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酵母系统生物学:真核生物复杂性的挑战。

Yeast systems biology: the challenge of eukaryotic complexity.

作者信息

Castrillo Juan I, Oliver Stephen G

机构信息

Department of Biochemistry, Cambridge Systems Biology Centre, University of Cambridge, Cambridge CB21GA, UK.

出版信息

Methods Mol Biol. 2011;759:3-28. doi: 10.1007/978-1-61779-173-4_1.

Abstract

In this chapter, we present an up-to-date view of the optimal characteristics of the yeast Saccharomyces cerevisiae as a model eukaryote for systems biology studies, with main molecular mechanisms, biological networks, and sub-cellular organization essentially conserved in all eukaryotes, derived from a complex common ancestor. The existence of advanced tools for molecular studies together with high-throughput experimental and computational methods, most of them being implemented and validated in yeast, with new ones being developed, is opening the way to the characterization of the core modular architecture and complex networks essential to all eukaryotes. Selected examples of the latest discoveries in eukaryote complexity and systems biology studies using yeast as a reference model and their applications in biotechnology and medicine are presented.

摘要

在本章中,我们展示了酿酒酵母作为系统生物学研究的模式真核生物的最佳特性的最新观点。其主要分子机制、生物网络和亚细胞组织在所有真核生物中基本保守,源于一个复杂的共同祖先。分子研究的先进工具以及高通量实验和计算方法的存在,其中大多数已在酵母中实施和验证,并且新方法不断涌现,为表征所有真核生物所必需的核心模块化架构和复杂网络开辟了道路。本文还介绍了以酵母为参考模型在真核生物复杂性和系统生物学研究中的最新发现及其在生物技术和医学中的应用的选定示例。

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