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打破平衡:痤疮持续时间如何影响皮肤微生物群的组装过程。

Disrupting the balance: how acne duration impacts skin microbiota assembly processes.

作者信息

Sun Lang, Wang Qingqun, Huang Jing, Wang Huan, Yu Zheng

机构信息

Department of Microbiology, Human Microbiome and Health Group, School of Basic Medical Science, Central South University, Changsha, Hunan, China.

Department of Parasitology, School of Basic Medical Science, Central South University, Changsha, Hunan, China.

出版信息

Microbiol Spectr. 2025 Apr;13(4):e0260324. doi: 10.1128/spectrum.02603-24. Epub 2025 Feb 24.

DOI:10.1128/spectrum.02603-24
PMID:39992142
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11960176/
Abstract

Growing interest in the impact of microbial balance on health has driven studies on the ecological processes shaping the skin microbiota. Skin diseases, which alter the skin's local environment, can disrupt the microbial structure and interact with the disease itself. However, research on microbial assembly in diseased skin remains limited. In this study, we applied ecological models to characterize the processes shaping the skin microbiota in acne patients, considering the impact of disease duration on both skin pores and surfaces using bacterial amplicon sequencing. Our results revealed a significant shift in microbial diversity on the skin surface of patients with long-term acne. Further microbial community analyses showed a transition in ecological processes from healthy to diseased skin. Microbial communities on the skin surfaces of healthy controls and individuals with short-duration acne were primarily driven by heterogeneous selection, whereas microbial drift dominated the assembly process in the long-duration groups. Using the Sloan neutral model, we classified amplicon sequence variants (ASVs) into high-effect and low-effect groups based on relative abundance and sample occurrence. High-effect ASVs, likely exerting a greater ecological influence, were predominantly represented by across all acne-affected skin groups, while became enriched among high-effect ASVs in patients with long-term acne. Functional profiling further demonstrated that high-effect ASVs were significantly enriched in motility-related pathways. Additionally, we observed a reduction in microbial network complexity on skin surfaces as disease duration increased. Overall, the ecological dynamics of skin microbial communities may offer valuable insights into the mechanisms underlying disease onset and persistence.IMPORTANCEThe skin microbiota plays a critical role in acne development, yet the processes governing microbial assembly during acne progression remain poorly understood. Previous studies predominantly focused on factors such as acne severity, location, and duration in relation to skin microbial structure, with little attention given to the ecological mechanisms shaping the communities. In this study, we applied ecological models to investigate the processes influencing microbial assembly of skin microbiota in acne patients with varying disease durations and examined functions of ecologically important non-neutral amplicon sequence variants (ASVs). Our findings reveal a transition in ecological processes from deterministic to neutral processes as acne duration increased, with non-neutral ASVs potentially contributing to acne pathogenicity and persistence. These insights contribute to a deeper understanding of the ecological dynamics underlying acne and indicate that targeting these non-neutral ASVs or their associated functions may serve as the basis for future therapeutic strategies.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7670/11960176/569fb0e1d0ef/spectrum.02603-24.f005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7670/11960176/278ee4ffda89/spectrum.02603-24.f001.jpg
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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7670/11960176/278ee4ffda89/spectrum.02603-24.f001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7670/11960176/37a90398c222/spectrum.02603-24.f002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7670/11960176/e929da0118eb/spectrum.02603-24.f003.jpg
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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7670/11960176/569fb0e1d0ef/spectrum.02603-24.f005.jpg
摘要

对微生物平衡对健康影响的兴趣日益浓厚,推动了对塑造皮肤微生物群的生态过程的研究。改变皮肤局部环境的皮肤病会破坏微生物结构,并与疾病本身相互作用。然而,关于患病皮肤中微生物组装的研究仍然有限。在本研究中,我们应用生态模型来表征痤疮患者皮肤微生物群的形成过程,使用细菌扩增子测序考虑疾病持续时间对皮肤毛孔和表面的影响。我们的结果显示,长期痤疮患者皮肤表面的微生物多样性发生了显著变化。进一步的微生物群落分析表明,生态过程从健康皮肤向患病皮肤发生了转变。健康对照者和短期痤疮患者皮肤表面的微生物群落主要由异质性选择驱动,而微生物漂变在长期痤疮组的组装过程中占主导地位。使用斯隆中性模型,我们根据相对丰度和样本出现情况将扩增子序列变体(ASV)分为高效应组和低效应组。高效应ASV可能发挥更大的生态影响,在所有受痤疮影响的皮肤组中主要由[具体内容缺失]代表,而[具体内容缺失]在长期痤疮患者的高效应ASV中富集。功能分析进一步表明,高效应ASV在与运动相关的途径中显著富集。此外,我们观察到随着疾病持续时间的增加,皮肤表面微生物网络的复杂性降低。总体而言,皮肤微生物群落的生态动态可能为疾病发生和持续存在的潜在机制提供有价值的见解。

重要性

皮肤微生物群在痤疮发展中起关键作用,但痤疮进展过程中微生物组装的调控过程仍知之甚少。先前的研究主要集中在痤疮严重程度、位置和持续时间等与皮肤微生物结构相关的因素上,很少关注塑造群落的生态机制。在本研究中,我们应用生态模型来研究不同疾病持续时间的痤疮患者皮肤微生物群的微生物组装影响过程,并检查具有重要生态意义的非中性扩增子序列变体(ASV)的功能。我们的研究结果表明,随着痤疮持续时间的增加,生态过程从确定性过程向中性过程转变,非中性ASV可能导致痤疮的致病性和持续性。这些见解有助于更深入地理解痤疮背后的生态动态,并表明针对这些非中性ASV或其相关功能可能成为未来治疗策略的基础。

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