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基因组中 G+C 密度和序列保守性的全基因组振荡。

Genome-wide oscillations in G + C density and sequence conservation.

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Blavatnik Institute, Harvard Medical School, Boston, Massachusetts 02115, USA.

Department of Biology, Kansas State University, Manhattan, Kansas 66506, USA.

出版信息

Genome Res. 2021 Nov;31(11):2050-2057. doi: 10.1101/gr.274332.120. Epub 2021 Oct 14.

Abstract

Eukaryotic genomes typically show a uniform G + C content among chromosomes, but on smaller scales, many species have a G + C density that fluctuates with a characteristic wavelength. This oscillation is evident in many insect species, with wavelengths ranging between 700 bp and 4 kb. Measures of evolutionary conservation oscillate in phase with G + C content, with conserved regions having higher G + C. Loci with large regulatory regions show more regular oscillations; coding sequences and heterochromatic regions show little or no oscillation. There is little oscillation in vertebrate genomes in regions with densely distributed mobile repetitive elements. However, species with few repeats show oscillation in both G + C density and sequence conservation. These oscillations may reflect optimal spacing of -regulatory elements.

摘要

真核生物基因组通常在染色体间显示出均匀的 G+C 含量,但在较小的范围内,许多物种的 G+C 密度会以特征波长的形式波动。这种波动在许多昆虫物种中都很明显,其波长范围在 700bp 到 4kb 之间。进化保守性的衡量标准与 G+C 含量同步波动,具有较高 G+C 的区域具有更高的进化保守性。具有较大调控区域的基因座显示出更规则的波动;编码序列和异染色质区域的波动较小或没有。在具有密集分布的可移动重复元件的脊椎动物基因组中,波动很小。然而,重复次数较少的物种在 G+C 密度和序列保守性方面都表现出波动。这些波动可能反映了调控元件的最佳间隔。

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