Mueller J L, Ravi Ram K, McGraw L A, Bloch Qazi M C, Siggia E D, Clark A G, Aquadro C F, Wolfner M F
Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York 14853, USA.
Genetics. 2005 Sep;171(1):131-43. doi: 10.1534/genetics.105.043844. Epub 2005 Jun 8.
Drosophila melanogaster males transfer seminal fluid proteins along with sperm during mating. Among these proteins, ACPs (Accessory gland proteins) from the male's accessory gland induce behavioral, physiological, and life span reduction in mated females and mediate sperm storage and utilization. A previous evolutionary EST screen in D. simulans identified partial cDNAs for 57 new candidate ACPs. Here we report the annotation and confirmation of the corresponding Acp genes in D. melanogaster. Of 57 new candidate Acp genes previously reported in D. melanogaster, 34 conform to our more stringent criteria for encoding putative male accessory gland extracellular proteins, thus bringing the total number of ACPs identified to 52 (34 plus 18 previously identified). This comprehensive set of Acp genes allows us to dissect the patterns of evolutionary change in a suite of proteins from a single male-specific reproductive tissue. We used sequence-based analysis to examine codon bias, gene duplications, and levels of divergence (via dN/dS values and ortholog detection) of the 52 D. melanogaster ACPs in D. simulans, D. yakuba, and D. pseudoobscura. We show that 58% of the 52 D. melanogaster Acp genes are detectable in D. pseudoobscura. Sequence comparisons of ACPs shared and not shared between D. melanogaster and D. pseudoobscura show that there are separate classes undergoing distinctly dissimilar evolutionary dynamics.
黑腹果蝇雄性在交配时会将精液蛋白与精子一同传递。在这些蛋白质中,来自雄性附腺的ACPs(附腺蛋白)会导致交配后的雌性出现行为、生理变化以及寿命缩短,并介导精子的储存和利用。先前在拟暗果蝇中进行的进化EST筛选鉴定出了57个新的候选ACPs的部分cDNA。在此,我们报告黑腹果蝇中相应Acp基因的注释和确认情况。在先前报道的黑腹果蝇57个新候选Acp基因中,有34个符合我们更严格的编码假定雄性附腺细胞外蛋白的标准,从而使已鉴定的ACPs总数达到52个(34个加上先前鉴定的18个)。这一完整的Acp基因集使我们能够剖析来自单一雄性特异性生殖组织的一组蛋白质的进化变化模式。我们使用基于序列的分析方法来检查拟暗果蝇、雅库布果蝇和伪暗果蝇中52个黑腹果蝇ACPs的密码子偏好、基因重复以及分化水平(通过dN/dS值和直系同源物检测)。我们发现,在伪暗果蝇中可检测到52个黑腹果蝇Acp基因中的58%。对黑腹果蝇和伪暗果蝇之间共享和未共享的ACPs进行序列比较表明,存在经历明显不同进化动态的不同类别。