Gleason Jennifer M, Zhou Yihong, Hackett Jennifer L, Harris Bethany R, Greenfield Michael D
Department of Ecology and Evolutionary Biology, University of Kansas, Lawrence, Kansas, United States of America.
Department of Molecular Biosciences, University of Kansas, Lawrence, Kansas, United States of America.
PLoS One. 2016 Jan 25;11(1):e0147014. doi: 10.1371/journal.pone.0147014. eCollection 2016.
In the study of sexual selection among insects, the Lesser Waxmoth, Achroia grisella (Lepidoptera: Pyralidae), has been one of the more intensively studied species over the past 20 years. Studies have focused on how the male calling song functions in pair formation and on the quantitative genetics of male song characters and female preference for the song. Recent QTL studies have attempted to elucidate the genetic architecture of male song and female preference traits using AFLP markers. We continued these QTL studies using SNP markers derived from an EST library that allowed us to measure both DNA sequence variation and map loci with respect to the lepidopteran genome. We report that the level of sequence variation within A. grisella is typical among other Lepidoptera that have been examined, and that comparison with the Bombyx mori genome shows that macrosynteny is conserved. Our QTL map shows that a QTL for a male song trait, pulse-pair rate, is situated on the Z chromosome, a prediction for sexually selected traits in Lepidoptera. Our findings will be useful for future studies of genetic architecture of this model species and may help identify the genetics associated with the evolution of its novel acoustic communication.
在昆虫性选择的研究中,小蜡螟(Achroia grisella,鳞翅目:螟蛾科)在过去20年里一直是研究较为深入的物种之一。研究集中在雄虫求偶鸣叫在配对形成中的作用,以及雄虫鸣叫特征和雌虫对鸣叫的偏好的数量遗传学。最近的数量性状基因座(QTL)研究试图利用扩增片段长度多态性(AFLP)标记阐明雄虫鸣叫和雌虫偏好性状的遗传结构。我们利用从一个EST文库衍生而来的单核苷酸多态性(SNP)标记继续这些QTL研究,这使我们能够测量DNA序列变异并相对于鳞翅目基因组定位基因座。我们报告称,小蜡螟内部的序列变异水平在已检测的其他鳞翅目中是典型的,并且与家蚕基因组的比较表明宏观同线性是保守的。我们的QTL图谱显示,一个与雄虫鸣叫性状——脉冲对速率相关的QTL位于Z染色体上,这是对鳞翅目性选择性状的一个预测。我们的研究结果将有助于该模式物种遗传结构的未来研究,并可能有助于确定与其新型声学通讯进化相关的遗传学。