Roy Yanovski, Hana Barak, Itzchak Brickner, Ariel Kushmaro, Avigdor Abelson
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引用次数: 0
摘要
人工鱼礁通过提供新的定居基质,被用作恢复退化珊瑚礁的工具。最初的招募过程包括在部署后不久形成微生物生物膜。本研究旨在比较两个不同珊瑚礁地点人工基质上的生物膜组成和发展情况。这两个地点的环境条件不同,包括人为影响的程度。在部署后的头 6 个月中,采用一种称为 "逐标签 "的新方法,四次采集基质和海水样本。对原核(16s)和真核(18s)基因进行了 DNA 提取、测序和分类。结果发现,水体中的浮游生物群落之间没有差异,但两个地点结构上的生物膜群落却存在显著差异。此外,珊瑚的招募率也存在差异,而众所周知,珊瑚的招募率会受到生物膜组成的影响。我们的研究结果表明,环境条件在生物膜的早期阶段(最初几个月)可能发挥作用,这反过来又可能影响珊瑚礁群落的演替和发展,以及人工鱼礁作为恢复工具的成功。
The microbial community of coral reefs: biofilm composition on artificial substrates under different environmental conditions
Artificial reefs are used as tools for the restoration of degrading coral reefs by providing new settlement substrates. The initial recruitment process consists of the formation of microbial biofilms shortly after deployment. The aim of the present study is to compare biofilm composition and development on artificial substrates at two different coral-reef sites. These locations differ in their environmental conditions, including their level of anthropogenic impact. Substrate and seawater samples were collected four times during the first 6 months after deployment, using a new methodology termed ‘tab-by-tab’. DNA was extracted, sequenced, and sorted for both prokaryotic (16s) and eukaryotic (18s) genes. No difference was found between the planktonic communities in the water, yet significant differences were observed in the biofilm communities on the structures at the two sites. Moreover, differences were recorded in coral recruitment rates, which are known to be affected by biofilm composition. Our findings suggest a potential role of environmental conditions in the early biofilm stages (first few months), which in turn may impact the succession and development of coral-reef communities and the success of artificial reefs as restoration tools.
期刊介绍:
Marine Biology publishes original and internationally significant contributions from all fields of marine biology. Special emphasis is given to articles which promote the understanding of life in the sea, organism-environment interactions, interactions between organisms, and the functioning of the marine biosphere.