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饲喂有机或无机硒及吡哆醇的后备母猪所产猪囊胚的基因表达

Gene expression of porcine blastocysts from gilts fed organic or inorganic selenium and pyridoxine.

作者信息

Dalto B D, Tsoi S, Audet I, Dyck M K, Foxcroft G R, Matte J J

机构信息

Dairy and Swine Research and Development CentreAgriculture and Agri-Food Canada, 2000 College Street, Sherbrooke, Quebec, Canada J1M 0C8Department of AgriculturalFood and Nutritional Science, University of Alberta, Edmonton, Alberta, Canada T6G 2P5Department of Animal ScienceUniversidade Estadual de Londrina, Londrina, Paraná 86057-970, Brazil Dairy and Swine Research and Development CentreAgriculture and Agri-Food Canada, 2000 College Street, Sherbrooke, Quebec, Canada J1M 0C8Department of AgriculturalFood and Nutritional Science, University of Alberta, Edmonton, Alberta, Canada T6G 2P5Department of Animal ScienceUniversidade Estadual de Londrina, Londrina, Paraná 86057-970, Brazil.

Dairy and Swine Research and Development CentreAgriculture and Agri-Food Canada, 2000 College Street, Sherbrooke, Quebec, Canada J1M 0C8Department of AgriculturalFood and Nutritional Science, University of Alberta, Edmonton, Alberta, Canada T6G 2P5Department of Animal ScienceUniversidade Estadual de Londrina, Londrina, Paraná 86057-970, Brazil.

出版信息

Reproduction. 2015 Jan;149(1):31-42. doi: 10.1530/REP-14-0408. Epub 2014 Oct 17.

Abstract

In this study, we determined how maternal dietary supplementation with pyridoxine combined with different sources of selenium (Se) affected global gene expression of porcine expanded blastocysts (PEB) during pregnancy. Eighteen gilts were randomly assigned to one of the three experimental diets (n=6 per treatment): i) basal diet without supplemental Se or pyridoxine (CONT); ii) CONT+0.3 mg/kg of Na-selenite and 10 mg/kg of HCl-pyridoxine (MSeB610); and iii) CONT+0.3 mg/kg of Se-enriched yeast and 10 mg/kg of HCl-pyridoxine (OSeB610). All gilts were inseminated at their fifth post-pubertal estrus and killed 5 days later for embryo harvesting. A porcine embryo-specific microarray was used to detect differentially gene expression between MSeB610 vs CONT, OSeB610 vs CONT, and OSeB610 vs MSeB610. CONT gilts had lower whole blood Se and erythrocyte pyridoxal-5-P concentrations than supplemented gilts (P<0.05). No treatment effect was observed on blood plasma Se-glutathione peroxidase activity (P=0.57). There were 10, 247, and 96 differentially expressed genes for MSeB610 vs CONT, OSeB610 vs CONT, and OSeB610 vs MSeB610 respectively. No specific biological process was associated with MSeB610 vs CONT. However, for OSeB610 vs CONT, upregulated genes were related with global protein synthesis but not to selenoproteins. The stimulation of some genes related with monooxygenase and thioredoxin families was confirmed by quantitative real-time RT-PCR. In conclusion, OSeB610 affects PEB metabolism more markedly than MSeB610. Neither Se sources with pyridoxine influenced the Se-glutathione peroxidase metabolic pathway in the PEB, but OSeB610 selectively stimulated genes involved with antioxidant defense.

摘要

在本研究中,我们确定了母猪日粮中补充吡哆醇并结合不同来源的硒(Se)如何影响妊娠期间猪扩张囊胚(PEB)的整体基因表达。18头后备母猪被随机分配到三种实验日粮之一(每组n = 6):i)不添加硒或吡哆醇的基础日粮(对照);ii)对照+0.3毫克/千克亚硒酸钠和10毫克/千克盐酸吡哆醇(MSeB610);iii)对照+0.3毫克/千克富硒酵母和10毫克/千克盐酸吡哆醇(OSeB610)。所有后备母猪在青春期后第五次发情时进行授精,并在5天后宰杀以获取胚胎。使用猪胚胎特异性微阵列检测MSeB610与对照、OSeB610与对照以及OSeB610与MSeB610之间的差异基因表达。对照后备母猪的全血硒和红细胞吡哆醛-5-磷酸浓度低于补充组后备母猪(P<0.05)。未观察到对血浆硒谷胱甘肽过氧化物酶活性的处理效应(P = 0.57)。MSeB610与对照、OSeB610与对照以及OSeB610与MSeB610分别有10、247和96个差异表达基因。MSeB610与对照无特定生物学过程相关。然而,对于OSeB610与对照,上调基因与整体蛋白质合成相关,但与硒蛋白无关。通过定量实时RT-PCR证实了与单加氧酶和硫氧还蛋白家族相关的一些基因受到刺激。总之,OSeB610比MSeB610更显著地影响PEB代谢。吡哆醇与硒的来源均未影响PEB中的硒谷胱甘肽过氧化物酶代谢途径,但OSeB610选择性地刺激了与抗氧化防御相关的基因。

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