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Transposable element abundance correlates with mode of transmission in microsporidian parasites

机译:可转换元素丰富与寄生虫寄生虫的传输方式相关

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The extreme genome reduction and physiological simplicity of some microsporidia has been attributed to their intracellular, obligate parasitic lifestyle. Although not all microsporidian genomes are small (size range from about 2 to 50?MB), it is suggested that the size of their genomes has been streamlined by natural selection. We explore the hypothesis that vertical transmission in microsporidia produces population bottlenecks, and thus reduces the effectiveness of natural selection. Here we compare the transposable element (TE) content of 47 microsporidian genomes, and show that genome size is positively correlated with the amount of TEs, and that species that experience vertical transmission have larger genomes with higher proportion of TEs. Our findings are consistent with earlier studies inferring that nonadaptive processes play an important role in microsporidian evolution.
机译:一些微孢子虫的极端基因组和生理简洁性归因于他们的细胞内,寄生植物生活方式。尽管并非所有micslowporidian基因组小(尺寸范围为约2至50μmb),但建议他们的基因组的大小已经通过自然选择流动。我们探讨了微孢子虫垂直变速器产生人口瓶颈的假设,从而降低了自然选择的有效性。在这里,我们比较47个microsclidian基因组的可转换元素(Te)含量,并且表明基因组大小与TES的量呈正相关,并且经历垂直变速器的物种具有更大比例的TES比例的基因组。我们的研究结果与早期的研究推断,不适用的过程在Microsclidian进化中发挥着重要作用。

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