Pepler Meghan A, Miller Jessica S, Elliot Marie A, Balshine Sigal
Department of Biology, and Institute for Infectious Disease Research, McMaster University, Hamilton, Ontario, Canada.
Aquatic Behavioural Ecology Laboratory, Department of Psychology, Neuroscience, & Behaviour, McMaster University, Hamilton, Ontario, Canada.
Proc Biol Sci. 2021 Mar 31;288(1947):20202873. doi: 10.1098/rspb.2020.2873. Epub 2021 Mar 17.
Males of some species possess extra reproductive organs called accessory glands which are outgrowths of the testes or sperm duct. These organs have a well-established role in reproduction; however, they also appear to have other important functions that are less understood. Here, we investigate the function of the highly complex accessory glands of a marine toadfish, , a fish with two reproductive male types: large care-providing 'guarder' males and small non-caring 'sneaker' males. While both male types have accessory glands, guarder male accessory glands are much larger relative to their body size. We show that accessory gland fluids strongly inhibit the growth of bacterial genera associated with unhealthy eggs and have no effect on the growth of strains isolated from healthy eggs. This antibacterial effect was particularly pronounced for extracts from guarder males. Furthermore, we demonstrate that both healthy and unhealthy plainfin midshipman eggs have diverse but distinct microbial communities that differ in their composition and abundance. The highly specific inhibitory capacity of accessory gland fluid on bacteria from unhealthy eggs was robust across a wide range of ecologically relevant temperatures and salinities. Collectively, these ecological and molecular observations suggest a care function for the accessory gland mediated by antimicrobial agents.
某些物种的雄性拥有称为附属腺的额外生殖器官,这些器官是睾丸或输精管的衍生物。这些器官在繁殖中具有既定作用;然而,它们似乎还具有其他一些不太为人所知的重要功能。在这里,我们研究了一种海蟾蜍鱼高度复杂的附属腺的功能,这种鱼有两种繁殖雄性类型:体型较大、提供照料的“守卫者”雄性和体型较小、不提供照料的“偷腥者”雄性。虽然两种雄性类型都有附属腺,但相对于体型而言,守卫者雄性的附属腺要大得多。我们发现附属腺液能强烈抑制与不健康鱼卵相关的细菌属的生长,而对从健康鱼卵中分离出的菌株的生长没有影响。这种抗菌作用在守卫者雄性的提取物中尤为明显。此外,我们证明,健康和不健康的平头光尾鲨鱼卵都有不同但独特的微生物群落,它们在组成和丰度上存在差异。附属腺液对来自不健康鱼卵的细菌的高度特异性抑制能力在广泛的生态相关温度和盐度范围内都很强。总的来说,这些生态学和分子学观察结果表明,附属腺通过抗菌剂发挥照料功能。