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Interplay of Developmentally Regulated Gene Expression and Heterochromatic Silencing in Trans in Drosophila

机译:果蝇中反转录发育调控基因表达与异色沉默之间的相互作用。

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摘要

The brownDominant (bwD) allele of Drosophila contains a heterochromatic block that causes the locus to interact with centric heterochromatin. This association silences bw+ in heterozygotes (trans-inactivation) and is dependent on nuclear organizational changes later in development, suggesting that trans-inactivation may not be possible until later in development. To study this, a P element containing an upstream activating sequence (UAS)–GFP reporter was inserted 5 kb from the bwD insertion site. Seven different GAL4 driver lines were used and GFP fluorescence was compared in the presence or the absence of bwD. We measured silencing in different tissues and stages of development and found variable silencing of GFP expression driven by the same driver. When UAS–GFP was not expressed until differentiation in the eye imaginal disc it was more easily trans-inactivated than when it was expressed earlier in undifferentiated cells. In contrast to some studies by other workers on silencing in cis, we did not find consistent correlation of silencing with level of expression or evidence of relaxation of silencing with terminal differentiation. We suggest that such contrasting results may be attributed to a potentially different role played by nuclear organization in cis and trans position-effect variegation.
机译:果蝇的brownDominant(bwD)等位基因包含一个异色块,导致基因座与中心异染色质相互作用。这种联系使杂合子中的bw +沉默(反式失活),并依赖于发育后期的核组织变化,这表明反式失活可能要等到发育后期才能实现。为了研究这一点,从bwD插入位点5 kb处插入了一个含有上游激活序列(UAS)-GFP报告基因的P元素。使用了七个不同的GAL4驱动程序系,并在存在或不存在bwD的情况下比较了GFP荧光。我们测量了不同组织和发育阶段的沉默,并发现了由同一驱动程序驱动的GFP表达的可变沉默。当UAS-GFP直到在眼部视盘上分化才表达时,比在未分化细胞中更早表达时,它更容易被反式灭活。与其他研究人员对顺式沉默的一些研究相比,我们没有发现沉默与表达水平的相关性,也没有发现沉默与终末分化相关的松弛证据。我们建议,这种相反的结果可能归因于核组织在顺式和反式位置效应杂色中发挥的潜在不同作用。

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