Physical and chemical characteristics of Aedes larval habitats in Metema District, Northwest, Ethiopia.

IF 2.3 Q2 ECOLOGY
Wondmeneh Jemberie, Sisay Dugassa, Abebe Animut
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Abstract

Background: Aedes-transmitted viral diseases such as dengue, chikungunya, yellow fever, and Zika are increasing public health and economic challenge globally. In the absence of treatments and vaccines for arboviral diseases, surveillance and control of Aedes larvae remains a top priority. However, Aedes larvae control strategies relay to a large extent on the knowledge of the distribution and characteristics of their habitats. The study assessed habitats, indices, habitat physico-chemical characteristics and composition of Aedes larvae and pupae in three towns.

Methods: Aedes larvae and pupae were collected in Metema-Yohannes, Kokit, and Gendawuha towns of northwestern Ethiopia, from January 2022 to December 2023 following standard procedures. Aedes larvae/pupae were surveyed along natural and artificial habitats in relation to residential houses, physico-chemical characteristics of habitats characterized, reared to adults and later identified to species based on their morphological features. Data were entered and analyzed using IBM SPSS version 20.0.

Results: Aedes larvae and pupae were abundant in Metema-Yohannes, Kokit and Gendawuha towns. Breteau, house, and container indices exceeded the World Health Organization's risk levels for arboviral diseases. Density of Aedes larvae/pupae was positively correlated with habitat water temperature, conductivity, phosphate, ammonia, total hardness and sulphate both in the artificial and natural habitats (P < 0.001). Adult Ae. aegypti were the most abundant (56.77%; 5106/8993) that emerged from larvae/pupae followed by Ae. vittatus (37.25%; 3350/8993), Ae. communis (2.39%; 215/8993), Ae. opok (0.66%; 60) and Ae. albopictus (0.26; 24). The number of Ae. aegypti emerged from algal habitats was greater than the number from the algae free (p < 0.001) and the number from tadpole free habitats was greater than the number from tadpole infested (p < 0.001). Adults of Ae. vittatus followed a similar trend. The mean number of Ae. aegypti emerged from larvae/pupae of habitats closer to human habitations, not exposed to sunlight, free of emergent vegetation and tyre substrates were significantly (p < 0.001) higher than from habitats of corresponding attributes.

Conclusion: Artificial water-holding containers maintained higher density of Aedes larvae/pupae than natural water-holding containers in Metema-Yohannes, Kokit and Gendawuha towns. Ae. aegypti, Ae. vittatus, Ae. communis, Ae. albopictus and Ae. opok occurred in the towns. Ae. aegypti and Ae. vittatus larvae/pupae were abundant in discarded tyres, Ae. communis in discarded metal containers, and Ae. albopictus and Ae. opok in tree holes during the wet seasons in Metema Woreda, Northwestern Ethiopia. This study indicates the importance of improving Aedes larvae/pupae surveillance and control measures in Metema Woreda, Northwest Ethiopia.

埃塞俄比亚西北部Metema地区伊蚊幼虫生境理化特征
背景:登革热、基孔肯雅热、黄热病和寨卡等伊蚊传播的病毒性疾病正在全球范围内增加公共卫生和经济挑战。在缺乏针对虫媒病毒性疾病的治疗和疫苗的情况下,监测和控制伊蚊幼虫仍然是重中之重。然而,伊蚊幼虫的控制策略在很大程度上依赖于对其栖息地分布和特征的了解。本研究对三镇伊蚊的生境、指数、生境理化特征及幼虫和蛹的组成进行了评价。方法:于2022年1月至2023年12月在埃塞俄比亚西北部的Metema-Yohannes、Kokit和Gendawuha镇按标准程序采集伊蚊幼虫和蛹。在自然生境和人工生境中调查伊蚊幼虫/蛹与民居的关系,研究生境的理化特征,将其饲养至成虫,并根据形态特征对其进行种类鉴定。使用IBM SPSS 20.0版本进行数据录入和分析。结果:Metema-Yohannes、Kokit和Gendawuha镇伊蚊幼虫和蛹丰富。布雷图、房屋和容器指数超过了世界卫生组织的虫媒病毒性疾病风险水平。在人工生境和自然生境中,伊蚊幼虫/蛹密度与生境水温、电导率、磷酸盐、氨氮、总硬度和硫酸盐均呈显著正相关(P < 0.001)。成人Ae。埃及伊蚊数量最多(56.77%);5106/8993),其次为伊蚊;vittatus (37.25%;3350/8993), Ae。普通的(2.39%;215/8993), Ae。opok (0.66%;60)和Ae。蚊(0.26;24)。Ae的数量。有藻生境的埃及伊蚊数量大于无藻生境的埃及伊蚊数量(p < 0.001),无蝌蚪生境的埃及伊蚊数量大于有蝌蚪生境的埃及伊蚊数量(p < 0.001)。伊蚊成虫Vittatus遵循了类似的趋势。Ae的平均数量。埃及伊蚊在离人类栖息地较近、未暴露于阳光下、无突发性植被和衬底的生境中羽化(p < 0.001)显著高于在具有相应属性的生境中羽化(p < 0.001)。结论:在Metema-Yohannes、Kokit和Gendawuha镇,人工蓄水容器对伊蚊幼虫/蛹的密度高于天然蓄水容器。Ae。蚊,Ae。vittatus, Ae。普通的,Ae。白纹伊蚊和伊蚊。波克发生在城镇。Ae。埃及伊蚊和伊蚊。废轮胎中有大量vititatus幼虫/蛹;在废弃的金属容器中放置昆虫;白纹伊蚊和伊蚊。在埃塞俄比亚西北部的Metema worreda,潮湿的季节里,它们在树洞里挖洞。研究结果表明,加强对埃塞俄比亚西北地区伊蚊幼虫/蛹的监测和控制措施具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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