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首页> 外文期刊>Journal of environmental biology >Variations in phytoplankton carbon biomass, community assemblages and species succession along Lake Burullus, Northern Egypt
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Variations in phytoplankton carbon biomass, community assemblages and species succession along Lake Burullus, Northern Egypt

机译:埃及北部Burullus湖沿岸浮游植物碳生物量,群落组成和物种演替的变化

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摘要

Phytoplankton assemblages and species succession along Lake Burullus (Southern Mediterranean) is expressed as carbon biomass (mg cm~(-3)) using a standard spreadsheet based on the species cell volume cell1 carbon relationship. High Chi a levels were measured (maximum 85-126 mg m~3) reflecting a dense phytoplankton population (up to 8.3 × 10~3 cell ml~(-1) and 5.5 × 10~3 mg cm~3) throughout the lake body with maximum concentrations at the western sector of the lake (S1). Adiverse phytoplankton community was determined. Cell count data revealed the dominance of a mixed phytoplankton taxa, however biomass data indicates over-dominance of Bacillariophyceae (up to 98%). Good correlation (r=0.73, p<0.05) was found between Chi a and carbon biomass with various cell carbon/Chi a ratio according to variations in community structure. Bacillariophyceae were the most dominant, particularly at the middle (S2) and the western parts (S1) during periods of high nutrient (silicate) and good weather conditions (during spring/summer months). Chlorophyceae were abundant with Scenedesmus sp. mostly dominant, particularly at P-rich sites. Dinoflagellates peaked only during calm and high light summer months (May - July) being at a maximum level at S1. Euglenophyceae were less contributed to total phytoplankton abundance and peaked only; as a transition stage; at S1 during Jannuary and March (winter months). Cyanophyceae were numerous along with maximum peak at S2 affected by the southern drains. Excessive nutrient enrichment into the lake alters the existent structure of phytoplankton community. The water quality index indicated a poor water quality status of the lake.This may led to increase the possibility of toxic algal blooms to invade the lake ecosystem and, in turn, affect the lake fish yield.
机译:使用基于物种细胞体积cell1碳关系的标准电子表格,沿Burullus湖(地中海南部)的浮游植物组合和物种演替以碳生物量(mg cm〜(-3))表示。在整个湖中测得的高Chi a水平(最大85-126 mg m〜3)反映了密集的浮游植物种群(高达8.3×10〜3细胞ml〜(-1)和5.5×10〜3 mg cm〜3)在湖西段(S1)的浓度最高。确定了各种浮游植物群落。细胞计数数据揭示了浮游植物混合类群的优势,但是生物量数据表明芽孢杆菌科占主导地位(高达98%)。根据群落结构的变化,Chi a与碳生物量之间具有良好的相关性(r = 0.73,p <0.05),且具有不同的细胞碳/ Chi a比值。细菌性藻科是最主要的,特别是在高营养素(硅酸盐)和良好的天气条件(春季/夏季期间)的中部(S2)和西部(S1)。绿藻科富含Scenedesmus sp。主要占优势,尤其是在富含P的地点。恐龙鞭毛虫仅在夏季的平静和高亮度月份(5月至7月)达到最高,在S1达到最高水平。裸藻科对浮游植物总丰度的贡献较小,仅达到峰值。作为过渡阶段;在1月和3月(冬季)的S1。蓝藻科数量众多,同时受南部排水沟影响的S2处有最大峰。湖泊中过多的养分富集改变了浮游植物群落的现有结构。水质指数表明该湖的水质状况较差,这可能导致有毒藻华入侵湖的生态系统的可能性增加,进而影响湖鱼的产量。

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