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Taming the hydra of specialized metabolism: how systems biology and comparative approaches are revolutionizing plant biochemistry. (Special Issue: Physiology and metabolism.)

机译:驯服专门代谢的水合物:系统生物学和比较方法如何彻底改变植物生物化学。 (特刊:生理学和新陈代谢。)

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Specialized (traditionally called 'secondary') metabolism can be thought of as a hydra with hundreds of thousands of compounds produced by thousands of enzymes across the entire plant kingdom. Until recently, plants that produce the most interesting and valuable metabolites were recalcitrant to modern molecular biology approaches for gene and pathway discovery. Recent advances in technologies for genomic, transcriptomic, proteomic, and metabolomic methods now allow for deployment of 'systems biology' approaches to help elucidate unknown steps in specialized metabolite pathways, for example through co-expression analyses. Inexpensive transcriptome and whole genome sequencing (WGS) promises to provide direct access to metabolic pathways in plants not currently used as reference organisms. For example, WGS has uncovered cases of physical proximity of genes of specialized metabolism. Further integration of multiple 'omics' datasets through advances in bioinformatics tools will increase our knowledge of pathway architecture and regulation at an ever-increasing rate. As such the era of systems biology is rapidly providing a broader and deeper understanding of plant specialized metabolism.Digital Object Identifier http://dx.doi.org/10.1016/j.pbi.2011.12.005
机译:专门的(传统上称为“次要”)代谢可以被认为是一种九头蛇,由整个植物界中数千种酶产生的数十万种化合物组成。直到最近,产生最有趣和最有价值的代谢产物的植物对现代分子生物学方法中的基因和途径发现都持顽固态度。基因组学,转录组学,蛋白质组学和代谢组学方法技术的最新进展现在允许部署“系统生物学”方法,以帮助阐明专业代谢物途径中的未知步骤,例如通过共表达分析。廉价的转录组和全基因组测序(WGS)有望提供直接进入目前未用作参考生物的植物中代谢途径的直接途径。例如,WGS发现了专门代谢基因在物理上接近的情况。通过生物信息学工具的发展,多个“组学”数据集的进一步集成将以越来越高的速度增加我们对途径结构和调控的知识。因此,系统生物学时代正在迅速提供对植物专门代谢的更广泛和更深入的了解。数字对象标识符http://dx.doi.org/10.1016/j.pbi.2011.12.005

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