Intraspecific variation in polar and nonpolar metabolite profiles of a threatened Caribbean coral.

Joseph A Henry, Ram B Khattri, Joy Guingab-Cagmat, Matthew E Merritt, Timothy J Garrett, Joshua T Patterson, Kathryn E Lohr
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引用次数: 4

Abstract

Introduction: Research aimed at understanding intraspecific variation among corals could substantially increase understanding of coral biology and improve outcomes of active restoration efforts. Metabolomics is useful for identifying physiological drivers leading to variation among genotypes and has the capacity to improve our selection of candidate corals that express phenotypes beneficial to restoration.

Objectives: Our study aims to compare metabolomic profiles among known, unique genotypes of the threatened coral Acropora cervicornis. In doing so, we seek information related to the physiological characteristics driving variation among genotypes, which could aid in identifying genets with desirable traits for restoration.

Methods: We applied proton nuclear magnetic resonance (1H-NMR) and liquid chromatography-mass spectrometry (LC-MS) to identify and compare metabolomic profiles for seven unique genotypes of A. cervicornis that previously exhibited phenotypic variation in a common garden coral nursery.

Results: Significant variation in polar and nonpolar metabolite profiles was found among A. cervicornis genotypes. Despite difficulties identifying all significant metabolites driving separation among genotypes, our data support previous findings and further suggest metabolomic profiles differ among various genotypes of the threatened species A. cervicornis.

Conclusion: The implementation of metabolomic analyses allowed identification of several key metabolites driving separation among genotypes and expanded our understanding of the A. cervicornis metabolome. Although our research is specific to A. cervicornis, these findings have broad relevance for coral biology and active restoration. Furthermore, this study provides specific information on the understudied A. cervicornis metabolome and further confirmation that differences in metabolome structure could drive phenotypic variation among genotypes.

一种受威胁的加勒比珊瑚的极性和非极性代谢物谱的种内变异。
前言:旨在了解珊瑚种内变异的研究可以大大增加对珊瑚生物学的了解,并改善积极修复工作的结果。代谢组学有助于识别导致基因型差异的生理驱动因素,并有能力改善我们对表达有利于恢复表型的候选珊瑚的选择。目的:我们的研究旨在比较濒危珊瑚鹿角珊瑚的已知独特基因型的代谢组学特征。在此过程中,我们寻求与驱动基因型变异的生理特征相关的信息,这可能有助于识别具有恢复所需性状的基因。方法:应用质子核磁共振(1H-NMR)和液相色谱-质谱联用(LC-MS)技术,鉴定和比较了7种不同基因型的a . cervicornis的代谢组学特征,这些基因型之前在一个常见的花园珊瑚苗圃中表现出表型变异。结果:在不同基因型的蠓中,极性代谢物和非极性代谢物谱存在显著差异。尽管很难确定驱动基因型分离的所有重要代谢物,但我们的数据支持先前的发现,并进一步表明不同基因型的濒危物种A. cervicornis的代谢组学特征存在差异。结论:代谢组学分析的实施可以鉴定出驱动基因型分离的几个关键代谢物,并扩展了我们对颈喙棘猴代谢组学的理解。虽然我们的研究是针对颈角拟南珊瑚的,但这些发现对珊瑚生物学和主动恢复具有广泛的意义。此外,本研究还提供了关于未被充分研究的斑胸草代谢组的具体信息,并进一步证实了代谢组结构的差异可以驱动基因型之间的表型变异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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