Richard Nadège, Fernández Ignacio, Wulff Tune, Hamre Kristin, Cancela Leonor, Conceição Luis E C, Gavaia Paulo J
CCMAR-CIMAR L.A., Centro de Ciências do Mar do Algarve, Universidade do Algarve, Campus de Gambelas, 8005-139, Faro, Portugal.
Mar Biotechnol (NY). 2014 Oct;16(5):522-37. doi: 10.1007/s10126-014-9571-2. Epub 2014 May 3.
Nutritional factors strongly influence fish larval development and skeletogenesis, and may induce skeletal deformities. Vitamin K (VK) has been largely disregarded in aquaculture nutrition, despite its important roles in bone metabolism, in γ-carboxylation of Gla proteins, and in regulating gene expression through the pregnane X receptor (Pxr). Since the mechanisms mediating VK effects over skeletal development are poorly known, we investigated the effects of VK-supplementation on skeletal development in Senegalese sole larvae, aiming to identify molecular pathways involved. Larvae were fed live preys enriched with graded levels of phylloquinone (PK) (0, 50, and 250 mg kg(-1)) and survival rate, growth, VK contents, calcium content and incidence of skeletal deformities were determined, revealing an improvement of larval performance and decreasing the incidence of deformities in VK-supplemented groups. Comparative proteome analysis revealed a number of differentially expressed proteins between Control and Diet 250 associated with key biological processes including skin, muscle, and bone development. Expression analysis showed that genes encoding proteins related to the VK cycle (ggcx, vkor), VK nuclear receptor (pxr), and VK-dependent proteins (VKDPs; oc1 and grp), were differentially expressed. This study highlights the potential benefits of increasing dietary VK levels in larval diets, and brings new insights on the mechanisms mediating the positive effects observed on larval performance and skeletal development.
营养因素对鱼类幼体发育和骨骼生成有强烈影响,并可能导致骨骼畸形。尽管维生素K(VK)在骨代谢、Gla蛋白的γ-羧化以及通过孕烷X受体(Pxr)调节基因表达方面发挥着重要作用,但在水产养殖营养中却 largely 被忽视。由于介导VK对骨骼发育影响的机制尚不清楚,我们研究了补充VK对塞内加尔鳎幼体骨骼发育的影响,旨在确定其中涉及的分子途径。给幼体投喂富含不同水平叶绿醌(PK)(0、50和250 mg kg(-1))的活饵,并测定存活率、生长、VK含量、钙含量和骨骼畸形发生率,结果显示补充VK的组幼体性能有所改善,畸形发生率降低。比较蛋白质组分析揭示了对照组和250组之间一些与关键生物学过程相关的差异表达蛋白质,包括皮肤、肌肉和骨骼发育。表达分析表明,编码与VK循环相关蛋白质(ggcx、vkor)、VK核受体(pxr)和VK依赖性蛋白质(VKDPs;oc1和grp)的基因存在差异表达。本研究突出了在幼体饲料中提高日粮VK水平的潜在益处,并为介导对幼体性能和骨骼发育所观察到的积极影响的机制带来了新的见解。