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肠道微生物群通过刺激成年东方果实蝇的精氨酸和脯氨酸代谢途径促进宿主对低温胁迫的抗性。

Gut microbiota promotes host resistance to low-temperature stress by stimulating its arginine and proline metabolism pathway in adult Bactrocera dorsalis.

机构信息

State Key Laboratory of Agricultural Microbiology, Key Laboratory of Horticultural Plant Biology (MOE), China-Australia Joint Research Centre for Horticultural and Urban Pests, Institute of Urban and Horticultural Entomology, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, People's Republic of China.

出版信息

PLoS Pathog. 2020 Apr 15;16(4):e1008441. doi: 10.1371/journal.ppat.1008441. eCollection 2020 Apr.

Abstract

Gut symbiotic bacteria have a substantial impact on host physiology and ecology. However, the contribution of gut microbes to host fitness during long-term low-temperature stress is still unclear. This study examined the role of gut microbiota in host low-temperature stress resistance at molecular and biochemical levels in the oriental fruit fly Bactrocera dorsalis. The results showed that after the gut bacteria of flies were removed via antibiotic treatment, the median survival time was significantly decreased to approximately 68% of that in conventional flies following exposure to a temperature stress of 10°C. Furthermore, we found that Klebsiella michiganensis BD177 is a key symbiotic bacterium, whose recolonization in antibiotic treated (ABX) flies significantly extended the median survival time to 160% of that in the ABX control, and restored their lifespan to the level of conventional flies. Notably, the relative levels of proline and arginine metabolites were significantly downregulated by 34- and 10-fold, respectively, in ABX flies compared with those in the hemolymph of conventional flies after exposure to a temperature stress of 10°C whereas recolonization of ABX flies by K. michiganensis BD177 significantly upregulated the levels of proline and arginine by 13- and 10- fold, respectively, compared with those found in the hemolymph of ABX flies. qPCR analysis also confirmed that K. michiganensis-recolonized flies significantly stimulated the expression of transcripts from the arginine and proline metabolism pathway compared with the ABX controls, and RNAi mediated silencing of two key genes Pro-C and ASS significantly reduced the survival time of conventional flies, postexposure low-temperature stress. We show that microinjection of L-arginine and L-proline into ABX flies significantly increased their survival time following exposure to temperature stress of 10°C. Transmission electron microscopy (TEM) analysis further revealed that low-temperature stress caused severe destruction in cristae structures and thus resulted in abnormal circular shapes of mitochondria in ABX flies gut, while the recolonization of live K. michiganensis helped the ABX flies to maintain mitochondrial functionality to a normal status, which is important for the arginine and proline induction. Our results suggest that gut microbiota plays a vital role in promoting the host resistance to low-temperature stress in B. dorsalis by stimulating its arginine and proline metabolism pathway.

摘要

肠道共生细菌对宿主的生理和生态有重大影响。然而,肠道微生物在宿主长期低温应激下对其适应性的贡献仍不清楚。本研究从分子和生化水平研究了肠道微生物在东方果实蝇 Bactrocera dorsalis 低温应激抗性中的作用。结果表明,通过抗生素处理去除果蝇肠道细菌后,在 10°C 的温度胁迫下,其平均存活时间显著缩短至对照的约 68%。此外,我们发现 Klebsiella michiganensis BD177 是一种关键的共生细菌,其在抗生素处理(ABX)果蝇中的再定植将平均存活时间显著延长至对照的 160%,并将其寿命恢复到对照的水平。值得注意的是,与对照相比,在 10°C 的温度胁迫下,ABX 果蝇的血淋巴中脯氨酸和精氨酸代谢物的相对水平分别显著下调了 34 倍和 10 倍,而 ABX 果蝇中 K. michiganensis BD177 的再定植则分别将脯氨酸和精氨酸的水平显著上调了 13 倍和 10 倍。qPCR 分析还证实,与 ABX 对照相比,K. michiganensis 再定植的果蝇显著刺激了精氨酸和脯氨酸代谢途径的转录本表达,而 Pro-C 和 ASS 两个关键基因的 RNAi 介导的沉默显著降低了常规果蝇的存活时间,使其在低温应激后暴露。我们发现,将 L-精氨酸和 L-脯氨酸微注射到 ABX 果蝇中可显著提高其在 10°C 温度胁迫下的存活时间。透射电子显微镜(TEM)分析进一步表明,低温应激会导致嵴结构严重破坏,从而导致 ABX 果蝇肠道中线粒体出现异常的圆形,而活的 K. michiganensis 的再定植有助于 ABX 果蝇维持线粒体的正常功能,这对于精氨酸和脯氨酸的诱导很重要。我们的研究结果表明,肠道微生物通过刺激其精氨酸和脯氨酸代谢途径,在促进 B. dorsalis 宿主对低温应激的抗性方面发挥了重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd70/7185725/c6cec7aa79dd/ppat.1008441.g001.jpg

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