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对来自澳大利亚东南部的大型藻类的化学多样性的研究。

A study of the chemical diversity of macroalgae from South Eastern Australia.

机构信息

Microbial Screening Technologies Pty. Ltd, Smithfield, NSW 2164, Australia.

Microbial Screening Technologies Pty. Ltd, Smithfield, NSW 2164, Australia; Department of Chemistry and Biomolecular Sciences, Macquarie University, NSW 2109, Australia.

出版信息

Fitoterapia. 2018 Apr;126:53-64. doi: 10.1016/j.fitote.2017.10.014. Epub 2017 Oct 25.

Abstract

Macroalgae are a rich source of biologically active chemical diversity for pharmaceutical and agrichemical discovery. However, the ability to understand the complexities of their chemical diversity will dictate whether these natural products have a place in modern discovery paradigms. In this study, we examined the relationship between secondary metabolite production and biological activity for a cohort of 127 macroalgae samples collected from various locations across South Eastern Australia. Approximately 20% of the macroalgae samples showed high levels of chemical diversity and productivity, which also correlated strongly with bioactivity. These "talented" species represent sustainable sources of metabolites that may be readily harvested for large-scale production. At a taxonomic level, significant differences in metabolite production and diversity were observed between Chlorophyta, Rhodophyta and Phaeophyta. For each talented species, the cometabolite pattern was unique to that species, with closely related species within the same genus displaying very different profiles. Despite over 50years of investigation, we estimate that more than two-thirds of the chemical diversity of macroalgae remains unknown to science. By understanding the physicochemical properties and distribution patterns of metabolites, it is possible to make reasoned judgements about sustainable sourcing of macroalgae for biodiscovery.

摘要

大型藻类是用于药物和农用化学品发现的具有生物活性的化学多样性的丰富来源。然而,理解其化学多样性复杂性的能力将决定这些天然产物是否在现代发现范例中占有一席之地。在这项研究中,我们研究了来自澳大利亚东南部不同地区的 127 个大型藻类样本的次生代谢产物产生与生物活性之间的关系。大约 20%的大型藻类样本表现出高度的化学多样性和生产力,这也与生物活性强烈相关。这些“有天赋”的物种代表了具有可持续性的代谢产物来源,可以很容易地进行大规模生产。在分类学水平上,观察到绿藻门、红藻门和褐藻门之间在代谢产物产生和多样性方面存在显著差异。对于每个有天赋的物种,共代谢产物模式都是该物种特有的,同一属内的密切相关的物种显示出非常不同的图谱。尽管经过了 50 多年的调查,我们估计藻类的化学多样性仍有超过三分之二不为科学界所知。通过了解代谢产物的物理化学性质和分布模式,有可能对藻类的可持续生物发现来源做出合理的判断。

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