Hui Wang , Peiling Wu , Lu Xiong , Han-Sol Kim , Jin Ho Kim , Jang-Seu Ki
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引用次数: 0
摘要
高通量测序技术的最新进展大大提高了原核生物和真核生物基因组数据的可用性。甲藻具有独特的染色体和巨大的基因组,这使得其基因组分析变得复杂。在此,我们回顾了核心甲藻的核基因组,重点从基因组和细胞大小来分析它们的进化关系和事件。迄今为止,已有一些方法(如流式细胞仪)测量了几种甲藻(超过25种)的基因组大小,结果显示每个细胞的基因组DNA(gDNA)在3-250 pg之间。与它们相对较小的细胞体积形成鲜明对比的是,它们的基因组却非常庞大(约为人类单倍体基因组的 1-80 倍)。在本研究中,我们收集了甲藻的基因组和细胞大小数据,并广泛比较了它们之间的关系。我们发现甲藻的基因组大小与细胞大小呈正相关。此外,我们还推测基因组大小与系统发生系无关。这些可能是基因组复制、基因拷贝数增加、非编码 DNA 重复、转座子扩增、水平基因转移(HGT)、细胞器到细胞核的基因转移和/或 mRNA 重新整合到基因组中造成的。要最终验证这些因素的潜在致病机制,需要将来对一种或多种甲藻基因组进行测序。
Nuclear genome of dinoflagellates: Size variation and insights into evolutionary mechanisms
Recent progress in high-throughput sequencing technologies has dramatically increased availability of genome data for prokaryotes and eukaryotes. Dinoflagellates have distinct chromosomes and a huge genome size, which make their genomic analysis complicated. Here, we reviewed the nuclear genomes of core dinoflagellates, focusing on the genome and cell size. Till now, the genome sizes of several dinoflagellates (more than 25) have been measured by certain methods (e.g., flow cytometry), showing a range of 3–250 pg of genomic DNA per cell. In contrast to their relatively small cell size, their genomes are huge (about 1–80 times the human haploid genome). In the present study, we collected the genome and cell size data of dinoflagellates and compared their relationships. We found that dinoflagellate genome size exhibits a positive correlation with cell size. On the other hand, we recognized that the genome size is not correlated with phylogenetic relatedness. These may be caused by genome duplication, increased gene copy number, repetitive non-coding DNA, transposon expansion, horizontal gene transfer, organelle-to-nucleus gene transfer, and/or mRNA reintegration into the genome. Ultimate verification of these factors as potential causative mechanisms would require sequencing of more dinoflagellate genomes in the future.
期刊介绍:
Articles deal with protists, unicellular organisms encountered free-living in various habitats or as parasites or used in basic research or applications. The European Journal of Protistology covers topics such as the structure and systematics of protists, their development, ecology, molecular biology and physiology. Beside publishing original articles the journal offers a forum for announcing scientific meetings. Reviews of recently published books are included as well. With its diversity of topics, the European Journal of Protistology is an essential source of information for every active protistologist and for biologists of various fields.