Main drivers in the structure and dynamics of the zooplankton community in a Pampean seepage shallow lake throughout an annual cycle during turbid and clear water regimes

IF 1.4 Q3 MARINE & FRESHWATER BIOLOGY
Diego Martín Ardohain, N. Gabellone, M. Claps
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引用次数: 0

Abstract

We investigated the composition and dynamics of the zooplankton community in a pampean seepage lake (Buenos Aires, Argentina) under different environmental (rainfall, hydrometric level, conductivity, transparency) and biotic (phytoplankton biomass and presence of submerged macrophytes) conditions. In the annual cycle analyzed, the shallow lake evidenced alternating turbid- and clear-water periods associated with changes in phytoplankton biomass and the extent of colonization by submerged macrophytes. Thirty-five species were identified (21 rotifers, nine cladocerans and five copepods). Only six species were perennial: the rotifers Brachionus caudatus, Keratella tropica; the cladoceran Ceriodaphnia dubia; and the copepods Notodiaptomus incompositus, Metacyclops mendocinus, and Microcyclops dubitabilis. The zooplankton manifested a similar annual-abundance pattern in the three sampling stations established. Density and biomass peaks occurred in autumn during the clear phase without submerged macrophytes, whereas minimum values were obtained during the turbid phase. The presence of submerged macrophytes favored the zooplankton community, as evidenced by an increased abundance (twice that recorded during the turbid period) and species richness (from 20 to 30 species), with both parameters being associated with increased possibilities for zooplankton refuge plus an incorporation of periphytic and benthic species. Rotifers always predominated numerically. The copepod contribution prevailed throughout the annual cycle with respect to biomass except in spring when the cladocerans were more prevalent. These findings demonstrated that the zooplankton community responded positively to the changes that occurred in the environmental conditions of the lake between the turbid- and the clear-water states.
在浑浊和清澈的水情下,潘潘渗漏浅水湖浮游动物群落结构和动力学的主要驱动因素
我们研究了在不同环境(降雨量、水文水位、电导率、透明度)和生物(浮游植物生物量和沉水大型植物的存在)条件下,潘潘渗漏湖(阿根廷布宜诺斯艾利斯)浮游动物群落的组成和动态。在分析的年度周期中,浅水湖出现了与浮游植物生物量和沉水大型植物定殖程度变化相关的交替浊水期和清水期。鉴定出35种(21种轮虫、9种枝角类和5种桡足类)。只有六种是多年生的:尾臂尾轮虫、热带角轮虫;杜比亚Ceriodaphnia分支角类;以及桡足类Notodiptomus incompositus、Metacyclops mendocinus和Microcyclops dubitabilis。在建立的三个采样站中,浮游动物表现出类似的年度丰度模式。密度和生物量峰值出现在没有沉水大型植物的秋季,而最小值出现在浑浊期。沉水大型植物的存在有利于浮游动物群落,其丰度增加(是浑浊期记录的两倍)和物种丰富度增加(从20种增加到30种)证明了这一点,这两个参数都与浮游动物避难的可能性增加以及外围和底栖物种的结合有关。轮虫在数量上总是占主导地位。就生物量而言,桡足类的贡献在整个年度周期中占主导地位,但在分支角类更为普遍的春季除外。这些发现表明,浮游动物群落对浑浊和清澈状态之间湖泊环境条件的变化做出了积极反应。
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来源期刊
International Aquatic Research
International Aquatic Research MARINE & FRESHWATER BIOLOGY-
CiteScore
2.40
自引率
7.70%
发文量
0
审稿时长
12 weeks
期刊介绍: The journal (IAR) is an international journal that publishes original research articles, short communications, and review articles in a broad range of areas relevant to all aspects of aquatic sciences (freshwater and marine). The Journal specifically strives to increase the knowledge of most aspects of applied researches in both cultivated and wild aquatic animals in the world. The journal is fully sponsored, which means it is free of charge for authors. The journal operates a single-blind peer review process. The main research areas in aquatic sciences include: -Aquaculture- Ecology- Food science and technology- Molecular biology- Nutrition- Physiology- Water quality- Climate Change
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