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Dietary vitamin D3 deprivation suppresses fibroblast growth factor 23 signals by reducing serum phosphorus levels in laying hens

摘要The present study was carried out to evaluate the effect of dietary supplemental vitamin D3 on fibroblast growth factor 23(FGF23)signals as well as phosphorus homeostasis and metabolism in laying hens.Fourteen 40-week-old Hy-Line Brown layers were randomly assigned into 2 treatments:1)vitamin D3 restriction group(n=7)fed 0 IU/kg vitamin D3 diet,and 2)regular vitamin D3 group(n=7)fed 1,600 IU/kg vitamin D3 diet.The study lasted for 21 d.Serum parameters,phosphorus and calcium excretion status,and tissue expressions of type Ⅱ sodium-phosphate co-transporters(NPt2),FGF23 signals and vitamin D3 metabolic regulators were determined.Hens fed the vitamin D3 restricted diet had decreased serum phosphorus levels(by 31.3%,P=0.028)when compared to those fed regular vitamin D3 diet.In response to the decreased serum phosphorus,the vitamin D3 restricted laying hens exhibited:1)sup-pressed kidney expressions of 25-hydroxyvitamin D 1-α-hydroxylase(CYP27B1,by 52.8%,P=0.036)and 1,25-dihydroxyvitamin D 24-hydroxylase(CYP24A1,by 99.4%,P=0.032);2)suppressed serum levels of FGF23(by 14.6%,P=0.048)and increased serum alkaline phosphatase level(by 414.1%,P=0.012);3)decreased calvaria mRNA expressions of fibroblast growth factor receptors(FGFR1,by 85.2%,P=0.003,FGFR2,by 89.4%,P=0.014,FGFR3,by 88.8%,P=0.017,FGFR4,by 89.6%,P=0.030);4)decreased kidney mRNA expressions of FGFR1(by 65.5%,P=0.021),FGFR4(by 66.0%,P=0.050)and KLOTHO(by 68.8%,P=0.038);5)decreased kidney protein expression of type 2a sodium-phosphorus co-transporters(by 54.3%,P=0.039);and 6)increased percent excreta calcium(by 26.9%,P=0.002).In conclusion,the deprivation of dietary vitamin D3 decreased FGF23 signals in laying hens by reducing serum FGF23 level and suppressing calvaria and kidney mRNA expressions of FGF23 receptors.

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作者 Jiakun Yan [1] Chong Pan [1] Yanli Liu [1] Xujie Liao [1] Jionghao Chen [1] Yufei Zhu [1] Xinhuo Huang [2] Xiaojun Yang [1] Zhouzheng Ren [1] 学术成果认领
作者单位 College of Animal Science and Technology,Northwest A&F University,Yangling,Shaanxi,China [1] Nano Vitamin Engineering Research Center of Shaanxi Province,Xi'an,China [2]
发布时间 2022-08-18(万方平台首次上网日期,不代表论文的发表时间)
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动物营养(英文版)

动物营养(英文版)

2022年9卷2期

23-30页

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