Institute of Marine Research, P.O. Box 1870, Nordnes, 5817 Bergen, Norway.
Mar Biotechnol (NY). 2012 Apr;14(2):167-76. doi: 10.1007/s10126-011-9399-y. Epub 2011 Jul 21.
Atlantic cod (Gadus morhua) is a fish species of high importance, as a key species in a range of Northern ecosystems, in fisheries, and as an emerging species in aquaculture. So far, little is known about the transcriptional activity during early developmental stages of Atlantic cod. Hence, we decided to use a cDNA microarray covering 7,000 genes to analyze the temporal activity of the transcriptome during cod embryogenesis. Twelve different embryonic time points were selected, covering major developmental stages and processes such as maternally derived mRNA, blastula, gastrula, segmentation, hatching, and first-feeding larval stage. The microarray analysis revealed a highly dynamic transcriptional profile, showing for the first time the differential expression of thousands of known and unknown genes during Atlantic cod embryogenesis. These initial findings will serve as an important baseline for future in-depth studies of candidate genes involved in development, reproductive control, disease resistance, growth, nutrient digestion, and metabolism.
大西洋鳕鱼(Gadus morhua)是一种非常重要的鱼类,它是多种北方生态系统中的关键物种,在渔业中也有重要地位,并且作为一种新兴的养殖物种。到目前为止,人们对大西洋鳕鱼早期发育阶段的转录活性知之甚少。因此,我们决定使用包含 7000 个基因的 cDNA 微阵列来分析鳕鱼胚胎发生过程中转录组的时间活性。选择了 12 个不同的胚胎时间点,涵盖了主要的发育阶段和过程,如母体衍生的 mRNA、囊胚、原肠胚、分节、孵化和首次摄食的幼虫阶段。微阵列分析显示出高度动态的转录谱,首次显示了数千个已知和未知基因在大西洋鳕鱼胚胎发生过程中的差异表达。这些初步发现将为未来深入研究发育、生殖控制、抗病性、生长、营养消化和代谢相关候选基因提供重要的基础。