首页> 外文期刊>Marine biotechnology >LC–MS/MS-Based Metabolome Analysis of Biochemical Pathways Altered by Food Limitation in Larvae of Ivory Shell, Emphasis Type='Italic'>Babylonia areolata/Emphasis>
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LC–MS/MS-Based Metabolome Analysis of Biochemical Pathways Altered by Food Limitation in Larvae of Ivory Shell, Emphasis Type='Italic'>Babylonia areolata/Emphasis>

机译:基于LC-MS / MS基于象牙壳幼虫的生物化学途径改变的生物化学途径分析,<重点型=“斜体”>巴比伦·索戈拉塔& /重点>

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摘要

Ivory shell, Babylonia areolata , is one of the commercially important mariculture species in China and South East Asia. Survival varies in the artificial hatching and larval rearing of B. areolata . Food deprivation may be involved in rearing mortality, and so, a better understanding of how larvae respond and adjust to starvation is needed. In this study, the metabolite profiles of newly hatched larvae with yolk (I), larvae with yolk exhaustion (II), larvae suffering 24?h starvation after yolk exhaustion (III), and larvae fed with exogenous nutrients after yolk exhaustion (IV) were analyzed by LC–MS/MS. Principal component and cluster analyses revealed differential abundance of metabolite profiles across groups. When compared to metabolite levels of the I group, significantly up-regulated metabolites included polyunsaturated fatty acids, phospholipids, nucleotide, amino acids, and their derivatives were found in the II group, indicating that organisms relied predominantly on glycerophospolipid metabolism and protein-based catabolism for energy production during this stage. During starvation after yolk exhaustion, the levels of all energy related metabolites were significantly reduced, but an increase in products of purine and pyrimidine metabolism indicated an insufficient energy supply and an increase in cellular disintegration. Larvae fed exogenous nutrients can have significantly improved metabolism compared to starved larvae. These findings suggest that metabolomics, using LC–MS/MS, can be used to assess the physiological status and food-affected metabolic changes affecting B. areolata larvae.
机译:象牙壳,巴比伦·艾托拉塔,是中国和东南亚商业上重要的养育物种之一。生存在人工孵化中变化和B. areolata的幼虫饲养。食品剥夺可能涉及饲养死亡率,因此更好地了解幼虫如何响应和调整饥饿。在这项研究中,用yolk(i),幼虫与yolk feation(ii),幼虫在蛋黄疲惫(iii)之后幼虫(II),幼虫患有24μl饥饿(IV)后,幼虫(II),幼虫(IV)喂食幼虫通过LC-MS / MS分析。主成分和群集分析显示跨组的差异丰富的代谢物谱。与I组的代谢物水平相比,显着上调的代谢物包括多不饱和脂肪酸,磷脂,核苷酸,氨基酸,其衍生物在II组中发现,表明生物主要依赖于甘油酚磷脂代谢和基于蛋白质的分解代谢。在此阶段的能源生产。在氧气疲惫后饥饿期间,所有能量相关代谢物的水平显着降低,但嘌呤和嘧啶代谢产物的增加表明能量供应不足,细胞崩解的增加。与饥饿的幼虫相比,幼虫喂养外源性营养物可显着改善代谢。这些研究结果表明,使用LC-MS / MS的代谢组可以用于评估影响B.Isolata幼虫的生理状态和受食物影响的代谢变化。

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