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Gas-Chromatography Mass-Spectrometry (GC-MS) Based Metabolite Profiling Reveals Mannitol as a Major Storage Carbohydrate in the Coccolithophorid Alga Emiliania huxleyi.

机译:基于气相色谱质谱(GC-MS)的代谢物分析揭示了甘露醇是球藻类藻类海藻Emilia huxleyi中的主要储藏碳水化合物。

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摘要

Algae are divergent organisms having a wide variety of evolutional histories. Although most of them share photosynthetic activity, their pathways of primary carbon metabolism are rather diverse among species. Here we developed a method for gas chromatography-mass spectroscopy (GC-MS) based metabolite profiling for the coccolithophorid alga Emiliania huxleyi, which is one of the most abundant microalgae in the ocean, in order to gain an overview of the pathway of primary metabolism within this alga. Following method optimization, twenty-six metabolites could be detected by this method. Whilst most proteogenic amino acids were detected, no peaks corresponding to malate and fumarate were found. The metabolite profile of E. huxleyi was, however, characterized by a prominent accumulation of mannitol reaching in excess of 14 nmol 106 cells−1. Similarly, the accumulation of the 13C label during short term H13CO3 feeding revealed a massive redistribution of label into mannitol as well as rapid but saturating label accumulation into glucose and several amino acids including aspartate, glycine and serine. These results provide support to previous work suggesting that this species adopts C3 photosynthesis and that mannitol functions as a carbon store in E. huxleyi.
机译:藻类是具有多种进化史的发散生物。尽管它们中的大多数具有光合作用活性,但它们的一次碳代谢途径在物种之间相当不同。在这里,我们开发了一种基于气相色谱-质谱(GC-MS)的代谢产物谱分析方法,用于球藻藻类海藻Emililiania huxleyi(这是海洋中最丰富的微藻类之一),以概述初级代谢途径在这个藻类中。方法优化后,可通过该方法检测到26种代谢物。虽然检测到大多数蛋白质氨基酸,但未发现对应于苹果酸和富马酸酯的峰。然而,霍乱弧菌的代谢产物特征是甘露醇的显着积累达到超过14 nmol 10 6 细胞 -1 。同样,短期喂食H 13 CO3 -期间 13 C标签的积累表明,标签在甘露醇中的分布很大且迅速。但会使标记积累到葡萄糖和包括天冬氨酸,甘氨酸和丝氨酸在内的几种氨基酸中。这些结果为以前的工作提供了支持,表明该物种采用了C3光合作用,甘露醇在赫x氏大肠杆菌中起碳库的作用。

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