Diversity and abundance of aquatic insects of the natural ponds at the Jahangirnagar University Campus, Dhaka, Bangladesh

Thamina Siddiky, Md. Zahurul Islam, Shahjadi Ratna, MA Alim, B. Mandal
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Abstract

The investigation into the diversity and abundance of aquatic insects encompassed five ponds within Jahangirnagar University, Dhaka, Bangladesh, spanning from in the rainy month June 2023 to January 2024. A comprehensive tally revealed 4134 insects across 18 genera, distributed among 15 families and 5 orders. Predominant orders included Hemiptera (74.41%), Coleoptera (9.58%), and Odonata (8.08%), with non-Insect Orders represented by Acarina (3.97%) and Araneae (3.97%). Peak insect abundance occurred in July 2023, contrasting with the lowest count observed in January 2024. Among the species, Back swimmers ( Notonecta ) exhibited the highest relative abundance at 58.11%, while Riffle ( Velia sp .) displayed the lowest at 0.83%. Correlation analysis unveiled positive associations in June between insect population and environmental factors such as temperature (31.5℃), water pH (7.51), and dissolved oxygen levels (17.01mg/L). Notably, Hemipteran (34.33%) and Coleopteran (5.64%) insects dominated, indicative of lower pollutant levels within the surveyed pond areas. The study underscores the dynamic nature of aquatic insect populations, influenced by seasonal fluctuations and temperature variations. These findings offer insights into the intricate ecological dynamics within aquatic ecosystems, emphasizing the sensitivity of insect communities to environmental changes.
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孟加拉国达卡贾汉吉尔纳加尔大学校园天然池塘水生昆虫的多样性和丰度
对水生昆虫多样性和数量的调查涵盖孟加拉国达卡贾汉吉尔纳加尔大学内的五个池塘,时间跨度为 2023 年 6 月至 2024 年 1 月的雨季。经全面统计,共发现 18 属 4134 种昆虫,分布在 15 科 5 目中。主要昆虫目包括半翅目(74.41%)、鞘翅目(9.58%)和蜻蜓目(8.08%),非昆虫目包括蛛形纲(3.97%)和鹤形目(3.97%)。昆虫数量最高峰出现在 2023 年 7 月,而最低点出现在 2024 年 1 月。在昆虫种类中,背游虫(Notonecta)的相对丰度最高,为 58.11%,而裂头虫(Velia sp.)的相对丰度最低,为 0.83%。相关分析表明,6 月份昆虫数量与温度(31.5℃)、水体 pH 值(7.51)和溶解氧水平(17.01 毫克/升)等环境因素呈正相关。值得注意的是,半翅目昆虫(34.33%)和鞘翅目昆虫(5.64%)占主导地位,表明调查池塘区域内的污染物水平较低。这项研究强调了水生昆虫种群受季节波动和温度变化影响的动态性质。这些发现深入揭示了水生生态系统中错综复杂的生态动态,强调了昆虫群落对环境变化的敏感性。
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