First detection of kdr L1014F allele in Anopheles ziemanni and Anopheles pharoensis in Cameroon and distribution of the allele in members of the Anopheles gambiae complex.

IF 3 2区 医学 Q1 PARASITOLOGY
Marie Paul Audrey Mayi, Christophe Antonio-Nkondjio, Roland Bamou, Claudia Damiani, Alessia Cappelli, Borel Djiappi-Tchamen, Landre Djamouko-Djonkam, Mahdokht Ilbeigi Khamseh Nejad, Verena Pichler, Irene Ricci, Guido Favia
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引用次数: 0

Abstract

Background: Knockdown resistance (kdr) is one of the primary resistance mechanisms present in anopheline species. Although this mutation is largely spread across the Anopheles gambiae s.l. members, its prevalence in other species is still not well documented.

Methods: The present study investigated the distribution and allelic frequencies of kdr in An. gambiae s.l., An. pharoensis, and An. ziemanni samples collected in 2022 and 2023 in nine sites spread across five ecogeographical settings in Cameroon. Members of the An. gambiae complex were identified molecularly by polymerase chain reaction (PCR). kdr L1014F and L1014S alleles were screened by PCR and confirmed by sequencing.

Results: An. gambiae (49.9%), An. coluzzii (36.5%), and An. arabiensis (13%) were identified, and the frequency of the kdr L1014F was high in both An. gambiae and An. coluzzii in all sites. The kdr L1014F allele was detected for the first time in 8 out of 14 An. ziemanni samples examined and in 5 out of 22 An. pharoensis samples examined. The kdr L1014S allele was scarce and found only in the heterozygote "RS" state in An. arabiensis and An. gambiae in Yangah and Santchou.

Conclusions: The present study sheds light on the rapid expansion of the kdr L1014F allele in malaria vectors in Cameroon and stresses the need for surveillance activities also targeting secondary malaria vectors to improve the control of malaria transmission.

首次在喀麦隆的齐曼尼按蚊(Anopheles ziemanni)和法罗按蚊(Anopheles pharoensis)中发现 kdr L1014F 等位基因,以及该等位基因在冈比亚按蚊复合体成员中的分布。
背景:击倒抗性(kdr)是按蚊物种的主要抗性机制之一。尽管这种突变在冈比亚按蚊成员中广泛传播,但在其他物种中的流行情况仍未得到很好的记录:本研究调查了 2022 年和 2023 年在喀麦隆五个生态地理环境中的九个地点采集的冈比亚疟蚊、法罗疟蚊和齐曼疟蚊样本中 kdr 的分布和等位基因频率。通过聚合酶链式反应(PCR)对冈比亚蚁复合体成员进行分子鉴定,通过PCR筛选kdr L1014F和L1014S等位基因,并通过测序进行确认:结果:发现了冈比亚蚁(49.9%)、科鲁兹蚁(36.5%)和阿拉伯蚁(13%),所有地点的冈比亚蚁和科鲁兹蚁的 kdr L1014F 频率都很高。在检测的 14 份齐曼尼蝇样本中,有 8 份首次检测到 kdr L1014F 等位基因;在检测的 22 份法罗蝇样本中,有 5 份首次检测到 kdr L1014F 等位基因。kdr L1014S等位基因很少见,仅在Yangah和Santchou的阿拉伯疟蚊和冈比亚疟蚊中以杂合子 "RS "状态发现:本研究揭示了 kdr L1014F 等位基因在喀麦隆疟疾病媒中的迅速扩展,并强调有必要针对次要疟疾病媒开展监测活动,以改善对疟疾传播的控制。
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来源期刊
Parasites & Vectors
Parasites & Vectors 医学-寄生虫学
CiteScore
6.30
自引率
9.40%
发文量
433
审稿时长
1.4 months
期刊介绍: Parasites & Vectors is an open access, peer-reviewed online journal dealing with the biology of parasites, parasitic diseases, intermediate hosts, vectors and vector-borne pathogens. Manuscripts published in this journal will be available to all worldwide, with no barriers to access, immediately following acceptance. However, authors retain the copyright of their material and may use it, or distribute it, as they wish. Manuscripts on all aspects of the basic and applied biology of parasites, intermediate hosts, vectors and vector-borne pathogens will be considered. In addition to the traditional and well-established areas of science in these fields, we also aim to provide a vehicle for publication of the rapidly developing resources and technology in parasite, intermediate host and vector genomics and their impacts on biological research. We are able to publish large datasets and extensive results, frequently associated with genomic and post-genomic technologies, which are not readily accommodated in traditional journals. Manuscripts addressing broader issues, for example economics, social sciences and global climate change in relation to parasites, vectors and disease control, are also welcomed.
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