Hoover Cindi A, Slattery Marc, Marsh Adam G
Molecular Biology Production Group, Broad Institute of MIT and Harvard, Cambridge, MA 02141, USA.
Mar Biotechnol (NY). 2007 Jul-Aug;9(4):411-9. doi: 10.1007/s10126-007-9008-2. Epub 2007 May 1.
Secondary metabolites or natural products have been isolated from many marine organisms. These metabolites often have important bioactive functions; however, very little information is available regarding the biosynthesis and regulation of many secondary metabolites. At a time when use of marine-derived metabolites is rapidly expanding in industry and pharmacological fields, a better understanding of the genetic mechanisms controlling secondary metabolite production is necessary. We review the recent development of a novel transcriptome profiling methodology that allows for rapid and high-throughput screening of changes in mRNA sequence pools. The application of genomics-based techniques and the integration of both biochemical and molecular data sets in marine organisms complement ongoing drug discovery efforts.
次生代谢产物或天然产物已从许多海洋生物中分离出来。这些代谢产物通常具有重要的生物活性功能;然而,关于许多次生代谢产物的生物合成和调控的信息却非常少。在海洋来源的代谢产物在工业和药理学领域的应用迅速扩大之际,有必要更好地了解控制次生代谢产物产生的遗传机制。我们综述了一种新型转录组分析方法的最新进展,该方法可实现对mRNA序列库变化的快速、高通量筛选。基于基因组学技术的应用以及海洋生物中生化和分子数据集的整合,为正在进行的药物发现工作提供了补充。