Peluffo Alexandre E, Hamdani Mehdi, Vargas-Valderrama Alejandra, David Jean R, Mallard François, Graner François, Courtier-Orgogozo Virginie
Institut Jacques Monod CNRS Univ. de Paris Paris France.
Institut Systématique Evolution Biodiversité (ISYEB) CNRS MNHN Sorbonne Université EPHE Paris France.
Ecol Evol. 2021 May 25;11(12):7492-7506. doi: 10.1002/ece3.7580. eCollection 2021 Jun.
Male genitalia are usually extremely divergent between closely related species, but relatively constant within one species. Here we examine the effect of temperature on the shape of the ventral branches, a male genital structure involved in reproductive isolation, in the sister species and . We designed a semi-automatic measurement machine learning pipeline that can reliably identify curvatures and landmarks based on manually digitized contours of the ventral branches. With this method, we observed that temperature does not affect ventral branches in but that in ventral branches tend to morph into a -like shape at lower temperature. We found that male genitalia structures involved in reproductive isolation can be relatively variable within one species and can resemble the shape of closely related species' genitalia through plasticity to temperature. Our results suggest that reproductive isolation mechanisms can be dependent on the environmental context.
雄性生殖器在亲缘关系密切的物种之间通常差异极大,但在同一物种内相对稳定。在此,我们研究了温度对腹侧分支形状的影响,腹侧分支是一种参与生殖隔离的雄性生殖器结构,存在于姐妹物种 和 中。我们设计了一种半自动测量机器学习管道,该管道能够基于腹侧分支的手动数字化轮廓可靠地识别曲率和地标。通过这种方法,我们观察到温度对 的腹侧分支没有影响,但在 中,较低温度下腹侧分支往往会变形为类似 的形状。我们发现,参与生殖隔离的雄性生殖器结构在同一物种内可能相对可变,并且通过对温度的可塑性,可以类似于亲缘关系密切物种的生殖器形状。我们的结果表明,生殖隔离机制可能取决于环境背景。