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褐藻泡叶藻的早期胚胎发生以碳和能量代谢的显著变化为特征。

Early Embryogenesis of Brown Alga Fucus vesiculosus L. is Characterized by Significant Changes in Carbon and Energy Metabolism.

机构信息

Department of Plant Physiology and Biochemistry, Faculty of Biology, St.-Petersburg State University, 199034 St.-Petersburg, Russia.

Faculty of Chemistry and Mineralogy, Leipzig University, 04103 Leipzig, Germany.

出版信息

Molecules. 2017 Sep 9;22(9):1509. doi: 10.3390/molecules22091509.

Abstract

Brown algae have an important role in marine environments. With respect to their broad distribution and importance for the environment and human use, brown algae of the order Fucales in particular became a model system for physiological and ecological studies. Thus, several fucoids have been extensively studied for their composition on the molecular level. However, research of fucoid physiology and biochemistry so far mostly focused on the adult algae, so a holistic view on the development of these organisms, including the crucial first life stages, is still missing. Therefore, we employed non-targeted metabolite profiling by gas chromatography coupled to mass spectrometry to create a non-biased picture of the early development of the fucoid alga We found that embryogenic physiology was mainly dominated by a tight regulation of carbon and energy metabolism. The first dramatic changes of zygote metabolism started within 1 h after fertilization, while metabolism of 6-9 days old embryos appeared already close to that of an adult alga, indicated by the intensive production of secondary metabolites and accumulation of mannitol and citric acid. Given the comprehensive description and analysis we obtained in our experiments, our results exhibit an invaluable resource for the design of further experiments related to physiology of early algal development.

摘要

褐藻在海洋环境中具有重要作用。鉴于其广泛的分布以及对环境和人类利用的重要性,特别是属于墨角藻目(Fucales)的褐藻成为了生理和生态研究的模式系统。因此,人们对几种褐藻的分子水平组成进行了广泛研究。然而,迄今为止,褐藻生理学和生物化学的研究大多集中在成年藻类上,因此这些生物的整体发育情况,包括关键的早期生命阶段,仍然未知。因此,我们采用气相色谱-质谱联用的非靶向代谢组学方法,对褐藻的早期发育进行了非偏见性研究。我们发现,胚胎发生生理学主要受碳和能量代谢的严格调控。在受精后 1 小时内,受精卵的代谢就开始发生剧烈变化,而 6-9 天龄胚胎的代谢已经接近成年藻类,这表现为次生代谢产物的大量产生以及甘露醇和柠檬酸的积累。鉴于我们在实验中获得的全面描述和分析,我们的研究结果为进一步开展与早期藻类发育生理相关的实验提供了宝贵的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/090d/6151410/8d5382d13ba7/molecules-22-01509-g001.jpg

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