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果蝇中核仁组织区抑制的位置效应斑驳现象。

Nucleolus organizer-suppressed position-effect variegation in Drosophila melanogaster.

作者信息

Spofford J B, DeSalle R

机构信息

Department of Ecology and Evolution, University of Chicago, Illinois 60637.

出版信息

Genet Res. 1991 Jun;57(3):245-55. doi: 10.1017/s0016672300029396.

Abstract

The white locus is inactivated in a cell-by-cell variegated pattern when juxtaposed with the proximal or distal parts of the nucleolus organizer region (NO) by X chromosome inversion. Recombinants for two such inversions, wm51b and wm4, were obtained and randomized for genetic background. White locus activity was much higher in the wm4 recombinant duplicated for most of the NO and much lower in the wm51b recombinant deficient for it. Although there may be other molecular differences between the heterochromatic regions of the recombinants, the most obvious is the dosage of NO. Suppression of a NO region-evoked variegated phenotype by additional NO doses is discussed in relation to four different classes of models for position-effect variegation (PEV): chromatin structure, nuclear geometry, incomplete transposition of mobile elements, and heterochromatin promoter-driven transcription. A corollary of the structural model is functional subdivision of heterochromatin, which would enable the use of PEV as a tool for its study.

摘要

当通过X染色体倒位与核仁组织区(NO)的近端或远端部分并列时,白色位点以细胞间斑驳的模式失活。获得了两个这样的倒位的重组体wm51b和wm4,并使其遗传背景随机化。在大部分NO重复的wm4重组体中,白色位点活性要高得多,而在缺失它的wm51b重组体中则要低得多。尽管重组体的异染色质区域之间可能存在其他分子差异,但最明显的是NO的剂量。关于位置效应斑驳(PEV)的四种不同类型的模型,讨论了额外的NO剂量对NO区域诱发的斑驳表型的抑制作用:染色质结构、核几何学、移动元件的不完全转座以及异染色质启动子驱动的转录。结构模型的一个推论是异染色质的功能细分,这将使PEV能够用作研究异染色质的工具。

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