Suppr超能文献

铜源和饲粮添加水平对断奶仔猪生长性能及小肠微量元素相关基因表达的影响

Influence of copper source and dietary inclusion level on growth performance of weaned pigs and expression of trace element related genes in the small intestine.

机构信息

Wageningen University & Research, Animal Nutrition Group, Wageningen, the Netherlands.

Wageningen University & Research, Wageningen Livestock Research, Wageningen, the Netherlands.

出版信息

Animal. 2024 Apr;18(4):101113. doi: 10.1016/j.animal.2024.101113. Epub 2024 Feb 15.

Abstract

Copper is routinely supplemented to weanling pig diets at concentrations above nutritional requirements to enhance growth performance. We hypothesised that this effect depends on the source of Cu and its dietary concentration. We tested this in weaned pigs (26 d of age) over a 35-d period using a 2 × 3 factorial arrangement with two Cu-sources (CuSO and CuO, monovalent copper oxide, CoRouge®) and three supplementary dietary Cu-levels (15, 80 and 160 mg Cu/kg) as respective factors. Increasing Cu level linearly increased (P < 0.001) final BW and daily gain. These effects tended (P = 0.09) to be greater with CuO than CuSO. Feed conversion ratio decreased linearly (P < 0.001) with increasing dietary Cu content, independent of Cu source. Plasma Cu, Zn and Fe levels were unaffected, whereas liver Cu content increased quadratically (P < 0.001) with increasing dietary Cu content, with a larger increase (P < 0.001) with CuSO than CuO. Bile Cu content increased quadratically (P = 0.025) with increasing Cu content, irrespective of Cu source. RT-qPCR analysis revealed that increasing Cu content quadratically (P = 0.009) increased duodenal but not ileal metallothionein 1A (MT1A) mRNA, with greater effect (P = 0.010) of CuSO. Regardless of the Cu source, increasing Cu dose linearly increased (P = 0.006) duodenal DMT1/SLC11A2 mRNA but decreased ZIP4/SLC39A4 mRNA in duodenum (P < 0.001) and ileum (P < 0.005). ZnT10/SLC30A10 mRNA was significantly (P = 0.021) and numerically (P = 0.061) greater with CuO compared to CuSO, in duodenum and ileum, respectively. Copper content quadratically modulated duodenal but not ileal transferrin receptor (P = 0.029) and ferric reductase CYBRD1 mRNA (P = 0.022). In hypothalamus, high Cu dose (P = 0.024) and CuO as source (P = 0.028) reduced corticotropin-releasing hormone (CRH) mRNA. Low versus high CuSO increased corticotropin-releasing hormone receptor (CRHR2) mRNA, while low CuO had the opposite effect (P = 0.009). In conclusion, incremental Cu intake enhanced growth performance, with a tendency for a greater effect of CuO. The lower increase in duodenal MT1A mRNA and liver Cu content indicates that less Cu from CuO was absorbed by gut and sequestered in liver. Thus, high Cu absorption is not essential for its growth-promoting effect and dietary Cu may affect intestinal Fe and Zn absorption via the active, transcellular route. The effects on hypothalamic CRH and CRHR2 expression indicate a role for the hypothalamus in mediating the effects of Cu on growth performance.

摘要

铜通常以高于营养需求的浓度添加到断奶仔猪日粮中,以提高生长性能。我们假设这种效果取决于铜的来源及其日粮浓度。我们在断奶仔猪(26 日龄)中进行了为期 35 天的试验,采用 2×3 因子设计,有两个铜源(硫酸铜和氧化铜,一价氧化铜,科罗格®)和三个补充日粮铜水平(15、80 和 160mg/kg)作为各自的因子。增加铜水平线性增加(P<0.001)终体重和日增重。与硫酸铜相比,氧化铜的这种效果更显著(P<0.09)。随着日粮铜含量的增加,饲料转化率线性下降(P<0.001),与铜源无关。血浆铜、锌和铁水平不受影响,而肝脏铜含量则呈二次增加(P<0.001),随着日粮铜含量的增加,硫酸铜的增加幅度(P<0.001)大于氧化铜。胆汁铜含量随铜含量的增加呈二次增加(P=0.025),与铜源无关。实时定量 PCR 分析显示,随着铜含量的增加,十二指肠但不是回肠金属硫蛋白 1A(MT1A)mRNA 呈二次增加(P=0.009),硫酸铜的效果更大(P=0.010)。无论铜源如何,增加铜剂量都能线性增加(P=0.006)十二指肠 DMT1/SLC11A2mRNA,但降低十二指肠(P<0.001)和回肠(P<0.005)的 ZIP4/SLC39A4mRNA。与硫酸铜相比,在十二指肠和回肠中,铜锌转运蛋白 10/SLC30A10mRNA 分别显著(P=0.021)和数值上(P=0.061)更高。铜含量二次调节十二指肠而不是回肠转铁蛋白受体(P=0.029)和铁还原酶 CYBRD1mRNA(P=0.022)。在下丘脑中,高铜剂量(P=0.024)和氧化铜作为来源(P=0.028)降低促肾上腺皮质激素释放激素(CRH)mRNA。与高硫酸铜相比,低硫酸铜增加了促肾上腺皮质激素释放激素受体(CRHR2)mRNA,而低氧化铜则产生相反的效果(P=0.009)。总之,增量铜摄入可提高生长性能,氧化铜的效果有增加的趋势。十二指肠 MT1A mRNA 和肝脏铜含量的增加幅度较低表明,氧化铜被肠道吸收和肝脏隔离的铜较少。因此,高铜吸收对于其促生长作用并非必不可少,并且日粮铜可能通过主动的、细胞间途径影响肠道铁和锌的吸收。对下丘脑 CRH 和 CRHR2 表达的影响表明,下丘脑在调节铜对生长性能的影响中起作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验