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黑腹果蝇转座元件TE35B内白色基因间转座作用的拓扑学限制

Topological constraints on transvection between white genes within the transposing element TE35B in Drosophila melanogaster.

作者信息

Gubb D, Roote J, Trenear J, Coulson D, Ashburner M

机构信息

Department of Genetics, University of Cambridge, United Kingdom.

出版信息

Genetics. 1997 Jul;146(3):919-37. doi: 10.1093/genetics/146.3.919.

Abstract

The transposable element TE35B carries two copies of the white (w) gene at 35B1.2 on the second chromosome. These w genes are suppressed in zeste-1 (z1) mutant background in a synapsis-dependent manner. Single-copy derivatives of the original TE35B stock give red eyes when heterozygous, but zeste eyes when homozygous. TE35B derivatives carrying single, double or triple copies of w were crossed to generate flies carrying from two to five ectopic w genes. Within this range, z1-mediated suppression is insensitive to copynumber and does not distinguish between w genes that are in cis or in trans. Suppression does not require the juxtaposition of even numbers of w genes, but is extremely sensitive to chromosomal topology. When arranged in a tight cluster, in triple-copy TE derivatives, w genes are nonsuppressible. Breakpoints falling within TE35B and separating two functional w genes act as partial suppressors of z1. Similarly, breakpoints immediately proximal or distal to both w genes give partial suppression. This transvection-dependent downregulation of w genes may result from mis-activation of the X-chromosome dosage compensation mechanism.

摘要

转座因子TE35B在第二条染色体的35B1.2位置携带两个白色(w)基因拷贝。这些w基因在zeste-1(z1)突变背景下以联会依赖的方式受到抑制。原始TE35B品系的单拷贝衍生物杂合时表现为红眼,但纯合时表现为zeste眼。携带单拷贝、双拷贝或三拷贝w的TE35B衍生物进行杂交,以产生携带两到五个异位w基因的果蝇。在此范围内,z1介导的抑制对拷贝数不敏感,并且无法区分顺式或反式的w基因。抑制不需要偶数个w基因并列,但对染色体拓扑结构极为敏感。当以紧密簇的形式排列时,在三拷贝TE衍生物中,w基因是不可抑制的。位于TE35B内并分隔两个功能性w基因的断点可作为z1的部分抑制因子。同样,两个w基因紧邻的近端或远端的断点也会产生部分抑制。这种w基因的转座依赖下调可能是由于X染色体剂量补偿机制的错误激活所致。

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