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The complete sequence of the smallest known nuclear genome from the microsporidian Encephalitozoon intestinalis

机译:小孢子虫脑小肠中最小的已知核基因组的完整序列

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摘要

The genome of the microsporidia Encephalitozoon cuniculi is widely recognized as a model for extreme reduction and compaction. At only 2.9 Mbp, the genome encodes approximately 2,000 densely packed genes and little else. However, the nuclear genome of its sister, Encephalitozoon intestinalis, is even more reduced; at 2.3 Mbp, it represents a 20% reduction from an already severely compacted genome, raising the question, what else can be lost? In this paper, we describe the complete sequence of the E. intestinalis genome and its comparison with that of E. cuniculi. The two species share a conserved gene content, order and density over most of their genomes. The exceptions are the subtelomeric regions, where E. intestinalis chromosomes are missing large gene blocks of sequence found in E. cuniculi. In the remaining gene-dense chromosome 'cores', the diminutive intergenic sequences and introns are actually more highly conserved than the genes themselves, suggesting that they have reached the limits of reduction for a fully functional genome.
机译:微小孢子虫的脑炎小孢子虫的基因组被广泛认为是极端减少和压实的模型。基因组只有2.9 Mbp,编码大约2,000个密集包装的基因,其他几乎没有。然而,其姐妹肠状脑(Encephalitozoon intestinalis)的核基因组则更加减少。在2.3 Mbp时,它比已经严重压缩的基因组减少了20%,这引发了一个问题,还有什么会丢失?在本文中,我们描述了肠小肠埃希氏菌基因组的完整序列及其与黄瓜小肠埃希氏菌的比较。这两个物种在其大多数基因组上均具有保守的基因含量,顺序和密度。例外是亚端粒区域,其中小肠大肠杆菌的染色体缺少在小肠大肠杆菌中发现的大的基因序列序列。在其余的基因密集染色体“核心”中,较小的基因间序列和内含子实际上比基因本身具有更高的保守性,这表明它们已经达到了全功能基因组还原的极限。

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