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Organic Chromium Form Alleviates the Detrimental Effects of Heat Stress on Nutrient Digestibility and Nutrient Transporters in Laying Hens

机译:有机铬形式减轻了热应激对饲养母鸡营养消化率和营养转运蛋白的不利影响

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In the present study, we investigated the effects of chromium-picolinate (CrPic) and chromium-histidinate (CrHis) on nutrient digestibility and nutrient transporters in laying hens exposed to heat stress (HS). Hens (n=1800; 16weeks old) were kept in cages in temperature-controlled rooms at either 22 +/- 2 degrees C for 24h/day (thermoneutral (TN)) or 34 +/- 2 degrees C for 8h/day, from 08:00 to 17:00, followed by 22 degrees C for 16h (HS) for 12weeks. Hens reared under both environmental conditions were fed one of three diets: a basal diet and the basal diet supplemented with either 1.600mg of CrPic (12.43% Cr) or 0.788mg of CrHis (25.22% Cr) per kg of diet, delivering 200g elemental Cr per kg of diet. HS impaired the nutrient digestibility and nutrient transports in laying hens (P<0.001). However, both Cr sources increased digestibility of dry matter (DM; P<0.001), organic matter (OM; P<0.05), crude protein (CP; P<0.001), and crude fat (CF; P<0.001). Both Cr sources partially alleviated detrimental effects of HS on fatty acid-binding and transport protein1 (FABP1, FATP1), glucose (SGLT1, GLUT1, GLUT10), protein (PepT1, PepT2), and amino acid transporters (ASCT1, b(o,+)AT1, CAT1, EAAT1, LAT1) of the ileum (P<0.0001). The efficacy of Cr as CrHis was more notable than Cr as CrPic, which could be attributed to higher bioavailability. Finally, the detrimental effects of HS on nutrient digestibility and nutrient transporters were alleviated by CrPic and CrHis. These findings may justify the use of CrPic and CrHis in poultry.
机译:在本研究中,我们研究了铬 - 吡啶鎓(CRPIN)和铬 - 组织酸盐(CRHHIS)对暴露于热应激(HS)的营养消化率和营养转运蛋白的影响。母鸡(n = 1800; 16周)在温度控制的房间里,在22 +/- 2℃下持续24小时/天(ThermoNeutral(TN))或34 +/- 2摄氏度8小时/天,从08:00到17:00,接着是12周的22°C(HS)。在环境条件下饲养的母鸡是三种饮食中的一种:基础饮食和基础饮食,补充有1.600mg的CRPIC(12.43%Cr)或每千克饮食0.788毫克(25.22%Cr),递送200g元素每千克饮食。 HS损害铺设母鸡中的营养消化率和营养转运(P <0.001)。然而,两个CR源都会增加干物质(DM; P <0.001)的消化率,有机物(OM; P <0.05),粗蛋白(CP; P <0.001)和粗脂肪(CF; P <0.001)。 CR来源部分缓解了HS对脂肪酸结合和转运蛋白1(FABP1,FATP1),葡萄糖(SGLT1,GLUT1,GLUT10),蛋白质(PEST1,PEPT2)和氨基酸转运蛋白(ASCT1,B(O, +)AT1,CAT1,EAAT1,LAT1)的回肠(P <0.0001)。 CR作为CRHIS的功效比CR为CRS作为CRPIC,这可能归因于更高的生物利用度。最后,通过CRPIC和CRHIS缓解了HS对营养消化率和营养转运蛋白的不利影响。这些发现可以证明使用CRPIC和CRHIS在家禽中的使用。

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