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次生代谢产物多样性背后的进化机制。

Evolutionary mechanisms underlying secondary metabolite diversity.

作者信息

Jenke-Kodama Holger, Müller Rolf, Dittmann Elke

机构信息

Humboldt University Berlin, Institute of Biology, Department of Molecular Ecology, Chausseestr. 117, 10115 Berlin, Germany.

出版信息

Prog Drug Res. 2008;65:119, 121-40. doi: 10.1007/978-3-7643-8117-2_3.

Abstract

The enormous chemical diversity and the broad range of biological activities of secondary metabolites raise many questions about their role in nature and the specific traits leading to their evolution. The answers to these questions will not only be of fundamental interest but may also provide lessons that could help to improve the screening protocols of pharmaceutical companies and strategies for rational secondary metabolite engineering. In this review, we try to dissect evolutionary principles leading to the emergence, distribution, diversification and selection of genes involved in secondary metabolite biosyntheses. We give an overview about recent insights into the evolution of the different types of polyketide synthases (PKS) in microorganisms and plants and highlight unique mechanisms underlying polyketide diversity. Although phylogenetic and experimental data have significantly increased our knowledge about the role and evolution of secondary metabolites in the last decades there is still much dissent about the impact of natural selection. In order to understand the evolution towards metabolic diversity we therefore need more thorough investigations of the ecological role of secondary metabolites in the future.

摘要

次生代谢产物具有巨大的化学多样性和广泛的生物活性,这引发了许多关于它们在自然界中的作用以及导致其进化的特定特征的问题。这些问题的答案不仅具有根本意义,还可能提供经验教训,有助于改进制药公司的筛选方案以及合理的次生代谢产物工程策略。在本综述中,我们试图剖析导致参与次生代谢产物生物合成的基因出现、分布、多样化和选择的进化原理。我们概述了对微生物和植物中不同类型聚酮合酶(PKS)进化的最新见解,并强调了聚酮化合物多样性背后的独特机制。尽管在过去几十年中,系统发育和实验数据显著增加了我们对次生代谢产物的作用和进化的了解,但关于自然选择的影响仍存在许多分歧。因此,为了理解向代谢多样性的进化,我们未来需要更深入地研究次生代谢产物的生态作用。

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