不同的珊瑚环境决定了浮游弧菌的动态。

IF 6.2 2区 环境科学与生态学 Q1 GENETICS & HEREDITY
Wenbin Zhao, Xing Chen, Ronghua Liu, Peng Tian, Wentao Niu, Xiao-Hua Zhang, Jiwen Liu, Xiaolei Wang
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引用次数: 0

摘要

背景:珊瑚礁是生物多样性和生产力最高的生态系统之一,为大量物种提供了栖息地。具有共生微生物组的造礁巩膜珊瑚,包括细菌、古菌、病毒和真核微生物,被称为珊瑚全生物。其中,主要由弧菌引起的珊瑚疾病对珊瑚覆盖和多样性的丧失起到了重要作用。栖息地在全球范围内的过滤导致了海洋细菌群落的多样性结构。西沙群岛与广东大亚湾的珊瑚种类、数量和特征存在显著差异。因此,弧菌群落在珊瑚丰富和珊瑚贫乏地区之间可能是不同的。结果:通过比较富含珊瑚(西沙群岛)和缺乏珊瑚(大亚湾)地区的弧菌动力学,我们发现了与珊瑚相关的弧菌丰度、多样性、群落组成和组装机制的差异。在珊瑚丰富的地区,弧菌的丰度较高,这可能表明弧菌与珊瑚之间存在强烈的相互作用。campbellii弧菌、海洋副光杆菌和加勒比弧菌广泛分布在珊瑚富集区和珊瑚贫乏区,这可能表明珊瑚刺激的弧菌生长的物种特异性较弱。随机森林预测显示,弧菌和光细菌分别是珊瑚丰富和珊瑚贫乏地区的潜在微生物指标。西沙群岛弧菌群落的聚集是由生态漂移而非选择决定的。相比之下,均质化选择对大亚湾群落更为重要,这可能反映了栖息地过滤的作用。结论:本研究揭示了富珊瑚区和贫珊瑚区弧菌的不同分布模式和组装机制,为珊瑚礁区弧菌群落的研究提供了背景数据,有助于珊瑚礁的生物保护。造成差异的主要原因是珊瑚的数量和种类不同、环境(如温度)和空间因素。它反映了弧菌与珊瑚之间的强烈相互作用,为研究珊瑚礁生态系统中的弧菌提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Distinct coral environments shape the dynamic of planktonic Vibrio spp.

Distinct coral environments shape the dynamic of planktonic Vibrio spp.

Distinct coral environments shape the dynamic of planktonic Vibrio spp.

Distinct coral environments shape the dynamic of planktonic Vibrio spp.

Background: Coral reefs are one of the most biodiverse and productive ecosystems, providing habitat for a vast of species. Reef-building scleractinian corals with a symbiotic microbiome, including bacteria, archaea, viruses and eukaryotic microbes, are referred to coral holobionts. Among them, coral diseases, mainly caused by Vibrio spp., have significantly contributed to the loss of coral cover and diversity. Habitat filtering across the globe has led to a variety structure of marine bacterial communities. Coral species, quantity and characteristics are significant differences between the Xisha Islands and Daya Bay (Guangdong Province). Thus, the Vibrio communities may be distinct between coral rich and poor areas.

Results: Through comparison of Vibrio dynamics between coral-rich (Xisha Islands) and coral-poor (Daya Bay) locations, we uncovered differences in Vibrio abundance, diversity, community composition and assembly mechanisms associated with corals. The higher abundance of Vibrio in coral rich areas may indicate a strong interaction between vibrios and corals. V. campbellii, Paraphotobacterium marinum and V. caribbeanicus were widely distributed in both coral rich and poor areas, likely indicating weak species specificity in the coral-stimulated growth of Vibrio. Random-forest prediction revealed Vibrio species and Photobacterium species as potential microbial indicators in the coral rich and coral poor areas, respectively. Ecological drift rather than selection governed the Vibrio community assembly in the Xisha Islands. Comparatively, homogenizing selection was more important for the Daya Bay community, which may reflect a role of habitat filtration.

Conclusion: This study revealed the different distribution pattern and assembly mechanism of Vibrio spp. between coral rich and poor areas, providing the background data for the research of Vibrio community in coral reef areas and may help the protection of coral reef at the biological level. The main reasons for the difference were different number and species of corals, environmental (e.g., temperature) and spatial factors. It reflected the strong interaction between Vibrio and corals, and provided a new perspective for the investigation of Vibrio in coral reef ecosystem.

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来源期刊
Environmental Microbiome
Environmental Microbiome Immunology and Microbiology-Microbiology
CiteScore
7.40
自引率
2.50%
发文量
55
审稿时长
13 weeks
期刊介绍: Microorganisms, omnipresent across Earth's diverse environments, play a crucial role in adapting to external changes, influencing Earth's systems and cycles, and contributing significantly to agricultural practices. Through applied microbiology, they offer solutions to various everyday needs. Environmental Microbiome recognizes the universal presence and significance of microorganisms, inviting submissions that explore the diverse facets of environmental and applied microbiological research.
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