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地中海实蝇实验室适应过程中肠道细菌群落的动态变化

Dynamics of the Gut Bacteriome During a Laboratory Adaptation Process of the Mediterranean Fruit Fly, .

作者信息

Bel Mokhtar Naima, Catalá-Oltra Marta, Stathopoulou Panagiota, Asimakis Elias, Remmal Imane, Remmas Nikolaos, Maurady Amal, Britel Mohammed Reda, García de Oteyza Jaime, Tsiamis George, Dembilio Óscar

机构信息

Laboratory of Systems Microbiology and Applied Genomics, Department of Environmental Engineering, University of Patras, Agrinio, Greece.

Laboratory of Innovative Technology, National School of Applied Sciences of Tangier, Abdelmalek Essâadi University, Tétouan, Morocco.

出版信息

Front Microbiol. 2022 Jul 1;13:919760. doi: 10.3389/fmicb.2022.919760. eCollection 2022.

Abstract

Laboratory adaptation process used in sterile insect technique (SIT) programs can exert a significant impact on the insect-gut microbiome relationship, which may negatively impact the quality and performance of the fly. In the present study, changes in the gut microbiota that occur through laboratory adaptation of two populations were investigated: Vienna 8 genetic sexing strain (GSS), a long-established control line, and a wild population recently introduced to laboratory conditions. The bacterial profiles were studied for both strains using amplicon sequencing of the 16S rRNA V3-V4 hypervariable region in larvae and in the gastrointestinal tract of teneral (1 day) and adults (5 and 15 days) reared under laboratory conditions for 14 generations (F0-F13). Findings demonstrated the development of distinct bacterial communities across the generations with differences in the bacterial composition, suggesting a strong impact of laboratory adaptation on the fly bacteriome. Moreover, different bacterial profiles were observed between wild and Vienna 8 FD-GSS displaying different patterns between the developmental stages. Proteobacteria, mainly members of the family, represented the major component of the bacterial community followed by Firmicutes (mainly in Vienna 8 FD-GSS adults) and Chlamydiae. The distribution of these communities is dynamic across the generations and seems to be strain- and age-specific. In the Vienna 8 FD-GSS population, exhibited high relative abundance in the first three generations and decreased significantly later, while was relatively stable. In the wild population, was dominant across most of the generations, indicating that the wild population was more resistant to artificial rearing conditions compared with the Vienna 8 FD-GSS colony. Analysis of the core bacteriome revealed the presence of nine shared taxa between most of the examined medfly samples including , and . In addition, the operational taxonomic unit co-occurrence and mutual exclusion networks of the wild population indicated that most of the interactions were classified as co-presence, while in the Vienna 8 FD-GSS population, the number of mutual exclusions and co-presence interactions was equally distributed. Obtained results provided a thorough study of the dynamics of gut-associated bacteria during the laboratory adaptation of different populations, serving as guidance for the design of colonization protocols, improving the effectiveness of artificial rearing and the SIT application.

摘要

不育昆虫技术(SIT)项目中使用的实验室适应过程会对昆虫肠道微生物组关系产生重大影响,这可能会对果蝇的质量和性能产生负面影响。在本研究中,调查了通过对两个种群进行实验室适应而发生的肠道微生物群变化:维也纳8遗传性别品系(GSS),一个长期建立的对照品系,以及最近引入实验室条件的野生种群。使用16S rRNA V3-V4高变区的扩增子测序对两个品系的幼虫以及在实验室条件下饲养14代(F0-F13)的 teneral(1天)和成虫(5天和15天)的胃肠道中的细菌谱进行了研究。研究结果表明,不同世代间形成了独特的细菌群落,细菌组成存在差异,这表明实验室适应对果蝇细菌组有强烈影响。此外,在野生型和维也纳8 FD-GSS之间观察到不同的细菌谱,在发育阶段显示出不同的模式。变形菌门,主要是该科的成员,是细菌群落的主要组成部分,其次是厚壁菌门(主要在维也纳8 FD-GSS成虫中)和衣原体门。这些群落的分布在不同世代间是动态的,似乎具有品系和年龄特异性。在维也纳8 FD-GSS种群中, 在前三代中相对丰度较高,随后显著下降,而 相对稳定。在野生种群中, 在大多数世代中占主导地位,这表明与维也纳8 FD-GSS群体相比,野生种群对人工饲养条件更具抗性。对核心细菌组的分析表明,在大多数检测的地中海实蝇样本之间存在九个共享分类群,包括 、 和 。此外,野生种群的操作分类单元共现和互斥网络表明,大多数相互作用被归类为共存,而在维也纳8 FD-GSS种群中,互斥和共存相互作用的数量分布均匀。获得的结果对不同种群在实验室适应过程中肠道相关细菌的动态进行了全面研究,为定殖方案的设计、提高人工饲养的有效性和SIT应用提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb08/9283074/e2482a860b9b/fmicb-13-919760-g0001.jpg

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