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Big data in yeast systems biology

机译:酵母系统生物学中的大数据

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Systems biology uses computational and mathematical modeling to study complex interactions in a biological system. The yeast Saccharomyces cerevisiae, which has served as both an important model organism and cell factory, has pioneered both the early development of such models and modeling concepts, and the more recent integration of multi-omics big data in these models to elucidate fundamental principles of biology. Here, we review the advancement of big data technologies to gain biological insight in three aspects of yeast systems biology: gene expression dynamics, cellular metabolism and the regulation network between gene expression and metabolism. The role of big data and complementary modeling approaches, including the expansion of genome-scale metabolic models and machine learning methodologies, are discussed as key drivers in the rapid advancement of yeast systems biology.
机译:系统生物学使用计算和数学建模来研究生物系统中的复杂相互作用。 酵母酿酒酵母酿酒酵母既是一个重要的模型生物和细胞厂,都开创了这种模型和建模概念的早期发展,以及这些模型中的多OMICS大数据的最近一体化才能阐明基本原则 生物学。 在这里,我们审查了大数据技术的进步,以获得酵母系统生物学三个方面的生物洞察:基因表达动态,细胞代谢和基因表达与代谢的调控网络。 大数据和互补建模方法的作用,包括扩展基因组代谢模型和机器学习方法,作为酵母系统生物学快速进步的关键驱动因素。

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