2016年西南季风和季风后季节印度浦那帕山地区的气象参数和蚊子数量

P. Shil, G. Sapkal, Avinash A. Patil, A. Sudeep
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引用次数: 4

摘要

在过去十年中,病媒传播疾病的死灰复燃引起了人们对气候因素作用的关注。过去十年,印度城市如浦那的扩张导致的快速城市化改变了当地的土地利用和环境。本研究对2001-2005年城市化进程迅速的浦那市帕山地区蚊虫种群组成及季节丰度进行了调查。捕获蚊虫并对其进行鉴定,确定蚊虫种类组成和丰度。分析了2016年6 - 11月气温、湿度、降雨量等气象参数与蚊虫数量的关系。获取原始气象数据并进行数学分析,以确定导出参数,如日温度和所有参数的两周平均值。共捕获伊蚊、按蚊、库蚊、阿蚊4属21种。蚊虫丰度(M)在西南季风期间达到高峰,与最大、最小相对湿度和降雨量呈正相关。季风过后,蚊子数量随相对湿度的增加而减少。有趣的是,蚊子的丰度受昼夜温差(DTR)的调节。在西南季风期间,低DTR对应高蚊子丰度。后季风季节,DTR比西南季风增加了4倍,蚊虫丰度急剧下降。研究区蚊虫种群具有多样性和季节性,受气象参数的影响。DTR似乎是影响蚊虫丰度季节变化的主要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Meteorological Parameters and Mosquito Abundance in Pashan Area of Pune, India during South West Monsoon and Post-Monsoon Seasons in 2016
The resurgence of vector borne diseases over the last decade has raised concerns about the role of climatic factors. Rapid urbanization due to expansion of Indian cities like Pune over the last decade has altered local land-use and environment. The present study was undertaken to investigate the composition and seasonal abundance of mosquito population in Pashan area of urban Pune, which was urbanized rapidly during 2001-2005. Mosquitoes were trapped and identified to determine the species composition and abundance. Association of meteorological parameters like temperature, humidity and rainfall with mosquito abundance was also analyzed from June to November 2016. Raw meteorological data was obtained and analyzed mathematically to determine derived parameters like diurnal temperatures and fortnightly averages of all parameters. A total of 21 species of mosquitoes were observed across four genera viz. Aedes , Anopheles , Culex and Armigerus . Mosquito abundance (M) peaked during South West (SW) Monsoon and correlated positively with maximum and minimum relative humidity and rainfall. In post-monsoon season mosquito abundance decreased alongwith relative humidity. Interestingly, the mosquito abundance is modulated by diurnal temperature range (DTR). During SW monsoon, low DTR corresponded to high mosquito abundance. The trend was reversed in the post-monsoon season as DTR increased by ~4 folds in comparison to SW monsoon and mosquito abundance decreased sharply. Mosquito population in the study area showed diversity and seasonal variability, influenced by meteorological parameters. DTR seemed to be the major factor affecting seasonal variability in mosquito abundance.
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