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Metabolomic insights into system-wide coordination of vertebrate metamorphosis

机译:脊椎动物变形的全系统协调的代谢组学见解

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摘要

BackgroundAfter completion of embryogenesis, many organisms experience an additional obligatory developmental transition to attain a substantially different juvenile or adult form. During anuran metamorphosis, the aquatic tadpole undergoes drastic morphological changes and remodelling of tissues and organs to become a froglet. Thyroid hormones are required to initiate the process, but the mechanism whereby the many requisite changes are coordinated between organs and tissues is poorly understood. Metabolites are often highly conserved biomolecules between species and are the closest reflection of phenotype. Due to the extensive distribution of blood throughout the organism, examination of the metabolites contained therein provides a system-wide overview of the coordinated changes experienced during metamorphosis. We performed an untargeted metabolomic analysis on serum samples from naturally-metamorphosing Rana catesbeiana from tadpoles to froglets using ultraperformance liquid chromatography coupled to a mass spectrometer. Total and aqueous metabolite extracts were obtained from each serum sample to select for nonpolar and polar metabolites, respectively, and selected metabolites were validated by running authentic compounds.
机译:背景技术胚胎发生完成后,许多生物体经历了额外的强制性发育过渡,以实现截然不同的少年或成年形式。在无水铀变态过程中,水生t经历剧烈的形态变化和组织器官的重塑,成为小青蛙。需要甲状腺激素来启动该过程,但人们对许多必需的变化在器官和组织之间协调的机理了解甚少。代谢物通常是物种之间高度保守的生物分子,并且是表型的最接近反映。由于血液在整个生物体中的分布广泛,因此对其中所含代谢物的检查提供了在变态过程中经历的协调变化的全系统概述。我们使用超高效液相色谱仪结合质谱仪,对自然变态的蛙蛙从ana到蛙的血清样品进行了非目标代谢组学分析。从每个血清样品中获得总代谢物和含水代谢物提取物,分别选择非极性和极性代谢物,并通过运行可靠的化合物对所选代谢物进行验证。

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