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The Fruitless Gene in Nasonia Displays Complex Sex-Specific Splicing and Contains New Zinc Finger Domains

机译:Nasonia中无果的基因显示复杂的特定性别剪接,并包含新的锌指结构域。

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摘要

The transcription factor Fruitless exerts a broad range of functions during Drosophila development, the most apparent of which is the determination of sexual behavior in males. Although fruitless sequences are found in other insect orders, little is known about fruitless structure and function outside Diptera. We have performed a thorough analysis of fruitless transcripts in the haplo-diploid wasp Nasonia vitripennis and found both sex-specific and non–sex-specific transcripts similar to those found in Drosophila. In Nasonia, however, a novel, large fruitless transcript is present in females only. Putative binding sites for sex-specific splicing factors found in Nasonia fruitless and doublesex as well as Apis mellifera doublesex transcripts were sufficient to identify a corresponding female-specific fruitless exon in A. mellifera, suggesting that similar factors in both hymenopteran species could be responsible for sex-specific splicing of both genes. Furthermore, new C2H2 zinc finger domains found in Nasonia fruitless transcripts were also identified in the fruitless locus of major holometabolous insect species but not in drosophilids. Conservation of important domains and sex-specific splicing in Diptera and Hymenoptera support the hypothesis that fruitless is an ancient gene and has conserved functions in insects. Considerable divergences in other parts of the gene are expected to underlie species-specific differences and may help to explain diversity observed in insect sexual behaviors.
机译:在果蝇发育过程中,无果转录因子发挥着广泛的功能,其中最明显的是确定男性的性行为。尽管在其他昆虫纲中发现了无结果的序列,但对双翅目以外的无结果的结构和功能知之甚少。我们对单倍二倍体黄蜂Nasonia vitripennis中无结果的转录本进行了彻底的分析,发现在性别和非性别上的转录本都与果蝇中的相似。但是,在纳索尼亚,只有女性才有一种新颖的,无结果的大成绩单。 Nasonia无果和双性以及Apis mellifera doublesex转录本中发现的性别特异性剪接因子的推定结合位点足以识别A. mellifera中相应的雌性无果外显子,这表明膜翅目物种中的相似因素可能是造成这种情况的原因。两个基因的性别特异性剪接。此外,还发现了在主要全代谢昆虫物种的无果基因座中,在Nasonia无果转录物中发现的新的C 2 H 2 锌指结构域,而在果蝇中则没有。双翅目和膜翅目中重要区域的保护和特定性别的剪接支持以下假设:无果是古老的基因,在昆虫中具有保守的功能。预计该基因其他部分的显着差异是物种特异性差异的基础,可能有助于解释在昆虫性行为中观察到的多样性。

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