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Requirement of Male-Specific Dosage Compensation in Drosophila Females—Implications of Early X Chromosome Gene Expression

机译:果蝇女性中男性特定剂量补偿的要求-早期X染色体基因表达的意义

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摘要

Dosage compensation equates between the sexes the gene dose of sex chromosomes that carry substantially different gene content. In Drosophila, the single male X chromosome is hypertranscribed by approximately two-fold to effect this correction. The key genes are male lethal and appear not to be required in females, or affect their viability. Here, we show these male lethals do in fact have a role in females, and they participate in the very process which will eventually shut down their function—female determination. We find the male dosage compensation complex is required for upregulating transcription of the sex determination master switch, Sex-lethal, an X-linked gene which is specifically activated in females in response to their two X chromosomes. The levels of some X-linked genes are also affected, and some of these genes are used in the process of counting the number of X chromosomes early in development. Our data suggest that before the female state is set, the ground state is male and female X chromosome expression is elevated. Females thus utilize the male dosage compensation process to amplify the signal which determines their fate.
机译:剂量补偿等于两性之间携带实质不同基因含量的性染色体的基因剂量。在果蝇中,单个雄性X染色体被超转录约两倍,以实现此校正。关键基因是雄性致死的,似乎对雌性不是必需的,或影响其生存力。在这里,我们显示了这些男性杀伤力确实在女性中起作用,并且它们参与了最终终止其功能的过程-女性的决心。我们发现,雄性剂量补偿复合物对于上调性别决定主开关(性致死)的转录是必需的,性别致死性是一种X连锁基因,在女性中响应其两个X染色体而被特异性激活。一些X连锁基因的水平也受到影响,其中一些基因用于在发育早期对X染色体数进行计数。我们的数据表明,在设定女性状态之前,基态是男性,女性X染色体表达升高。雌性因此利用雄性剂量补偿过程来放大决定其命运的信号。

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