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Strong responses of Drosophila melanogaster microbiota to developmental temperature

机译:果蝇黑素体微生物对发育温度的强烈反应

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Physiological responses to changes in environmental conditions such as temperature may partly arise from the resident microbial community that integrates a wide range of bio-physiological aspects of the host. In the present study, we assessed the effect of developmental temperature on the thermal tolerance and microbial community of Drosophila melanogaster. We also developed a bacterial transplantation protocol in order to examine the possibility of reshaping the host bacterial composition and assessed its influence on the thermotolerance phenotype. We found that the temperature during development affected thermal tolerance and the microbial composition of male D. melanogaster. Flies that developed at low temperature (13 degrees C) were the most cold resistant and showed the highest abundance of Wolbachia, while flies that developed at high temperature (31 degrees C) were the most heat tolerant and had the highest abundance of Acetobacter. In addition, feeding newly eclosed flies with bacterial suspensions from intestines of flies developed at low temperatures changed the heat tolerance of recipient flies. However, we were not able to link this directly to a change in the host bacterial composition.
机译:对温度等环境条件变化的生理反应可能部分地从驻留的微生物群落中出现,这些群落整合了宿主的广泛生物生物学方面。在本研究中,我们评估了发育温度对果蝇的热耐受性和微生物群落的影响。我们还开发了一种细菌移植方案,以检查重塑宿主细菌组合物的可能性,并评估其对热照相表型的影响。我们发现开发过程中的温度影响了耐热耐受性和微生物组成的男性D. melanogaster。在低温(13摄氏度)中发展的恒生是最抗抗性的并且显示出最高丰度的Wolbachia,而在高温(31℃)中开发的苍蝇是最耐热的,并且具有最高的acetobacter。此外,在低温下发育的苍蝇的肠道喂养新豆腐苍蝇的速度悬浮液改变了受体苍蝇的耐热性。但是,我们无法直接将此链接到宿主细菌组成的变化。

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