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Biomass, diversity and production of rocky shore macroalgae at two nutrient enrichment and wave action levels

机译:在两种养分富集和波浪作用水平下岩质海岸大型藻的生物量,多样性和产量

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摘要

The littoral zone of temperate rocky shores is normally dominated by perennial macroalgae (e.g. Fucus, Ascophyllum, Laminaria), but nutrient enrichment and/or permanently decreased wave action may lead to structural community changes from dominance of perennials to increased amounts of annual opportunistic species (mainly green algae). Macroalgal biomass, diversity and production as well as relationships between the two latter were studied using Solbergstrand's rocky shore mesocosms in SE Norway in connection with a long-term experimental manipulation of nutrient addition and wave action (high and low levels of both factors applied in a crossed way to eight outdoor basins). After more than 2 years of experimental treatment, the total standing stock of macroalgae was larger in low nutrient than in high nutrient treatments as well as in high wave compared to low wave treatments (in autumn only). For macroalgal functional groups, bushy and filamentous brown and filamentous red algae were generallyrnfavoured by low nutrient concentrations, while annual filamentous and sheet-like green algae were stimulated by the nutrient enrichment. There was only one significant interaction between nutrient enrichment and wave action (for brown filamentous algae in autumn) and also only one significant main effect of the wave treatment (for bushy brown algae in autumn). Surprisingly, the high nutrient treatments supported a higher diversity of macroalgae, whereas the low nutrient treatments generally showed higher production rates. Moreover, significantly negative correlations were found between macroalgal diversity and primary productivity in both summer and autumn. This study shows that it is the biological components of the communities subjected to external forcing (nutrient addition or decreased wave action) that regulate production and this contradicts the common misperception that resource production in natural systems simply can be fast-forwarded by fertilization. The negative relationships between diversity and productivity, although a consequence of unexpected results for diversity and production, are also novel and hint towards species identities having more important functional consequences than general species dominance patterns and the amount of species per se. These results also emphasise the context dependency of findings within the field of biodiversity and ecosystem functioning.
机译:温带石质海岸的沿海地带通常以多年生大型藻类(例如岩藻,烟叶,海带)为主,但养分富集和/或波浪作用永久减少可能导致结构性群落的变化,从多年生植物的优势变为每年机会性物种数量的增加(主要是绿藻)。使用挪威东南部的Solbergstrand的岩岸中观研究了长期藻类生物量,多样性和产量以及两者之间的关系,并进行了长期的营养物添加和波动作用实验(两种因子的高低水平都应用在土壤中)。越过八个室外水池)。经过2年以上的实验处理,低营养素的高藻类总存量要比高营养素处理和高脂素海藻的总立存量要大,而低脂素处理仅在秋季。对于大型藻类功能群,营养物质浓度低通常有利于丛生的和丝状的棕色藻类和丝状的红藻,而养分的富集则刺激一年生的丝状和片状绿藻。养分富集与波浪作用之间只有一种显着的相互作用(秋季为褐色丝状藻类),波浪处理中只有一种显着的主要作用(秋季为浓密的棕色藻类)。出乎意料的是,高养分处理支持较高藻类的多样性,而低养分处理通常显示较高的生产率。此外,在夏季和秋季,大型藻类多样性与初级生产力之间发现显着负相关。这项研究表明,受到外部强迫(营养添加或波动作用减少)的是社区的生物成分,从而调节了生产,这与普遍的误解相反,即人们普遍认为自然系统中的资源生产可以通过施肥来快速推进。多样性和生产力之间的负相关关系,尽管是多样性和生产出乎意料的结果的结果,但它也是新颖的,并暗示着物种身份具有比一般物种优势模式和物种本身数量更为重要的功能后果。这些结果还强调了生物多样性和生态系统功能领域内研究结果的背景依赖性。

著录项

  • 来源
    《Marine biology》 |2010年第1期|29-47|共19页
  • 作者单位

    ARONIA, Coastal Zone Research Team, Abo Akademi University and Novia University of Applied Sciences, Raseborgsvaegen 9, 10600 Ekenaes, Finland Environmental and Marine Biology, Abo Akademi University, Artillerigatan 6, 20520 Turku, Finland;

    Environmental and Marine Biology, Abo Akademi University, Artillerigatan 6, 20520 Turku, Finland;

    Department of Environmental, Social & Spatial Change (ENSPAC), Roskilde University, P.O. Box 260, 4000 Roskilde, Denmark;

    Kirkerudveien 17, 3470 Slemmestad, Norway;

    Environmental and Marine Biology, Abo Akademi University, Artillerigatan 6, 20520 Turku, Finland;

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