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Direct Sampling of Organisms from the Field and Knowledge of their Phenotype: Key Recommendations for Environmental Metabolomics

机译:从现场直接取样生物及其表型知识:环境代谢组学的主要建议

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Critical questions must be addressed to evaluate the potential of metabolomics for studying free-living wildlife. First, can metabolomics identify stress-induced phenotypes in animals experiencing a highly variable environment or must animals be stabilized in a controlled laboratory prior to sampling? Second, is knowledge of species and phenotype (gender and age) required to interpret metabolomics data? To address these questions, we characterized the metabolic variability of the mussel and determined if inherent variability masked the metabolic response to an environmental stressor, hypoxia. Specifically, we compared metabolic fingerprints of adductor muscle and mantle from four groups of Mytilus galloprovincialis. animals sampled directly from the field with and without hypoxia and those stabilized in a laboratory for 60 h, also with and without hypoxia. Contrary to expectation, laboratory stabilization increased metabolic variability in adductor muscle, thereby completely masking the response to hypoxia. The principal source of metabolic variability in mantle was shown to be gender-based, highlighting the importance of phenotypic anchoring of samples to known life history traits. We conclude that direct field sampling is recommended for environmental metabolomics since it minimizes metabolic variability and enables stress-induced phenotypic changes to be observed. Furthermore, we recommend that species and phenotype of the study organism must be known for meaningful interpretation of metabolomics data.
机译:必须解决关键问题,以评估代谢组学在研究自由生活野生动物方面的潜力。首先,代谢组学是否可以识别环境高度变化的动物的应激诱导表型,还是必须在取样之前将动物在受控实验室中稳定下来?其次,解释代谢组学数据是否需要了解物种和表型(性别和年龄)的知识?为了解决这些问题,我们对贻贝的代谢变异性进行了表征,并确定了固有变异性是否掩盖了对环境压力低氧的代谢反应。具体来说,我们比较了四组Mytilus galloprovincialis的内收肌和地幔的代谢指纹。在有氧和无氧条件下直接从野外取样的动物,在有氧和无氧条件下在实验室中稳定60h的动物。与预期相反,实验室稳定增加了内收肌的代谢变异性,从而完全掩盖了对缺氧的反应。地幔中代谢变异性的主要来源被证明是基于性别的,这突显了将表型锚定到已知生活史特征的重要性。我们得出的结论是,建议将直接场采样用于环境代谢组学,因为它可以最大程度地减少代谢变异性,并可以观察到应激诱导的表型变化。此外,我们建议对于代谢组学数据的有意义的解释,必须知道研究生物的种类和表型。

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