Ying Linlin, Wu Hao, Zhou Shuaishuai, Lu Han, Ding Manyi, Wang Bo, Wang Shanshan, Mao Yanjun, Xiao Fenglin, Li Yao
Institute of Animal Nutrition, Northeast Agricultural University, Harbin, China.
Front Cell Dev Biol. 2022 Feb 23;10:816771. doi: 10.3389/fcell.2022.816771. eCollection 2022.
The purpose of the experiment was to investigate the Toll-like receptor signaling pathway of quercetin regulating avian beta-defensin (AvBD) in the ileum of Arbor Acre (AA) broilers. Four hundred and eighty one-day-old Arbor Acre broilers with similar body weight, half male and female, were randomly allotted to four treatments; the control treatment and three dietary treatments were fed with the basal diets supplemented with 0, 0.02%, 0.04, and 0.06% quercetin, respectively. The results showed that dietary quercetin supplementation did not significantly influence growth performance ( > 0.05), but significantly decreased the mortality rate of broilers by 85.74%, 85.74, and 71.28%, respectively ( < 0.05, F = 9.06). Compared with control, dietary supplementation with 0.04 and 0.06% quercetin significantly upregulated mRNA expression of total AvBD ( < 0.05), and there were no significant differences in the mRNA expression of AvBD1, AvBD2, and AvBD14 in three quercetin supplementation groups in the ileum of AA broilers ( > 0.05). Dietary supplementation with 0.02 and 0.06% quercetin significantly downregulated the mRNA expression of total Toll-like receptors ( < 0.05). Dietary quercetin supplementation significantly downregulated the mRNA expression of TLR1A, TLR1B, and TLR2A ( < 0.05); however, there were no significant differences in the mRNA expression of TLR2B, TLR5, and TLR15 ( > 0.05). Dietary quercetin supplementation significantly downregulated the mRNA expression of myeloid differentiation primary response protein 88 (MyD88) and TIR domain-containing adaptor protein/MyD88-adaptor-like (TIRAP/MAL) ( < 0.05), 0.02% quercetin significantly downregulated the mRNA expression of tank-binding kinase1 (TBK1), IκB kinase complex-α (IKKα), IKKβ, IKKε, nuclear factor-kappa B (NF-κB), NF-κB inhibitor-alpha (IκBα), IκBα, IκBβ, TNF-receptor-associated factor 3 (TRAF3), and interferons regulatory factor 7 (IRF7) ( < 0.05), 0.04% quercetin significantly downregulated the mRNA expression of IKKβ, IKKε, NF-κB, IκBα, IκBβ, TRAF3, and TRAF6 ( < 0.05), and 0.06% quercetin significantly downregulated the mRNA expression of TBK1 and IKKα ( < 0.05). 0.02% quercetin significantly decreased the relative abundance of , ( < 0.05), and ( < 0.01), 0.04% quercetin significantly decreased the relative abundance of ( < 0.05), , and ( < 0.01), and 0.06% quercetin significantly decreased the relative abundance of ( < 0.05) and ( < 0.01) in the ileum of AA broilers. These findings suggested that dietary quercetin supplementation regulated the mRNA expression of AvBD, TLR, and the TLR signaling pathways and NF-κB signalling pathways, thereby maintaining the microecological balance of the intestinal tract and decreasing the mortality of broilers, and the optimum addition amount of quercetin is 0.04% under the test conditions.
本实验旨在研究槲皮素对爱拔益加(AA)肉鸡回肠中禽类β-防御素(AvBD)的Toll样受体信号通路的影响。480只体重相近的1日龄AA肉鸡,雌雄各半,随机分为4组;对照组和3个日粮处理组分别饲喂添加0、0.02%、0.04%和0.06%槲皮素的基础日粮。结果表明,日粮中添加槲皮素对生长性能无显著影响(P>0.05),但显著降低了肉鸡死亡率,分别降低了85.74%、85.74%和71.28%(P<0.05,F = 9.06)。与对照组相比,日粮中添加0.04%和0.06%槲皮素显著上调了总AvBD的mRNA表达(P<0.05),在AA肉鸡回肠的3个槲皮素添加组中,AvBD1、AvBD2和AvBD14的mRNA表达无显著差异(P>0.05)。日粮中添加0.02%和0.06%槲皮素显著下调了总Toll样受体的mRNA表达(P<0.05)。日粮中添加槲皮素显著下调了TLR1A、TLR1B和TLR2A的mRNA表达(P<0.05);然而,TLR2B、TLR5和TLR15的mRNA表达无显著差异(P>0.05)。日粮中添加槲皮素显著下调了髓样分化初级反应蛋白88(MyD88)和含TIR结构域的接头蛋白/MyD88接头样蛋白(TIRAP/MAL)的mRNA表达(P<0.05),0.02%槲皮素显著下调了 Tank结合激酶1(TBK1)、IκB激酶复合体-α(IKKα)、IKKβ、IKKε、核因子-κB(NF-κB)、NF-κB抑制因子-α(IκBα)、IκBα、IκBβ、肿瘤坏死因子受体相关因子3(TRAF3)和干扰素调节因子7(IRF7)的mRNA表达(P<0.05),0.04%槲皮素显著下调了IKKβ、IKKε、NF-κB、IκBα、IκBβ、TRAF3和TRAF6的mRNA表达(P<0.05),0.06%槲皮素显著下调了TBK 和IKKα的mRNA表达(P<0.05)。0.02%槲皮素显著降低了AA肉鸡回肠中 、 (P<0.05)和 (P<0.01) 的相对丰度,0.04%槲皮素显著降低了 (P<0.05)、 和 (P<0.)的相对丰度,0.06%槲皮素显著降低了 (P<0.05)和 (P<0.01)的相对丰度。这些结果表明,日粮中添加槲皮素可调节AvBD、TLR及TLR信号通路和NF-κB信号通路的mRNA表达,从而维持肠道微生态平衡,降低肉鸡死亡率,在本试验条件下,槲皮素的最佳添加量为0.04%。