缅甸曼德勒地区顺耶湖浮游植物属初级核对表

Phyo Sandi, Thida Khaing, Kay Thi Nyunt, Nwe Nwe Soe Hlaing, A. Khaing, Nandar Aye Winn
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引用次数: 0

摘要

浮游植物是食物网的基础,也是水生生态系统中最重要的生产者。它们可以进行光合作用,将光能转化为有机物能。它们的分泌物可作为水质和污染的生物指标。本研究调查了曼德勒地区顺耶湖淡水水体中浮游植物的组成。研究时间为 2020 年 1 月至 2020 年 12 月,为期一年。研究结果显示,在 47 个藻类属中,记录了叶绿藻类(14 属)、芽孢藻类(11 属)、骏马藻类(9 属)、颧藻类(2 属)、优藻类(1 属)和共生藻类(1 属)。在这项研究中,在总共 37 个属中,叶绿藻纲(45%)是最大的一个类群,其次是叶绿藻纲(28%)、茎叶绿藻纲(19%)、颧叶绿藻纲(4%)、优藻纲(2%)和共生藻纲(2%)。本核对表研究将为进一步研究该湖浮游植物提供有用的基础数据。研究目的:本研究旨在记录和提供浮游植物存在的信息,以及对进一步研究和湖泊生态系统有用的数据。研究设计:在整个研究期间,每月清晨采集一次水样。研究地点和时间:这些样本于 2020 年 1 月至 2020 年 12 月期间从天然淡水桑耶湖采集,为期一年。研究方法:浮游植物样本通过 25 微米网眼的浮游生物网过滤采集,并用卢戈氏溶液保存在冰箱中,以备进一步研究。使用显微镜(OPTIKA)对样本进行鉴定和拍照。浮游植物的鉴定结果与浮游植物鉴定密钥和分类数据库网站进行了核对。结果:在本研究中,共记录了属于叶绿藻科、芽孢藻科、藻蓝藻科、藻红藻科、藻蓝藻科、共生藻科这六类浮游植物的 47 个属。结论本次研究是首次对顺冶湖浮游植物名录进行研究,应继续研究以更新浮游植物种类和季节丰度的名录数据,这是湖泊生态系统的重要指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Primary Checklist of Phytoplankton Genera in Sunye Lake, Mandalay Region, Myanmar
Phytoplankton are the foundation of food webs and the most important producer in aquatic ecosystems. They can photosynthesize and convert light energy into organic energy. They are a secrete ingredients used as a bioindicator of water quality and pollution. This study investigated composition of phytoplankton in freshwater body of Sunye lake, Mandalay region. The study was conducted one year from January 2020 to December 2020. According to the study, out of 47 total algal genera; Chlorophyceae (14 genera), Baciliophyceae (11 genera); Cyonophyceae (nine genera); Zygnematophyceae (two genera), Euglenophyceae (one genera) and Conjugatophyceae (one genera) were recorded. In this study, among total genera of 37, the class of Chlorophyceae (45%) is the largest group followed by (28%), Bacillariophyceae Cyanophyceae (19%), Zygnematophyceae (4%), Euglenophyceae (2%) and Conjugatophyceae (2%). This present check list study will be useful base line data for further study of phytoplankton in the lake. Aims: The aim of study is to record and give the information’s of phytoplankton existence and useful data for further study and lake ecosystem. Study Design: The water sample was collected monthly early morning once a week throughout the study period. Place and Duration of Study: These sample were collected from natural freshwater Sunye lake during January 2020 to December 2020 for one year period. Methodology: Phytoplankton samples were taken by filtering through 25 µm mesh plankton net and preserved with a Lugol‘s solution and kept in refrigerator for further study. The sample was identified and took photograph by using the microscope (OPTIKA). The results of phytoplanktons were checked with phytoplankton identification key, taxonomic database site. Results: In the present study, 47 genera belong to the six different classes of phytoplanktons were recorded Chlorophyceae, Bacillariophyceae, Cyanophyceae, Zygnematophyceae, Euglenophyceae, Conjugatophyceae. Conclusion: The current study is first time to study the checklist of phytoplankton in Sunye Lake and should be continuously study to update the checklist data of phytoplankton genera and seasonally abundance which is important indicators of lake ecosystem.
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