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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >INTERACTIONS BETWEEN WHITE GENES CARRIED BY A LARGE TRANSPOSING ELEMENT AND THE ZESTE1 ALLELE IN DROSOPHILA MELANOGASTER
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INTERACTIONS BETWEEN WHITE GENES CARRIED BY A LARGE TRANSPOSING ELEMENT AND THE ZESTE1 ALLELE IN DROSOPHILA MELANOGASTER

机译:大型转座元素携带的白色基因与果蝇黑腹果蝇的ZESTE1等位基因之间的相互作用

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摘要

TE146 , a large transposing element of Drosophila melanogaster , carries two copies of the white and roughest genes in tandem. In consequence, z 1 w 11 E 4; TE146 ( Z )/+ flies have a zeste (lemon-yellow) eye color. However, one in 103 TE146 chromosomes mutates to a red-eyed form. The majority of these "spontaneous red" ( SR ) derivatives of TE146 have only one copy of the white gene and are, cytologically, two- to three-banded elements, rather than six-banded as their progenitor. The SR forms of TE146 are also unstable and give zeste-colored forms with a frequency of about one in 104. One such "spontaneous zeste" ( SZ ) derivative carries duplicated white genes as an inverted, rather than a tandem, repeat. The genetic instability of this inverted repeat form of TE146 is different from that of the original tandem repeat form. In particular, the inverted repeat form frequently produces derivatives with internal rearrangements of the TE and gives a much lower frequency of SR forms. In addition, two novel features of the interaction between w + alleles in a zeste background have been found. First, copies of w + can become insensitive to suppression by zeste even when paired. Second, an inversion breakpoint may disrupt the pairing between two adjacent w + alleles, necessary for their suppression by zeste , without physically separating them.
机译:TE146是果蝇的大型转座元件,可同时携带两份白色和最粗糙的基因。结果,z 1 w 11 E 4; TE146(Z)/ +果蝇的眼睛呈泽色(柠檬黄色)。但是,在103条TE146染色体中,有一条突变成红眼形式。这些TE146的大多数“自发红色”(SR)衍生物只有一个白色基因的拷贝,并且在细胞学上是两到三带的元素,而不是六带的祖细胞。 TE146的SR形式也是不稳定的,并以zeste色形式出现,频率为104分之一。一种这样的“自发zeste”(SZ)衍生物携带重复的白色基因,即反向而不是串联重复。 TE146的这种反向重复序列的遗传不稳定性与原始串联重复序列的不同。尤其是,反向重复形式经常产生带有TE内部重排的导数,并导致SR形式的频率低得多。另外,还发现了在zeste背景下w +等位基因之间相互作用的两个新颖特征。首先,即使配对,w +的副本也可能对zeste的抑制不敏感。其次,反转断点可能会破坏两个相邻的w +等位基因之间的配对,这是被zeste抑制的必要条件,而不会物理上将它们分离。

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