Microbial Depletion Is Associated with Slower Cnidarian Regeneration.

IF 2.1 3区 生物学 Q1 ZOOLOGY Integrative and Comparative Biology Pub Date : 2025-07-23 DOI:10.1093/icb/icaf007
Jeric Da-Anoy, Kyle S Toyama, Oliwia Jasnos, Audrey W Wong, Thomas D Gilmore, Sarah W Davies
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Abstract

Microbiomes play an important role in physiology and development in cnidarians, but how these communities influence tissue regeneration is poorly understood. Here, we examined the effects of antibiotic exposure on regeneration and microbial communities in two cnidarian models, the sea anemones Nematostella vectensis (non-symbiotic, hereafter, Nematostella) and Exaiptasia diaphana (symbiotic, hereafter, Aiptasia). Bisected animals were incubated in either sterile or antibiotic-treated artificial seawater for 7 days and regeneration was monitored daily. After 7 days, tentacle number and length were measured, and microbial communities were profiled using metabarcoding of the V4 region of the 16S rRNA. Microbiome disruption was observed under antibiotic treatment in both species, resulting in decreased microbial load and shifts in relative abundances of certain microbial taxa. Nematostella exhibited a greater reduction in microbial diversity and community shifts under antibiotic exposure, whereas Aiptasia showed only moderate changes in diversity. In both species, microbiome disruption was associated with slower regeneration rates and reduced tentacle number and length, suggesting a functional role for the microbiome in anemone regeneration. Our findings suggest that host-microbiome interactions in both symbiotic and aposymbiotic anemones are important for the maintenance of regenerative processes. These findings provide insight into how cnidarians and their microbiomes respond to environmental stressors, with implications for predicting cnidarian resilience in the context of emerging threats to the marine environment.

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微生物耗竭与刺胞细胞再生缓慢有关。
微生物组在刺胞动物的生理和发育中发挥重要作用,但这些群落如何影响组织再生尚不清楚。在这里,我们研究了抗生素暴露对两种刺胞动物模型——Nematostella vectensis(非共生,以下简称Nematostella)和Exaiptasia diaphana(共生,以下简称Aiptasia)——的再生和微生物群落的影响。将剖分的动物分别在无菌或经抗生素处理的人工海水中孵育7天,每天监测再生情况。7天后,测量触手的数量和长度,并利用16S rRNA V4区的元条形码分析微生物群落。在抗生素治疗下,这两个物种的微生物组被破坏,导致微生物负荷下降和某些微生物类群的相对丰度发生变化。在抗生素暴露下,线虫菌的微生物多样性和群落变化明显减少,而线虫菌的多样性变化不大。在这两个物种中,微生物组的破坏与再生速度较慢、触手数量和长度减少有关,这表明微生物组在海葵再生中起着功能性作用。我们的研究结果表明,共生和非共生海葵中宿主-微生物组的相互作用对维持再生过程很重要。这些发现为刺胞动物及其微生物组如何应对环境压力提供了深入的见解,对预测刺胞动物在海洋环境新威胁背景下的恢复能力具有重要意义。
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来源期刊
CiteScore
4.70
自引率
7.70%
发文量
150
审稿时长
6-12 weeks
期刊介绍: Integrative and Comparative Biology ( ICB ), formerly American Zoologist , is one of the most highly respected and cited journals in the field of biology. The journal''s primary focus is to integrate the varying disciplines in this broad field, while maintaining the highest scientific quality. ICB''s peer-reviewed symposia provide first class syntheses of the top research in a field. ICB also publishes book reviews, reports, and special bulletins.
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