Department of Structural Biology, Flemish Institute for Biotechnology (VIB), Belgium.
Nat Rev Microbiol. 2012 Jul 16;10(8):538-50. doi: 10.1038/nrmicro2832.
Metagenomics and 16S pyrosequencing have enabled the study of ecosystem structure and dynamics to great depth and accuracy. Co-occurrence and correlation patterns found in these data sets are increasingly used for the prediction of species interactions in environments ranging from the oceans to the human microbiome. In addition, parallelized co-culture assays and combinatorial labelling experiments allow high-throughput discovery of cooperative and competitive relationships between species. In this Review, we describe how these techniques are opening the way towards global ecosystem network prediction and the development of ecosystem-wide dynamic models.
宏基因组学和 16S 焦磷酸测序技术极大地提高了对生态系统结构和动态的研究深度和准确性。在从海洋到人类微生物组等各种环境中,这些数据集的共现和相关模式越来越多地被用于预测物种相互作用。此外,并行共培养测定和组合标记实验允许高通量发现物种之间的合作和竞争关系。在这篇综述中,我们描述了这些技术如何为全球生态系统网络预测和开发生态系统范围的动态模型开辟道路。