >PSIV-B-36 Late-Breaking: Selenium content and speciation in muscle of pigs fed diets supplemented with different selenium sources and doses
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PSIV-B-36 Late-Breaking: Selenium content and speciation in muscle of pigs fed diets supplemented with different selenium sources and doses

机译:PSIV-B-36晚期破裂:硒含量和猪肌肉的形态喂养饮食补充有不同的硒源和剂量

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摘要

Selenium (Se) is an essential element for pigs with diet being the major source of intake, while the metabolic process of different sources and doses of dietary Se in pigs muscle remains unclear. In this study, a reliable HPLC-ICP-MS approach was developed for analyzing selenium speciation in the muscle of pigs, which could analyze seven selenium speciation in ten minutes. This approach was used to study the metabolism of different sources and doses of dietary selenium in pigs muscle. In total, 108 castrated male pigs (Duroc × Landrace × Yorkshire, 61.3 ± 3.3 kg) were randomly assigned to six treatment groups with six replicates of three pigs per replicate. These six treatments received the same basal diet (0.1 mg Se/kg) without any Se supplement (BD-0.1), or basal diet supplemented with sodium selenite (0.25 mg Se/kg, SSe-0.25), methylselenocysteine (0.25 mg Se/kg, MeSeCys-0.25), or selenomethionine (0.25, 0.50, and 2.5 mg Se/kg, SeMet-0.25, SeMet-0.5, and SeMet-2.5) for 60 days. At the end of the experiment, six pigs from each group (one pig per replicate) were slaughtered and the longissimus dorsi muscle was collected for total Se and Se speciation analysis. The results showed that the selenium sources deposition efficiency was ranked as: selenomethionine > methylselenocysteine > selenite, and the muscle selenium content had a dose effect with selenomethionine supplementation (Figure 1). Four species of selenium were detected in the muscles of pigs, and the distribution of these selenium species were greatly affected by the dietary selenium supplementation forms and levels (Figure 2). Selenomethionine (> 70% of total selenium) and selenocystine (> 11%) were the major selenium species, followed by methylselenocysteine and selenourea. These findings could be advantageous for rational use of selenium supplements, as well as for selenium-enriched pork production.
机译:硒(SE)是猪的主要因素,饮食是主要的摄入来源,而猪肌肉中不同来源和剂量的膳食SE的代谢过程仍不清楚。在该研究中,开发了一种可靠的HPLC-ICP-MS方法,用于分析猪肌肉中的硒形态,这可以在十分钟内分析七种硒形态。这种方法用于研究不同来源的代谢和猪肌肉中膳食硒的代谢。总共108个阉割的雄性猪(Duroc×Landrace×Yorkshire,61.3±3.3 kg)随机分配给六个治疗组,每次重复六只猪复制。这六种处理得到了相同的基础饮食(0.1mg SE / kg),没有任何SE补充(BD-0.1),或补充亚硒酸钠(0.25mg SE / Kg,SSE-0.25),甲基硒细胞(0.25mg SE / kg,mesecys-0.25),或硒甲硫醚(0.25,0.50和2.5mg se / kg,Semet-0.25,Semet -0.5和Semet-2.5)60天。在实验结束时,屠宰了每组的六只猪(每次重复一猪),收集长肌肉肌肉,用于总SE和SE形态分析。结果表明,硒来源沉积效率被评为:硒甲基硫氨酸>甲基硒细胞>亚硒酸盐,肌肉硒含量与硒甲基硫醚补充剂(图1)进行剂量效果。在猪的肌肉中检测到四种硒,并且这些硒物种的分布受到膳食硒的浓度和水平的大大影响(图2)。 Selenomethionine(> 70%的总硒)和硒腺(> 11%)是主要硒物种,其次是甲基硒细胞和硒脲。这些发现对于合理使用硒补充剂以及富含硒的猪肉生产可能是有利的。

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