CRIBI Biotechnology Centre, University of Padua, Padua 35121, Italy.
Mol Plant. 2014 Feb;7(2):323-35. doi: 10.1093/mp/sst120. Epub 2013 Aug 21.
Nannochloropsis is rapidly emerging as a model organism for the study of biofuel production in microalgae. Here, we report a high-quality genomic assembly of Nannochloropsis gaditana, consisting of large contigs, up to 500 kbp long, and scaffolds that in most cases span the entire length of the chromosomes. We identified 10646 complete genes and characterized possible alternative transcripts. The annotation of the predicted genes and the analysis of cellular processes revealed traits relevant for the genetic improvement of this organism such as genes involved in DNA recombination, RNA silencing, and cell wall synthesis. We also analyzed the modification of the transcriptional profile in nitrogen deficiency-a condition known to stimulate lipid accumulation. While the content of lipids increased, we did not detect major changes in expression of the genes involved in their biosynthesis. At the same time, we observed a very significant down-regulation of mitochondrial gene expression, suggesting that part of the Acetyl-CoA and NAD(P)H, normally oxidized through the mitochondrial respiration, would be made available for fatty acids synthesis, increasing the flux through the lipid biosynthetic pathway. Finally, we released an information resource of the genomic data of N. gaditana, available online at www.nannochloropsis.org.
微拟球藻正迅速成为研究生物燃料生产的模式生物。在这里,我们报告了一种高质量的 Nannochloropsis gaditana 基因组组装,由长达 500kbp 的大片段和在大多数情况下跨越整个染色体长度的支架组成。我们鉴定了 10646 个完整的基因,并对可能的替代转录本进行了特征描述。预测基因的注释和对细胞过程的分析揭示了与该生物遗传改良相关的特征,如涉及 DNA 重组、RNA 沉默和细胞壁合成的基因。我们还分析了氮缺乏条件下转录谱的修饰——这种条件已知会刺激脂质积累。虽然脂质含量增加,但我们没有检测到参与其生物合成的基因表达的主要变化。与此同时,我们观察到线粒体基因表达的显著下调,表明一部分乙酰辅酶 A 和 NAD(P)H,通常通过线粒体呼吸氧化,将可用于脂肪酸合成,增加脂质生物合成途径的通量。最后,我们在 www.nannochloropsis.org 上发布了 N. gaditana 基因组数据的信息资源。