Medeiros Matthew J, Seo Laura, Macias Aziel, Price Donald K, Yew Joanne Y
Pacific Biosciences Research Center, University of Hawai'i at Mānoa.
Department of Life Sciences, University of Nevada at Las Vegas.
bioRxiv. 2023 Jul 25:2023.07.14.549088. doi: 10.1101/2023.07.14.549088.
Gut microbiomes provide numerous physiological benefits for host animals. The role of bacterial members of microbiomes in host physiology is well-documented. However, much less is known about the contributions and interactions of fungal members of the microbiome even though fungi are significant components of many microbiomes, including those of humans and insects. Here, we used antibacterial and antifungal drugs to manipulate the gut microbiome of a Hawaiian picture-wing species, , and identified distinct, sex-specific roles for the bacteria and fungi in microbiome community stability and reproduction. Female oogenesis, fecundity and mating drive were significantly diminished when fungal communities were suppressed. By contrast, male fecundity was more strongly affected by bacterial but not fungal populations. For males and females, suppression of both bacteria and fungi severely reduced fecundity and altered fatty acid levels and composition, implicating the importance of interkingdom interactions on reproduction and lipid metabolism. Overall, our results reveal that bacteria and fungi have distinct, sexually-dimorphic effects on host physiology and interkingdom dynamics in the gut help to maintain microbiome community stability and enhance reproduction.
肠道微生物群为宿主动物提供了许多生理益处。微生物群中细菌成员在宿主生理学中的作用已有充分记录。然而,尽管真菌是许多微生物群(包括人类和昆虫的微生物群)的重要组成部分,但关于微生物群中真菌成员的贡献和相互作用却知之甚少。在这里,我们使用抗菌和抗真菌药物来操纵一种夏威夷丽翅果蝇的肠道微生物群,并确定了细菌和真菌在微生物群群落稳定性和繁殖中不同的、性别特异性的作用。当真菌群落受到抑制时,雌性的卵子发生、繁殖力和交配驱动力显著降低。相比之下,雄性繁殖力受细菌而非真菌种群的影响更大。对于雄性和雌性来说,细菌和真菌都受到抑制会严重降低繁殖力,并改变脂肪酸水平和组成,这表明跨界相互作用对繁殖和脂质代谢很重要。总体而言,我们的结果表明,细菌和真菌对宿主生理学有不同的、性别二态性的影响,肠道中的跨界动态有助于维持微生物群群落稳定性并增强繁殖。