An Ecoregion-Based Assessment of Lakes in Türkiye With Phytoplankton Metrics and Multimetric Approaches

IF 2.1 3区 环境科学与生态学 Q2 ECOLOGY
Ecohydrology Pub Date : 2025-07-19 DOI:10.1002/eco.70069
Abuzer Çelekli, Özgür Eren Zariç
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引用次数: 0

Abstract

This study investigates the environmental characteristics, phytoplankton community dynamics, and ecological status (ES) of lakes in different ecoregions. Significant variations were observed in environmental variables across the lakes. Lake Kuğu, a brackish ecosystem, recorded the highest electrical conductivity (EC = 9810 μS/cm), while Lake Uzungöl showed the lowest EC values (47 μS/cm). Lake Karagöl exhibited the highest levels of total phosphorus (TP = 349 μg/L), total nitrogen (TN = 15.12 mg/L) and total organic carbon (TOC = 76.7 mg/L), reflecting eutrophic conditions. Conversely, Lake Uzungöl displayed the lowest TP and TN values and oligotrophic characteristics. Phytoplankton biovolume ranged from 0.40 mm3/L in Lake Borçka Karagöl to 15.47 mm3/L in Lake Karagöl. Canonical correspondence analysis (CCA) revealed strong associations (98.9%) between specific phytoplankton taxa and environmental gradients, with Lake Kuğu being characterized by pollution-tolerant taxa favouring high conductivity; Lake Karagöl being influenced by elevated TP, TN and TOC levels; and Lake Sera having high NO3. Microcystis flos-aquae, Lepocinclis oxyuris, Eunotia bilunaris, Nitzschia tubicola and Hantzschia amphioxys were found in Lake Karagöl and are relatively high in nutrient. Trophic state assessments using indices based on TP, TN, Secchi depth and chlorophyll-a identified Lake Kuğu and Lake Karagöl as hypertrophic, Lake Sera as eutrophic, Lake Borçka Karagöl as mesotrophic and Lake Uzungöl as oligotrophic. ES evaluated using multiple phytoplankton metrics (Modified Phytoplankton Trophic Index [MPTI], biological condition gradient [BCG], Aquatic Biotic Omnimetric Zenith [ABOZ] and Phyto-Tr) revealed that the ES ranged from high to poor among the lakes. The MPTI revealed that Lake Karagöl had a poor ES and Lake Kuğu had a moderate ES. A good ES was found in Lakes Borçka Karagöl and Sera, and Lake Uzungöl had a high ES. While MPTI, BCG and ABOZ provided consistent results, Phyto-Tr produced divergent outcomes. Correlation analysis highlighted strong relationships between MPTI, BCG, ABOZ and TP gradients. These findings underscore the importance of using multiple metrics to assess ecological health and highlight the influence of environmental factors on phytoplankton distribution and lake ES in different ecoregions. In addition, the findings of this study provide a scientific basis for ecosystem-based management and contribute to the conservation of freshwater resources in Türkiye.

Abstract Image

基于生态区域的 rkiye湖泊生态评价——基于浮游植物计量和多计量方法
研究了不同生态区湖泊的环境特征、浮游植物群落动态和生态状况。各湖泊的环境变量存在显著差异。微咸生态系统Kuğu湖的电导率最高(EC = 9810 μS/cm), Uzungöl湖的电导率最低(47 μS/cm)。Karagöl湖的总磷(TP = 349 μg/L)、总氮(TN = 15.12 mg/L)和总有机碳(TOC = 76.7 mg/L)含量最高,反映出富营养化状况。反之,Uzungöl湖表现出最低的TP和TN值和少营养特征。borka湖Karagöl浮游植物生物量为0.40 mm3/L, Karagöl浮游植物生物量为15.47 mm3/L。典型对应分析(CCA)表明,特定浮游植物分类群与环境梯度之间存在着98.9%的强相关性,其中Kuğu湖具有高电导率的耐污染分类群特征;Karagöl湖受到TP、TN和TOC水平升高的影响;和色拉湖NO3−较高。在Karagöl湖中发现了水微囊藻、oxylepocinclis、bilunaris、Nitzschia tubicola和Hantzschia amphioxys,营养含量较高。基于TP、TN、Secchi深度和叶绿素a的营养状态评价结果表明,Kuğu湖和Karagöl湖为富营养化,色拉湖为富营养化,borka湖Karagöl为中营养化,Uzungöl湖为贫营养化。利用修正浮游植物营养指数(MPTI)、生物条件梯度(BCG)、水生生物全尺度Zenith (ABOZ)和Phyto-Tr)对湖泊的ES进行评价,结果表明湖泊的ES从高到低不等。MPTI显示,湖Karagöl的ES较差,湖Kuğu的ES中等。borka湖Karagöl和色拉湖ES较好,Uzungöl湖ES较高。MPTI、BCG和ABOZ提供一致的结果,而Phyto-Tr产生不同的结果。相关分析显示MPTI、BCG、ABOZ和TP梯度之间存在较强的相关性。这些发现强调了使用多种指标来评估生态健康的重要性,并强调了环境因子对不同生态区浮游植物分布和湖泊ES的影响。研究结果为生态系统管理提供了科学依据,并对 rkiye淡水资源的保护做出了贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ecohydrology
Ecohydrology 环境科学-生态学
CiteScore
5.10
自引率
7.70%
发文量
116
审稿时长
24 months
期刊介绍: Ecohydrology is an international journal publishing original scientific and review papers that aim to improve understanding of processes at the interface between ecology and hydrology and associated applications related to environmental management. Ecohydrology seeks to increase interdisciplinary insights by placing particular emphasis on interactions and associated feedbacks in both space and time between ecological systems and the hydrological cycle. Research contributions are solicited from disciplines focusing on the physical, ecological, biological, biogeochemical, geomorphological, drainage basin, mathematical and methodological aspects of ecohydrology. Research in both terrestrial and aquatic systems is of interest provided it explicitly links ecological systems and the hydrologic cycle; research such as aquatic ecological, channel engineering, or ecological or hydrological modelling is less appropriate for the journal unless it specifically addresses the criteria above. Manuscripts describing individual case studies are of interest in cases where broader insights are discussed beyond site- and species-specific results.
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