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Tissue- and Stage-Dependent Dosage Compensation on the Neo-X Chromosome in Drosophila pseudoobscura

机译:假暗果蝇 Neo-X 染色体的组织和阶段依赖性剂量补偿

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摘要

Sex chromosome dosage compensation (DC) is widely accepted in various organisms. This concept is mostly supported by comparisons of gene expression between chromosomes and between sexes. However, genes on the X chromosome and autosomes are mostly not homologous, and the average gene expression level on these chromosomes may not be the same even under DC, which complicates comparisons between chromosomes. Many genes with sex-biased expression also make comparisons between sexes difficult. To overcome these issues, we investigated DC by comparing the expression of neo-X-linked genes in Drosophila pseudoobscura with those of their autosomal orthologs in other Drosophila species. The ratio of the former to the latter in males would be 1 under DC, whereas it becomes 0.5 without DC. We found that the ratio was ∼0.85 for adult whole bodies, indicating that the DC is incomplete on the neo-X chromosome in adults as a whole. The ratio (∼0.90) was also significantly less than 1 for adult bodies without gonads, whereas it was ∼1.0 for adult heads. These results indicate that DC varies among tissues. Our sliding-window analysis of the ratio also revealed that the upregulation of neo-X-linked genes in males occurred chromosome wide in all tissues analyzed, indicating global upregulation mechanisms. However, we found that gene functions also affected the levels of DC. Furthermore, most of the genes recently moved to the X were already under DC at the larval stage but not at the adult stage. These results suggest that DC in Drosophila species operates in a tissue/stage-dependent manner.
机译:性染色体剂量补偿 (DC) 在各种生物体中被广泛接受。这一概念主要通过染色体之间和两性之间基因表达的比较来支持。然而,X染色体和常染色体上的基因大多不是同源的,即使在DC下,这些染色体上的平均基因表达水平也可能不相同,这使得染色体之间的比较变得复杂。许多具有性别偏向表达的基因也使性别之间的比较变得困难。为了克服这些问题,我们通过比较果蝇中 neo-X 连锁基因的表达与其他果蝇物种中常染色体直系同源基因的表达来研究 DC。在DC下,男性中前者与后者的比例为1,而没有DC时为0.5。我们发现成人全身的比率为∼0.85,表明整个成人的neo-X染色体上的DC不完整。没有性腺的成年体的比率(∼0.90)也明显小于1,而成年头部的比值∼1.0。这些结果表明,DC因组织而异。我们对该比率的滑动窗口分析还显示,雄性中 neo-X 连锁基因的上调发生在所有分析的组织中,染色体范围很广,这表明了整体上调机制。然而,我们发现基因功能也影响了DC的水平。此外,最近转移到X的大多数基因在幼虫阶段就已经处于DC之下,但在成虫阶段则没有。这些结果表明,果蝇物种中的DC以组织/阶段依赖性方式运作。

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