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Variation in the X:Autosome Distribution of Male-Biased Genes among Drosophila melanogaster Tissues and Its Relationship with Dosage Compensation

机译:X:果蝇组织中雄性偏置基因的常染色体分布及其与剂量补偿的关系

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摘要

Genes that are expressed differently between males and females (sex-biased genes) often show a nonrandom distribution in their genomic location, particularly with respect to the autosomes and the X chromosome. Previous studies of Drosophila melanogaster found a general paucity of male-biased genes on the X chromosome, although this is mainly limited to comparisons of whole flies or body segments containing the reproductive organs. To better understand the chromosomal distribution of sex-biased genes in various tissues, we used a common analysis framework to analyze microarray and RNA sequence data comparing male and female gene expression in individual tissues (brain, Malpighian tubule, and gonads), composite structures (head and gonadectomized carcass), and whole flies. Although there are relatively few sex-biased genes in the brain, there is a strong and highly significant enrichment of male-biased genes on the X chromosome. A weaker enrichment of X-linked male-biased genes is seen in the head, suggesting that most of this signal comes from the brain. In all other tissues, there is either no departure from the random expectation or a significant paucity of male-biased genes on the X chromosome. The brain and head also differ from other tissues in that their male-biased genes are significantly closer to binding sites of the dosage compensation complex. We propose that the interplay of dosage compensation and sex-specific regulation can explain the observed differences between tissues and reconcile disparate results reported in previous studies.
机译:雄性和雌性之间差异表达的基因(性别偏向基因)通常在其基因组位置显示出非随机分布,尤其是在常染色体和X染色体方面。以前的果蝇研究发现,X染色体上男性偏向基因普遍缺乏,尽管这主要限于比较整个果蝇或含有生殖器官的身体部分。为了更好地了解各种组织中性别偏向基因的染色体分布,我们使用了一个通用的分析框架来分析微阵列和RNA序列数据,以比较各个组织(大脑,马氏小管和性腺)中的男性和女性基因表达,复合结构(头和淋巴切除的car体)和整只苍蝇。尽管大脑中的性别偏向基因相对较少,但X染色体上男性偏向基因有很强且高度显着的富集。头部可见X连锁雄性偏向基因的富集程度较弱,这表明该信号大部分来自大脑。在所有其他组织中,要么不偏离随机预期,要么在X染色体上没有明显的男性偏向基因。大脑和头部也不同于其他组织,因为它们的男性偏向基因明显更接近剂量补偿复合物的结合位点。我们建议剂量补偿和性别特异性调节之间的相互作用可以解释组织之间观察到的差异以及以前研究中报告的和解不同的结果。

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