Nguyen Binh, Than Anh, Dinh Hue, Morimoto Juliano, Ponton Fleur
Department of Biological Sciences, Macquarie University, Sydney, NSW 2113, Australia.
Department of Entomology, Vietnam National University of Agriculture, Trau Quy, Gia Lam, Hanoi 100000, Vietnam.
Microorganisms. 2020 Aug 24;8(9):1289. doi: 10.3390/microorganisms8091289.
The commensal microbiota is a key modulator of animal fitness, but little is known about the extent to which the parental microbiota influences fitness-related traits of future generations. We addressed this gap by manipulating the parental microbiota of a polyphagous fruit fly () and measuring offspring developmental traits, body composition, and fecundity. We generated three parental microbiota treatments where parents had a microbiota that was non-manipulated (control), removed (axenic), or removed-and-reintroduced (reinoculation). We found that the percentage of egg hatching, of pupal production, and body weight of larvae and adult females were lower in offspring of axenic parents compared to that of non-axenic parents. The percentage of partially emerged adults was higher, and fecundity of adult females was lower in offspring of axenic parents relative to offspring of control and reinoculated parents. There was no significant effect of parental microbiota manipulation on offspring developmental time or lipid reserve. Our results reveal transgenerational effects of the parental commensal microbiota on different aspects of offspring life-history traits, thereby providing a better understanding of the long-lasting effects of host-microbe interactions.
共生微生物群是动物健康的关键调节因子,但对于亲代微生物群在多大程度上影响后代与健康相关的性状,我们知之甚少。我们通过操纵多食性果蝇的亲代微生物群并测量后代的发育性状、身体组成和繁殖力,填补了这一空白。我们设置了三种亲代微生物群处理方式,即亲代的微生物群未受操纵(对照)、被去除(无菌)或被去除后重新引入(重新接种)。我们发现,与非无菌亲代的后代相比,无菌亲代的后代中卵孵化率、蛹形成率以及幼虫和成年雌性的体重较低。部分羽化的成虫比例较高,且与对照和亲代重新接种的后代相比,无菌亲代的后代中成年雌性的繁殖力较低。亲代微生物群的操纵对后代的发育时间或脂质储备没有显著影响。我们的研究结果揭示了亲代共生微生物群对后代生活史性状不同方面的跨代效应,从而更好地理解了宿主 - 微生物相互作用的长期影响。