Microbial and nutrient dynamics in mangrove, reef, and seagrass waters over tidal and diurnal time scales

IF 1.6 4区 环境科学与生态学 Q3 ECOLOGY
C. Becker, L. Weber, J. Suca, J. Llopiz, T. Mooney, A. Apprill
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引用次数: 10

Abstract

In coral reefs and adjacent seagrass meadow and mangrove environments, short temporal scales (i.e. tidal, diurnal) may have important influences on ecosystem processes and community structure, but these scales are rarely investigated. This study examines how tidal and diurnal forcings influence pelagic microorganisms and nutrient dynamics in 3 important and adjacent coastal biomes: mangroves, coral reefs, and seagrass meadows. We sampled for microbial (Bacteria and Archaea) community composition, cell abundances and environmental parameters at 9 coastal sites on St. John, US Virgin Islands that spanned 4 km in distance (4 coral reefs, 2 seagrass meadows and 3 mangrove locations within 2 larger bays). Eight samplings occurred over a 48 h period, capturing day and night microbial dynamics over 2 tidal cycles. The seagrass and reef biomes ex hibited relatively consistent environmental conditions and microbial community structure but were dominated by shifts in picocyanobacterial abundances that were most likely attributed to diel dynamics. In contrast, mangrove ecosystems exhibited substantial daily shifts in environmental parameters, heterotrophic cell abundances and microbial community structure that were consistent with the tidal cycle. Differential abundance analysis of mangrove-associated microorganisms revealed enrichment of pelagic oligotrophic taxa during high tide and enrichment of putative sediment-associated microbes during low tide. Our study underpins the importance of tidal and diurnal time scales in structuring coastal microbial and nutrient dynamics, with diel and tidal cycles contributing to a highly dynamic microbial environment in mangroves, and time of day likely contributing to microbial dynamics in seagrass and reef biomes.
红树林、珊瑚礁和海草水域在潮汐和昼夜时间尺度上的微生物和营养动态
在珊瑚礁和邻近的海草草甸和红树林环境中,短时间尺度(即潮汐、日)可能对生态系统过程和群落结构产生重要影响,但这些尺度的研究很少。本研究考察了潮汐和日强迫如何影响3个重要和邻近的沿海生物群落:红树林、珊瑚礁和海草草甸中的远洋微生物和营养动态。我们在美属维尔京群岛圣约翰岛的9个沿海地点(2个较大海湾内的4个珊瑚礁、2个海草草甸和3个红树林地点)进行了微生物(细菌和古菌)群落组成、细胞丰度和环境参数的采样。在48小时内进行了8次采样,在2个潮汐周期内捕获了昼夜微生物动态。海草和珊瑚礁生物群落表现出相对一致的环境条件和微生物群落结构,但主要受微青杆菌丰度变化的影响,这种变化很可能归因于生物动力学。相反,红树林生态系统在环境参数、异养细胞丰度和微生物群落结构上表现出与潮汐周期一致的显著日变化。红树林相关微生物的差异丰度分析显示,涨潮时浮游寡营养类群富集,低潮时推测沉积物相关微生物富集。我们的研究支持了潮汐和昼夜时间尺度在构建沿海微生物和营养动态中的重要性,潮汐和潮汐周期有助于红树林中高度动态的微生物环境,而一天中的时间可能有助于海草和珊瑚礁生物群系的微生物动态。
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来源期刊
Aquatic Microbial Ecology
Aquatic Microbial Ecology 环境科学-海洋与淡水生物学
CiteScore
3.30
自引率
0.00%
发文量
8
审稿时长
3.0 months
期刊介绍: AME is international and interdisciplinary. It presents rigorously refereed and carefully selected Research Articles, Reviews and Notes, as well as Comments/Reply Comments (for details see AME 27:209), Opinion Pieces (previously called ''As I See It'') and AME Specials. For details consult the Guidelines for Authors. Papers may be concerned with: Tolerances and responses of microorganisms to variations in abiotic and biotic components of their environment; microbial life under extreme environmental conditions (climate, temperature, pressure, osmolarity, redox, etc.). Role of aquatic microorganisms in the production, transformation and decomposition of organic matter; flow patterns of energy and matter as these pass through microorganisms; population dynamics; trophic interrelationships; modelling, both theoretical and via computer simulation, of individual microorganisms and microbial populations; biodiversity. Absorption and transformation of inorganic material; synthesis and transformation of organic material (autotrophic and heterotrophic); non-genetic and genetic adaptation; behaviour; molecular microbial ecology; symbioses.
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