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Temperature responsiveness of gilthead sea bream bone; an in vitro and in vivo approach

机译:金头鲷鱼骨的温度响应性;体外和体内方法

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摘要

This study aimed to characterize the molecules involved in osteogenesis in seabream and establish using in vitro/in vivo approaches the responsiveness of selected key genes to temperature. The impact of a temperature drop from 23 to 13 °C was evaluated in juvenile fish thermally imprinted during embryogenesis. Both, in vitro/in vivo, Fib1a, appeared important in the first stages of bone formation, and Col1A1, ON and OP, in regulating matrix production and mineralization. OCN mRNA levels were up-regulated in the final larval stages when mineralization was more intense. Moreover, temperature-dependent differential gene expression was observed, with lower transcript levels in the larvae at 18 °C relative to those at 22 °C, suggesting bone formation was enhanced in the latter group. Results revealed that thermal imprinting affected the long-term regulation of osteogenesis. Specifically, juveniles under the low and low-to-high-temperature regimes had reduced levels of OCN when challenged, indicative of impaired bone development. In contrast, gene expression in fish from the high and high-to-low-temperature treatments was unchanged, suggesting imprinting may have a protective effect. Overall, the present study revealed that thermal imprinting modulates bone development in seabream larvae, and demonstrated the utility of the in vitro MSC culture as a reliable tool to investigate fish osteogenesis.
机译:这项研究旨在表征与鲷鱼成骨有关的分子,并使用体外/体内方法建立所选关键基因对温度的响应性。在胚胎发生过程中热烙印的幼鱼中,评估了温度下降23至13 C的影响。在骨骼形成的第一阶段,Fib1a在体外/体内都显得很重要,而在调节基质的产生和矿化方面,Col1A1,ON和OP都显得很重要。当矿化更加激烈时,在最终幼虫阶段,OCN mRNA水平上调。此外,观察到温度相关的差异基因表达,与在22 C时相比,在18 C时幼虫的转录水平较低,这表明后者的骨形成得到增强。结果显示,热压印影响骨形成的长期调节。具体而言,在低温和低温至高温条件下的少年在受到挑战时的OCN含量降低,表明骨骼发育受损。相比之下,高温和高温至低温处理在鱼类中的基因表达没有变化,表明印迹可能具有保护作用。总体而言,本研究表明,热印迹可调节鲷鱼幼虫的骨骼发育,并证明了体外MSC培养作为研究鱼类成骨的可靠工具的实用性。

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