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面对复杂生命周期和瓶颈时微生物群落的组成与更替:通过蜣螂研究获得的见解

Microbiome composition and turnover in the face of complex lifecycles and bottlenecks: insights through the study of dung beetles.

作者信息

Jones Joshua A, Newton Irene Garcia, Moczek Armin P

机构信息

Department of Biology, Indiana University Bloomington, Bloomington, Indiana, USA.

出版信息

Appl Environ Microbiol. 2025 Jan 31;91(1):e0127824. doi: 10.1128/aem.01278-24. Epub 2024 Dec 20.

Abstract

UNLABELLED

Microbiome composition and function often change throughout a host's life cycle, reflecting shifts in the ecological niche of the host. The mechanisms that establish these relationships are therefore important dimensions of host ecology and evolution; yet, their nature remains poorly understood. Here, we sought to investigate the microbial communities associated with the complex life cycle of the dung beetle and the relative contributions of host life stage, sex, and environment in determining microbiome assembly. We find that plays host to a diverse microbiota that undergo drastic community shifts throughout host development, influenced by host life stage, environmental microbiota, and, to a lesser degree, sex. Contrary to predictions, we found that egg and pupal stages-despite the absence of a digestive tract or defined microbe-storing organs-do not constrain microbial maintenance, while host-constructed environments, such as a maternally derived fecal pellet or the pupal chamber constructed by late larvae, may still serve as complementary microbial refugia for select taxa. Lastly, we identify a small community of putative core microbiota likely to shape host development and fitness. Our results provide important insights into mechanisms employed by solitary organisms to assemble, maintain, and adjust beneficial microbiota to confront life-stage-specific needs and challenges.

IMPORTANCE

As the influence of symbionts on host ecology, evolution, and development has become more apparent so has the importance of understanding how hosts facilitate the reliable maintenance of their interactions with these symbionts. A growing body of work has thus begun to identify diverse behaviors and physiological mechanisms underpinning the selective colonization of beneficial symbionts across a range of host taxa. Yet, how organisms with complex life cycles, such as holometabolous insects, establish and maintain key symbionts remains poorly understood. This is particularly interesting considering the drastic transformations of both internal and external host morphology, and the ecological niche shifts in diet and environment, that are the hallmark of metamorphosis. This work investigates the dynamic changes of the microbiota associated with the complex life cycle and host-constructed environments of the bull-headed dung beetle, , a useful model for understanding how organisms may maintain and modulate their microbiota across development.

摘要

未标注

微生物群落的组成和功能在宿主的整个生命周期中常常发生变化,这反映了宿主生态位的转变。因此,建立这些关系的机制是宿主生态学和进化的重要方面;然而,它们的本质仍知之甚少。在这里,我们试图研究与蜣螂复杂生命周期相关的微生物群落,以及宿主生命阶段、性别和环境在决定微生物群落组装中的相对贡献。我们发现,蜣螂宿主拥有多样化的微生物群,在宿主发育过程中,微生物群落会发生剧烈变化,受到宿主生命阶段、环境微生物群以及程度较轻的性别的影响。与预测相反,我们发现卵期和蛹期——尽管没有消化道或特定的微生物储存器官——并不限制微生物的维持,而宿主构建的环境,如母体来源的粪便颗粒或晚期幼虫构建的蛹室,可能仍然是特定类群的补充微生物避难所。最后,我们确定了一小群可能塑造宿主发育和健康状况的假定核心微生物群。我们的研究结果为独居生物组装、维持和调整有益微生物群落以应对特定生命阶段的需求和挑战所采用的机制提供了重要见解。

重要性

随着共生体对宿主生态学、进化和发育的影响变得更加明显,理解宿主如何促进与这些共生体可靠互动的维持也变得越发重要。因此,越来越多的研究开始确定一系列宿主类群中有益共生体选择性定殖的各种行为和生理机制。然而,具有复杂生命周期的生物,如全变态昆虫,如何建立和维持关键共生体仍知之甚少。考虑到宿主内部和外部形态的剧烈转变,以及饮食和环境中的生态位变化是变态的标志,这一点尤其有趣。这项研究调查了与牛头蜣螂复杂生命周期和宿主构建环境相关的微生物群的动态变化,牛头蜣螂是理解生物如何在发育过程中维持和调节其微生物群的有用模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/701a/11784073/c8a7c5ca7443/aem.01278-24.f001.jpg

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