The Department of Biological Sciences, The University of Southern Mississippi, 118 College Drive #5018, Hattiesburg, MS 39406-0001, USA.
Microb Ecol. 2013 May;65(4):901-15. doi: 10.1007/s00248-013-0220-5. Epub 2013 Apr 4.
The implementation of molecular techniques has been widely adopted throughout the life sciences except in the marine sciences. The latter trend is quickly being reversed as even more cutting-edge molecular platforms, referred to collectively as 'omics-related technologies, are being used in a number of laboratories that study various aspects of life in the marine environment. This review provides a brief overview of just a few representative studies that have used genomics, transcriptomics, or proteomics approaches to deepen our understanding, specifically, about the underlying molecular biology of harmful algae. The examples of the studies described here are particularly relevant in showing how the information gleaned from these technologies can uncover the genetic capacity of harmful algal bloom-forming species, can generate new hypotheses about mechanistic relationships that bridge gene-environment interactions, and can impinge on our understanding surrounding the ecology of these organisms.
除了海洋科学外,分子技术的应用在生命科学领域已经得到了广泛的采用。这种趋势正在迅速改变,因为更多的前沿分子平台,被统称为“组学相关技术”,正在许多研究海洋环境中各种生命方面的实验室中使用。本文简要概述了一些具有代表性的研究,这些研究使用了基因组学、转录组学或蛋白质组学方法来加深我们对有害藻类的分子生物学基础的理解。这里描述的研究实例特别有助于说明,从这些技术中获取的信息可以揭示有害藻类形成物种的遗传能力,可以产生有关基因-环境相互作用的机制关系的新假设,并影响我们对这些生物的生态学的理解。