季风期间珊瑚礁生态系统生物污损组合的时间变化。

IF 2.6 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biofouling Pub Date : 2023-10-01 Epub Date: 2024-01-19 DOI:10.1080/08927014.2023.2300141
Parissa Golinia, Ali Nasrolahi, Amir Ghazilou
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引用次数: 0

摘要

珊瑚礁是高度生物多样性的生态系统,一系列生物污损物种丰富了珊瑚礁的生物多样性。生物污损的时间变化会影响生态系统的稳定性,但在一些地区,这些与珊瑚相关的多样化群落仍未得到充分探索。本研究调查了夏巴哈尔湾珊瑚礁在夏季季风期间三个部署期的生物污损群落。在整个研究期间,共确定了 26 个分类群,藤壶和多毛目环节动物是主要分类群。覆盖率主要由浮游动物和藻类等结壳类群决定,而生物量则由贝壳形成类群的优势决定。PERMANOVA 的结果表明,浸没期对生物群结构的影响显著。生物污损评估在保护珊瑚礁生态系统的复杂平衡和长期健康方面发挥着关键作用。要全面了解生物污损的动态以及与珊瑚相关物种的相互作用,开展长期研究至关重要。
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Temporal variations of biofouling assemblages of a coral reef ecosystem during a monsoon period.

Coral reefs are highly biodiverse ecosystems, enriched by a range of biofouling species. Temporal variations in biofouling can affect ecosystem stability, but these diverse coral-associated communities remain underexplored in some regions. In the present study, biofouling assemblages of coral reefs in the Chabahar Bay were investigated during a summer monsoon at three deployment periods. In total, 26 taxa were identified with barnacles and polychaetes being the dominant taxa during the whole study. The coverage percentage was driven mostly by the encrusting taxa such as bryozoans and algae while biomass was determined by the dominance of shell-forming taxa. The results of PERMANOVA showed that the effects of the submersion period were significant on the assemblage structure. Biofouling assessment plays a pivotal role in safeguarding the intricate balance and long-term health of coral reef ecosystems. For a comprehensive understanding of biofouling dynamics and interactions with coral-associated species, conducting long-term studies is vital.

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来源期刊
Biofouling
Biofouling 生物-海洋与淡水生物学
CiteScore
5.00
自引率
7.40%
发文量
57
审稿时长
1.7 months
期刊介绍: Biofouling is an international, peer-reviewed, multi-discliplinary journal which publishes original articles and mini-reviews and provides a forum for publication of pure and applied work on protein, microbial, fungal, plant and animal fouling and its control, as well as studies of all kinds on biofilms and bioadhesion. Papers may be based on studies relating to characterisation, attachment, growth and control on any natural (living) or man-made surface in the freshwater, marine or aerial environments, including fouling, biofilms and bioadhesion in the medical, dental, and industrial context. Specific areas of interest include antifouling technologies and coatings including transmission of invasive species, antimicrobial agents, biological interfaces, biomaterials, microbiologically influenced corrosion, membrane biofouling, food industry biofilms, biofilm based diseases and indwelling biomedical devices as substrata for fouling and biofilm growth, including papers based on clinically-relevant work using models that mimic the realistic environment in which they are intended to be used.
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