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Four-Hundred Million Years of Conserved Synteny of Human Xp and Xq Genes on Three Tetraodon Chromosomes

机译:在三个四角形染色体上的人类Xp和Xq基因的保守性四亿年

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摘要

The freshwater pufferfish Tetraodon nigroviridis (TNI) has become highly attractive as a compact reference vertebrate genome for gene finding and validation. We have mapped genes, which are more or less evenly spaced on the human chromosomes 9 and X, on Tetraodon chromosomes using fluorescence in situ hybridization (FISH), to establish syntenic relationships between Tetraodon and other key vertebrate genomes. PufferFISH revealed that the human X is an orthologous mosaic of three Tetraodon chromosomes. More than 350 million years ago, an ancestral vertebrate autosome shared orthologous Xp and Xq genes with Tetraodon chromosomes 1 and 7. The shuffled order of Xp and Xq orthologs on their syntenic Tetraodon chromosomes can be explained by the prevalence of evolutionary inversions. The Tetraodon 2 orthologous genes are clustered in human Xp11 and represent a recent addition to the eutherian X sex chromosome. The human chromosome 9 and the avian Z sex chromosome show a much lower degree of synteny conservation in the pufferfish than the human X chromosome. We propose that a special selection process during vertebrate evolution has shaped a highly conserved array(s) of X-linked genes long before the X was used as a mammalian sex chromosome and many X chromosomal genes were recruited for reproduction and/or the development of cognitive abilities.
机译:淡水河豚Tetraodon nigroviridis(TNI)作为紧凑的参考脊椎动物基因组,用于基因发现和验证,已变得极具吸引力。我们已经使用荧光原位杂交(FISH)在四角畸形染色体上绘制了在人类染色体9和X上或多或少均匀分布的基因,以建立四角猿与其他关键脊椎动物基因组之间的同系关系。 PufferFISH显示,人X是三个Tetraodon染色体的直系同源嵌合体。超过3.5亿年前,一个祖先的脊椎动物常染色体与Tetraodon染色体1和7共享直系同源Xp和Xq基因。Xp和Xq直系同源物在它们的同系四足动物染色体上的改组顺序可以用进化倒置的普遍性来解释。 Tetraodon 2直系同源基因聚集在人类Xp11中,并代表了最近在欧洲人X性染色体上的新成员。人类9号染色体和禽类Z性染色体在河豚中显示的同位子保守程度远低于人类X染色体。我们建议,在脊椎动物进化过程中的特殊选择过程早已将X连锁基​​因的高度保守阵列塑造成X用作哺乳动物的性染色体,并招募了许多X染色体基因用于繁殖和/或发育。认知能力。

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