Two Species of Long-Day Breeding Hamsters Exhibit Distinct Gut Microbial Responses to Photoperiodic Variations.

IF 2.7 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Animals Pub Date : 2025-06-03 DOI:10.3390/ani15111648
Chao Fan, Huiliang Xue, Jinhui Xu, Ming Wu, Lei Chen, Laixiang Xu
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Abstract

The relationship between the gut microbiota and photoperiod has received widespread attention, and it is necessary to explore the probable common mechanisms involved. We tested whether the gut microbiota of animals with similar light-regulated life history traits would also exhibit consistent responses to the photoperiod. Here, two species of long-day breeders, striped hamsters (Cricetulus barabensis) and Djungarian hamsters (Phodopus sungorus), were raised under different photoperiods (long daylight, LD; short daylight, SD), and their cecal contents were collected to assess the gut microbiota. There was no difference in the gut microbial diversity between the groups of striped hamsters; however, in the Djungarian hamsters, lower Chao and Shannon indices were observed in the LD group than in the SD group. The bacterial community variation in the striped hamsters was reflected mainly in the enrichment of the genera Enterorhabdus and Jeotgalicoccus in the LD group; meanwhile, more taxa with significant changes in relative abundance under different photoperiods were found in the Djungarian hamsters, such as the enrichment of the genera Lactobacillus and Faecalibaculum in the LD group and the enrichment of the genera Ruminococcus and Colidextribacter in the SD group. The LD conditions substantially reduced the complexity of the gut microbial network in the Djungarian hamsters and increased the R2 value of the striped hamster gut microbiota under fitting with a neutral community model. Moreover, the potential gut microbial functions in the striped hamsters were relatively stable, but variations were observed in multiple pathways between the groups of Djungarian hamsters. These results contribute to the understanding of host species specificity in the response of the gut microbiota to external changes.

两种长日繁殖仓鼠对光周期变化表现出不同的肠道微生物反应。
肠道微生物群和光周期之间的关系已受到广泛关注,有必要探讨可能涉及的共同机制。我们测试了具有类似光调节生活史特征的动物的肠道微生物群是否也会对光周期表现出一致的反应。在不同的光周期(长日光,LD;收集它们的盲肠内容物,以评估肠道微生物群。各组间肠道微生物多样性无显著差异;而在保加利亚仓鼠中,LD组Chao和Shannon指数低于SD组。条纹仓鼠的细菌群落变异主要体现在LD组肠habdus属和jeotgalicoccoccus属的富集;同时,在不同光周期下,在保加利亚仓鼠中发现了更多相对丰度变化显著的类群,如LD组中Lactobacillus和Faecalibaculum属的富集,SD组中Ruminococcus和Colidextribacter属的富集。在中性群落模型拟合下,LD条件显著降低了保加利亚仓鼠肠道微生物网络的复杂性,提高了条纹仓鼠肠道微生物群的R2值。此外,条纹仓鼠的潜在肠道微生物功能相对稳定,但在保加利亚仓鼠组之间的多个途径中观察到差异。这些结果有助于了解肠道微生物群对外部变化的反应中宿主物种的特异性。
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来源期刊
Animals
Animals Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
4.90
自引率
16.70%
发文量
3015
审稿时长
20.52 days
期刊介绍: Animals (ISSN 2076-2615) is an international and interdisciplinary scholarly open access journal. It publishes original research articles, reviews, communications, and short notes that are relevant to any field of study that involves animals, including zoology, ethnozoology, animal science, animal ethics and animal welfare. However, preference will be given to those articles that provide an understanding of animals within a larger context (i.e., the animals'' interactions with the outside world, including humans). There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental details and/or method of study, must be provided for research articles. Articles submitted that involve subjecting animals to unnecessary pain or suffering will not be accepted, and all articles must be submitted with the necessary ethical approval (please refer to the Ethical Guidelines for more information).
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