National Research Institute of Fisheries Science, Fisheries Research Agency, Yokohama, Kanagawa, Japan.
PLoS One. 2013;8(3):e57122. doi: 10.1371/journal.pone.0057122. Epub 2013 Mar 11.
Nori, a marine red alga, is one of the most profitable mariculture crops in the world. However, the biological properties of this macroalga are poorly understood at the molecular level. In this study, we determined the draft genome sequence of susabi-nori (Pyropia yezoensis) using next-generation sequencing platforms. For sequencing, thalli of P. yezoensis were washed to remove bacteria attached on the cell surface and enzymatically prepared as purified protoplasts. The assembled contig size of the P. yezoensis nuclear genome was approximately 43 megabases (Mb), which is an order of magnitude smaller than the previously estimated genome size. A total of 10,327 gene models were predicted and about 60% of the genes validated lack introns and the other genes have shorter introns compared to large-genome algae, which is consistent with the compact size of the P. yezoensis genome. A sequence homology search showed that 3,611 genes (35%) are functionally unknown and only 2,069 gene groups are in common with those of the unicellular red alga, Cyanidioschyzon merolae. As color trait determinants of red algae, light-harvesting genes involved in the phycobilisome were predicted from the P. yezoensis nuclear genome. In particular, we found a second homolog of phycobilisome-degradation gene, which is usually chloroplast-encoded, possibly providing a novel target for color fading of susabi-nori in aquaculture. These findings shed light on unexplained features of macroalgal genes and genomes, and suggest that the genome of P. yezoensis is a promising model genome of marine red algae.
紫菜,一种海洋红藻,是世界上最赚钱的海水养殖作物之一。然而,这种大型藻类的生物学特性在分子水平上还了解甚少。在这项研究中,我们使用下一代测序平台确定了 susabi-nori(Pyropia yezoensis)的草图基因组序列。为了测序,将 P. yezoensis 的藻体洗净以去除附着在细胞表面的细菌,并通过酶处理制备为纯化的原生质体。P. yezoensis 核基因组的组装连体型大小约为 43 兆碱基(Mb),比之前估计的基因组大小小一个数量级。共预测了 10327 个基因模型,大约 60%的基因缺乏内含子,而其他基因的内含子较短,与大基因组藻类相比,这与 P. yezoensis 基因组的紧凑大小一致。序列同源性搜索表明,3611 个基因(35%)功能未知,只有 2069 个基因簇与单细胞红藻 Cyanidioschyzon merolae 的基因簇相同。作为红藻颜色性状决定因素,从 P. yezoensis 核基因组中预测了参与藻胆体的光捕获基因。特别是,我们发现了第二个与藻胆体降解基因的同源物,该基因通常是叶绿体编码的,这可能为水产养殖中 susabi-nori 的颜色褪色提供了一个新的目标。这些发现揭示了大型藻类基因和基因组中未解释的特征,并表明 P. yezoensis 基因组是海洋红藻有前途的模式基因组。