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Loss of tramtrack gene activity results in ectopic R7 cell formation, even in a sina mutant background.

机译:即使在sina突变体背景下,tramtrack基因活性的丧失也会导致异位R7细胞的形成。

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摘要

We have screened a collection of transposable-element-induced mutations for those which dominantly modify the extra R7 phenotype of a hypomorphic yan mutation. The members of one of the identified complementation groups correspond to disruptions of the tramtrack (ttk) gene. As heterozygotes, ttk alleles increase the percentage of R7 cells in yan mutant eyes. Just as yan mutations increase ectopic R7 cell formation, homozygous ttk mutant eye clones also contain supernumerary R7 cells. However, in contrast to yan, the formation of these cells in ttk mutant eye tissue is not necessarily dependent on the activity of the sina gene. Furthermore, although yan mutations dominantly interact with mutations in the Ras1, Draf, Dsor1, and rolled (rl) genes to influence R7 cell development, ttk mutations only interact with yan and rl gene mutations to affect this signaling pathway. Our data suggest that yan and ttk both function to repress inappropriate R7 cell development but that their mechanisms of action differ. In particular, TTK activity appears to be autonomously required to regulate a sina-independent mechanism of R7 determination.
机译:我们筛选了转座因子诱导的突变的集合,这些突变主要修饰了亚型yan突变的额外R7表型。所识别的互补基团之一的成员对应于tramtrack(ttk)基因的破坏。作为杂合子,ttk等位基因增加了yan突变体眼睛中R7细胞的百分比。正如yan突变会增加异位R7细胞的形成一样,纯合的ttk突变体眼克隆也含有多余的R7细胞。但是,与yan相反,这些细胞在ttk突变眼组织中的形成不一定取决于sina基因的活性。此外,尽管yan突变主要与Ras1,Draf,Dsor1和roll(rl)基因中的突变相互作用,以影响R7细胞发育,但ttk突变仅与yan和rl基因突变相互作用,从而影响该信号通路。我们的数据表明yan和ttk均具有抑制不适当的R7细胞发育的功能,但它们的作用机制不同。特别是,似乎需要TTK活性来调节R7测定的独立于新浪的机制。

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