利用模型试验对象对夏季湖泊湖水状态进行评价

R. Avalyan, A. Atoyants, L. Hambaryan, E. Aghajanyan, B. Gabrielyan, R. Aroutiounian
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引用次数: 0

摘要

采用模型试验对象Tradescantia(克隆02)和浮游植物两种试验系统,对亚美尼亚塞万湖(Lake Sevan)夏季深水和表层水的遗传毒性和致裂性水平进行了生物试验。Tradescantia克隆02雄蕊毛突变(trade - shm)和Tradescantia微核(trade - mcn)生物检测技术是两种高效、可靠的空气、水和土壤污染物诱变生物检测系统。在这里,我们报告了在所有调查的探针中,与手机对照水平相比,Tradescantia克隆02雄蕊毛突变(trade - shm)体细胞突变水平显著增加。这些遗传效应的最大表现- PC在吉利水样中增加了5倍。根据微核试验(贸易- mn),在研究其两项主要测试标准:微核四分体的百分比和微核四分体中微核的百分比时,在察帕塔克和阿尔帕的水样中检测到的测试指标的最高频率,其水平比背景高4倍。体细胞突变事件与化学元素Ca、K、Na、Mg、Fe、Mo浓度呈显著正相关(p<0.05;P <0.001)。四分体中MN与Na、Ca、Fe、Mo、Ni、Cd等化学元素浓度呈显著相关(p<0.05)。对塞万湖水域浮游植物的空间分布和夏季观察期优势种丰度、生物量和组成的分析表明,塞万湖全水域蓝藻原核生物(HAB)和绿藻密集生长,导致湖泊富营养化过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ASSESSMENT OF THE STATE OF LAKE SEVAN WATER DURING THE SUMMER USING MODEL TEST-OBJECTS
The biotesting of the level of genotoxicity and clastogenicity of deep and surface waters of Lake Sevan (Armenia) in the summer period was carried out using two test systems: of the model test object Tradescantia (clone 02) and phytoplankton. The Tradescantia clone 02 stamen hair mutations (Trad-SHM) and Tradescantia micronucleus (Trad-MCN) bioassays are two of the efficient and reliable biomonotory test systems for mutagenicity of air, water and soil polutans. Here we report a significant increase in the level of The Tradescantia clone 02 stamen hair mutations (Trad-SHM) somatic mutations in all investigated probes compared to phone control level. The maximum manifestation of these genetic effects – PC was observed in Gilli water samples with five-fold increase. According to the micronucleus test (Trad-MN), when studying its two main test-criteria: the percentage of tetrads with micronuclei and micronuclei in tetrads, the maximum frequency of test indicators was detected in water samples of Tsapatakh and Arpa, where their level was 4 times higher than the background. A significant positive correlation between the somatic mutation events and consentration of chemical elements Ca, K, Na, Mg, Fe, Mo (p<0.05; p<0.001) was revealed. It also showed a significant correlation between MN in tetrads and consentration of chemical elements Na, Ca, Fe, Mo, Ni, Cd (p<0.05). The analysis of the spatial distribution of phytoplankton in the water area of the Lake Sevan, as well as data on the abundance, biomass and composition of the dominant species in the summer observation period showed an intensive development of Cyanoprokaryota (HAB) and green algae in the all water area of the lake, which caused the process of its eutrophication.
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