Geuverink Elzemiek, Rensink Anna H, Rondeel Inge, Beukeboom Leo W, van de Zande Louis, Verhulst Eveline C
Groningen Institute for Evolutionary Life Sciences, University of Groningen, 9700 CC Groningen, The Netherlands.
Groningen Institute for Evolutionary Life Sciences, University of Groningen, 9700 CC Groningen, The Netherlands; Laboratory of Genetics, Wageningen University, P.O. Box 16, 6700 AA Wageningen, The Netherlands.
Insect Biochem Mol Biol. 2017 Nov;90:23-33. doi: 10.1016/j.ibmb.2017.09.007. Epub 2017 Sep 18.
In insect sex determination a primary signal starts the genetic sex determination cascade that, in most insect orders, is subsequently transduced down the cascade by a transformer (tra) ortholog. Only a female-specifically spliced tra mRNA yields a functional TRA-protein that forms a complex with TRA2, encoded by a transformer-2 (tra2) ortholog, to act as a sex specific splicing regulator of the downstream transcription factors doublesex (dsx) and fruitless (fru). Here, we identify the tra2 ortholog of the haplodiploid parasitoid wasp N. vitripennis (Nv-tra2) and confirm its function in N. vitripennis sex determination. Knock down of Nv-tra2 by parental RNA interference (pRNAi) results in complete sex reversal of diploid offspring from female to male, indicating the requirement of Nv-tra2 for female sex determination. As Nv-tra2 pRNAi leads to frequent lethality in early developmental stages, maternal provision of Nv-tra2 transcripts is apparently also required for another, non-sex determining function during embryogenesis. In addition, lethality following Nv-tra2 pRNAi appears more pronounced in diploid than in haploid offspring. This diploid lethal effect was also observed following Nv-tra pRNAi, which served as a positive control in our experiments. As diploid embryos from fertilized eggs have a paternal chromosome set in addition to the maternal one, this suggests that either the presence of this paternal chromosome set or the dosage effect resulting from the diploid state is incompatible with the induced male development in N. vitripennis caused by either Nv-tra2 or Nv-tra pRNAi. The role of Nv-tra2 in activating the female sex determination pathway yields more insight into the sex determination mechanism of Nasonia.
在昆虫性别决定过程中,一个初级信号启动了遗传性别决定级联反应,在大多数昆虫目中,随后该级联反应由一个transformer(tra)直系同源物向下传导。只有雌性特异性剪接的tra mRNA产生功能性的TRA蛋白,该蛋白与由transformer-2(tra2)直系同源物编码的TRA2形成复合物,作为下游转录因子doublesex(dsx)和fruitless(fru)的性别特异性剪接调节因子。在这里,我们鉴定了单双倍体寄生蜂丽蝇蛹集金小蜂(N. vitripennis)的tra2直系同源物(Nv-tra2),并证实了其在丽蝇蛹集金小蜂性别决定中的功能。通过亲代RNA干扰(pRNAi)敲低Nv-tra2会导致二倍体后代从雌性完全性逆转为雄性,这表明Nv-tra2对于雌性性别决定是必需的。由于Nv-tra2 pRNAi在发育早期阶段经常导致致死性,因此在胚胎发生过程中,母体提供Nv-tra2转录本显然也是另一种非性别决定功能所必需的。此外,Nv-tra2 pRNAi后的致死性在二倍体后代中比在单倍体后代中更为明显。在我们的实验中作为阳性对照的Nv-tra pRNAi后也观察到了这种二倍体致死效应。由于受精卵发育而来的二倍体胚胎除了母本染色体组外还有父本染色体组,这表明这个父本染色体组的存在或二倍体状态产生的剂量效应与由Nv-tra2或Nv-tra pRNAi引起的丽蝇蛹集金小蜂诱导雄性发育不相容。Nv-tra2在激活雌性性别决定途径中的作用为进一步了解金小蜂属的性别决定机制提供了更多线索。