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首页> 外文期刊>American Journal of Physiology >Gluconeogenesis and glycogen metabolism during development of Pacific abalone, Haliotis discus hannai
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Gluconeogenesis and glycogen metabolism during development of Pacific abalone, Haliotis discus hannai

机译:太平洋鲍鱼开发期间葡糖苷和糖原代谢,哈伊斯斯科斯汉联

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摘要

In lecithotrophic larvae, egg yolk nutrients are essential for development. Although yolk proteins and lipids are the major nutrient sources for most animal embryos and larvae, the contribution of carbohydrates to development has been less understood. In this study, we assessed glucose and glycogen metabolism in developing Pacific abalone, a marine gastropod mollusc caught and cultured in east Asia. We found that glucose and glycogen content gradually elevated in developing abalone larvae, and coincident expression increases of gluconeogenic genes and glycogen synthase suggested abalone larvae had activated gluconeogenesis and glycogenesis during this stage. At settling, however, glycogen sharply decreased, with concomitant increases in glucose content and expression of Pyg and G6pc, suggesting the settling larvae had enhanced glycogen conversion to glucose. A liquid chromatography-mass spectrometry (LC/MS)-based metabolomic approach that detected intermediates of these pathways further supported active metabolism of glycogen. Immunofluorescence staining and in situ hybridization suggested the digestive gland has an important role as glycogen storage tissue during settlement, while many other tissues also showed a capacity to metabolize glycogen. Finally, inhibition of glycolysis affected survival of the settling veliger larvae, revealing that glucose is, indeed, an important nutrient source in settling larvae. Our results suggest glucose and glycogen are required for proper energy balance in developing abalone and especially impact survival during settling.
机译:在岩浆幼虫中,蛋黄营养对发展至关重要。虽然蛋黄蛋白和脂质是大多数动物胚胎和幼虫的主要营养来源,但碳水化合物对发展的贡献已经不太了解。在这项研究中,我们评估了发展太平洋鲍鱼的葡萄糖和糖原代谢,捕获和在东亚培养的海洋胃胃部软骨。我们发现,在发育鲍鱼幼虫中逐渐升高的葡萄糖和糖原含量,葡糖原基因和糖原合酶的重合表达增加提出了鲍鱼幼虫在该阶段的活化糖生成和糖血糖发生。然而,在沉降时,糖原急剧下降,伴随葡萄糖含量和PyG和G6Pc的表达增加,表明沉淀幼虫具有增强的糖原转化为葡萄糖。液相色谱 - 质谱(LC / MS)基于代谢的方法,其检测这些途径的中间体进一步支持糖原的活性代谢。免疫荧光染色和原位杂交表明消化腺在沉降过程中作为糖原储存组织具有重要作用,而许多其他组织也显示出代谢糖原的能力。最后,抑制糖酵解的抑制影响沉淀Veliger幼虫的存活,揭示葡萄糖是沉降幼虫的重要营养素来源。我们的结果表明葡萄糖和糖原需要适当的能量平衡在饱和期间在开发鲍鱼,特别是冲击生存期间。

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