Tropical Conservation Biology and Environmental Sciences, University of Hawaii at Hilo, 200 West Kawili St., Hilo, HI, 96720, USA.
Department of Chemistry, Eastern Mennonite University, 1200 Park Rd, Harrisonburg, VA, 22802, USA.
Sci Rep. 2022 Mar 22;12(1):4865. doi: 10.1038/s41598-022-08635-w.
Interspecies hybrids can express phenotypic traits far outside the range of parental species. The atypical traits of hybrids provide insight into differences in the factors that regulate the expression of these traits in the parental species. In some cases, the unusual phenotypic traits of hybrids can lead to phenotypic dysfunction with hybrids experiencing reduced survival or reproduction. Cuticular hydrocarbons (CHCs) in insects are important phenotypic traits that serve several functions, including desiccation resistance and pheromones for mating. We used gas chromatography mass spectrometry to investigate the differences in CHC production between two closely related sympatric Hawaiian picture-wing Drosophila species, Drosophila heteroneura and D. silvestris, and their F1 and backcross hybrid offspring. CHC profiles differed between males of the two species, with substantial sexual dimorphism in D. silvestris but limited sexual dimorphism in D. heteroneura. Surprisingly, F1 hybrids did not produce three CHCs, and the abundances of several other CHCs occurred outside the ranges present in the two parental species. Backcross hybrids produced all CHCs with greater variation than observed in F1 or parental species. Overall, these results suggest that the production of CHCs was disrupted in F1 and backcross hybrids, which may have important consequences for their survival or reproduction.
种间杂种可以表现出远超出亲本物种范围的表型特征。杂种的非典型特征为研究调控亲本物种中这些特征表达的因素差异提供了线索。在某些情况下,杂种不寻常的表型特征可能导致表型功能障碍,杂种的生存或繁殖能力降低。昆虫的表皮碳氢化合物(CHC)是重要的表型特征,具有多种功能,包括抗干燥和用于交配的信息素。我们使用气相色谱-质谱联用技术研究了两种密切相关的夏威夷图案翅果蝇(Drosophila heteroneura 和 D. silvestris)及其 F1 和回交杂种后代之间 CHC 产生的差异。两种物种的雄性之间 CHC 图谱存在差异,D. silvestris 存在显著的性别二态性,但 D. heteroneura 的性别二态性有限。令人惊讶的是,F1 杂种没有产生三种 CHC,并且几种其他 CHC 的丰度出现在两个亲本物种存在的范围之外。回交杂种产生的所有 CHC 的丰度变化都大于 F1 或亲本物种观察到的变化。总的来说,这些结果表明,CHC 的产生在 F1 和回交杂种中受到干扰,这可能对它们的生存或繁殖有重要影响。