Department of Genetics, University of Cambridge, Cambridge, UK.
California Institute of Technology, Pasadena, CA, USA.
Proc Biol Sci. 2023 Mar 29;290(1995):20230261. doi: 10.1098/rspb.2023.0261. Epub 2023 Mar 22.
Parthenogenesis has been documented in almost every phylum of animals, and yet this phenomenon is largely understudied. It has particular importance in dipterans since some parthenogenetic species are also disease vectors and agricultural pests. Here, we present a catalogue of parthenogenetic dipterans, although it is likely that many more remain to be identified, and we discuss how their developmental biology and interactions with diverse environments may be linked to different types of parthenogenetic reproduction. We discuss how the advances in genetics and genomics have identified chromosomal loci associated with parthenogenesis. In particular, a polygenic cause of facultative parthenogenesis has been uncovered in allowing the corresponding genetic variants to be tested for their ability to promote parthenogenesis in another species, . This study probably identifies just one of many routes that could be followed in the evolution of parthenogenesis. We attempt to account for why the phenomenon has evolved so many times in the dipteran order and why facultative parthenogenesis appears particularly prevalent. We also discuss the significance of coarse genomic changes, including non-disjunction, aneuploidy, and polyploidy and how, together with changes to specific genes, these might relate to both facultative and obligate parthenogenesis in dipterans and other parthenogenetic animals.
孤雌生殖在动物的几乎每一个门中都有记载,但这种现象在很大程度上还没有得到充分研究。在双翅目昆虫中,孤雌生殖现象尤其重要,因为一些孤雌生殖的物种也是疾病媒介和农业害虫。在这里,我们提供了一个孤雌生殖双翅目昆虫目录,尽管可能还有许多尚未被发现,我们还讨论了它们的发育生物学和与不同环境的相互作用如何与不同类型的孤雌生殖繁殖相关。我们讨论了遗传学和基因组学的进展如何确定与孤雌生殖相关的染色体基因座。特别是,在 中发现了一种有条件孤雌生殖的多基因原因,这使得可以测试相应的遗传变异是否能够促进另一种物种的孤雌生殖。这项研究可能只确定了孤雌生殖进化过程中可能遵循的许多途径之一。我们试图解释为什么这种现象在双翅目昆虫中已经进化了这么多次,以及为什么有条件孤雌生殖似乎特别普遍。我们还讨论了粗线染色体变化的意义,包括不分离、非整倍体和多倍体,以及这些变化如何与双翅目昆虫和其他孤雌生殖动物中的有条件和强制性孤雌生殖相关。