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Effects of dietary selenium deficiency or excess on gene expression of selenoprotein N in chicken muscle tissues

机译:饮食中硒缺乏或过量对鸡肌肉组织硒蛋白N基因表达的影响

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Previous studies have determined the effects of dietary selenium (Se) supplementation on selenoprotein N (SelN, SEPN1), selenophosphate synthetase-1 (SPS1), and selenocysteine-synthase (SecS) mRNA abundance in chicken skeletal and cardiac muscles. To investigate collective responses of these genes to dietary Se concentrations ranging from deficiency to moderately high level in muscle tissues of chicken, 1-day-old chickens were exposed to a diet of deficient Se and supplemented with Se (0.15 mg Se/kg and 1.50 mg Se/kg) as sodium selenite in the feed for 35 days. Muscle tissues (flight, breast, leg, and cardiac muscles) were collected and examined for Se content and mRNA levels of SelN on days 1, 15, 25, and 35 days, respectively. Moreover, SPS1 and SecS mRNA levels were analyzed. The results showed that the expression of SelN gene in cardiac muscle responded to dietary Se concentrations. SelN gene was downregulated in the Se deficiency group (L group), and upregulated in the Se excess group (H group) compared with the moderate Se group (M group) (P < 0.05) in cardiac muscle. Se deficiency mainly unregulated SelN mRNA level in skeletal muscles compared with M group. Excess dietary Se mainly resulted in the upregulation of SelN mRNA level in skeletal muscles compared with the M group. SecS mRNA levels responded to dietary Se concentrations showed a similar change compared with SelN in cardiac muscle. SPS1 mRNA levels responded to dietary Se concentrations showed a downregulation in L group and upregulation in H group. However, SelN mRNA levels displayed a different expression pattern in different skeletal and cardiac muscles. Moreover, Se also regulated the levels of SPS1 and SecS mRNAs. In summary, Se regulated the expression of SelN gene and affected the mRNA levels of SecS and SPS1. The level of Se in the feed may regulate SelN biosynthesis by affecting the levels of SPS1 and SecS mRNA.
机译:以前的研究已经确定饮食中硒(Se)对鸡骨骼肌和心肌中硒蛋白N(SelN,SEPN1),硒磷酸合成酶-1(SPS1)和硒代半胱氨酸合酶(SecS)mRNA丰度的影响。为了研究这些基因对鸡肌肉组织中硒浓度从不足到中等高水平的集体反应,将1日龄鸡暴露于硒含量低的饮食中,并补充硒(0.15 mg Se / kg和1.50)饲料中的亚硒酸钠含量(mg Se / kg)35天。收集肌肉组织(飞行,胸部,腿部和心肌),并分别在第1、15、25和35天检查硒含量和SelN的mRNA水平。此外,分析了SPS1和SecS mRNA水平。结果表明,心肌中SelN基因的表达与饮食中硒的含量有关。与心肌中度硒组(M组)相比,硒缺乏组(L组)的SelN基因下调,而硒过量组(H组)的SelN基因上调(P <0.05)。与M组相比,Se缺乏症主要是骨骼肌中SelN mRNA水平不受调节。与M组相比,饮食中过量的Se主要导致骨骼肌中SelN mRNA水平的上调。饮食中硒浓度引起的SecS mRNA水平与心肌中SelN的变化相似。饮食硒浓度引起的SPS1 mRNA水平在L组下调而在H组上调。但是,SelN mRNA水平在不同的骨骼肌和心肌中显示出不同的表达模式。此外,硒还调节SPS1和SecS mRNA的水平。总之,Se调节SelN基因的表达并影响SecS和SPS1的mRNA水平。饲料中硒的水平可能会通过影响SPS1和SecS mRNA的水平来调节SelN的生物合成。

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