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Parental Microbiota Modulates Offspring Development Body Mass and Fecundity in a Polyphagous Fruit Fly

机译:父母微生物群调制后代开发体重和繁殖力在多功果果蝇中

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摘要

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 (Bactrocera tryoni) 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.
机译:共数微生物群是动物健身的关键调节剂,但父母微生物群的程度很少是众所周知的,这是对后代的健身相关性状的程度。我们通过操纵多功果飞行(Bactrocera Tryoni)和测量后代发育性状,身体成分和繁殖力来解决这种差距。我们生成了三个父母微生物群治疗,其中父母具有未被操纵(对照)的微生物群,除去(轴核)或除去和重新掺杂(重新调节)。我们发现,与非轴承烯父母相比,幼虫和成年女性的幼虫和成年女性的幼虫和成年女性体重的百分比较低。部分出现的成年人的百分比较高,并且成年女性的繁殖力在轴承酮父母相对于对照和再生父母的后代的后代较低。父母微生物群手动对后代发育时间或脂质储备没有显着影响。我们的结果揭示了父母共生微生物在后代寿命历史特征的不同方面的转基因影响,从而更好地了解宿主微生物相互作用的长期效果。

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