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Effect of early neonatal development and delayed feeding post-hatch on jejunal and ileal calcium and phosphorus transporter genes expression in broiler chickens

机译:早期新生儿发育及延迟饲料在肉鸡鸡的血管和髂钙和磷转运蛋白表达中的影响

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摘要

Calcium (Ca) and phosphorus (P) are essential minerals involved in many biological processes including bone development and mineralization. Plasma concentration of both minerals is tightly regulated, and Ca and P homeostasis is maintained via intestinal absorption, bone storage and exchange, and renal reabsorption. In the current broiler production systems, chicks are deprived of food and water for up to 72 h due to uneven hatching, hatchery procedures, and transportation time to farms. Post-hatch (PH) feed delay results in lower body and organ weight, higher feed conversion ratio and mortality, and delayed PH growth and GIT development. Little is known about the effects of early neonatal development and delayed or immediate feeding PH on Ca and P transporters. Therefore, the aim of the present study was to characterize expression patterns of Ca and P transporter genes in small intestine during the first 2 wk PH in chickens fed immediately after hatch (FED) or subjected to 48 h delayed feeding (NOTFED). Expression of all Ca and P transporters in jejunum and ileum was significantly (P 0.05) affected by age. Among Ca transporter genes, only mRNA expression of Calbidin D-28k in jejunum and Ca sensing receptor (CaSR) in ileum were significantly (P 0.05) affected by delay in feed access. For P transporter genes' expression, only P transporter type III (PIT1) mRNA was significantly affected by age, delay in feed access, and their interaction (P 0.05). In summary, we have shown, for the first time, early developmental changes of Ca and P transporter genes in broiler chickens. Results suggest that an increase in gene expression of some of the transporters corresponds with the switch from yolk to high starch diet. Overall, our results can be helpful in better understanding of Ca and P homeostasis in broilers.
机译:钙(CA)和磷(P)是涉及许多生物过程的必要矿物,包括骨骼发育和矿化。两种矿物质的血浆浓度都是紧密调节的,并且通过肠道吸收,骨储存和交换和肾重吸收来维持Ca和P宿潮。在目前的肉鸡生产系统中,由于孵化,孵化场手术和运输时间不均匀,雏鸡被剥夺了食物和水,最多可剥夺了72小时的农场。孵化后(pH)进料延迟导致较低的身体和器官重量,更高的饲料转化率和死亡率,以及延迟pH生长和GIT发育。关于早期新生儿发育和延迟或立即喂养pH对CA和P传送器的影响很少。因此,本研究的目的是在孵化(喂食)后的前2个WK pH中,在前2个WK pH下表征小肠中Ca和P托管基因的表达模式,或者在孵化(喂食)之后或进行48小时延迟饲料(NOTFED)。所有CA和P逆转器的表达在Jejunum和Hileum中的表达显着(p& 0.05)受年龄影响。在Ca转运蛋白基因中,Ileum中Jejunum和Ca传感受体(Casr)中的Calbidin D-28k的mRNA表达显着(p <0.05),受进料进入的延迟影响。对于P托管基因的表达,只有P托运器III型(PIT1)mRNA受年龄的显着影响,饲料延迟,它们的相互作用(P <0.05)。总之,我们首次显示了肉鸡鸡的Ca和P托管基因的早期发育变化。结果表明,一些转运蛋白的基因表达的增加对应于来自蛋黄的开关到高淀粉饮食。总的来说,我们的结果可以有助于更好地了解加入肉鸡的CA和P HoosoTasis。

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