Revised Hyrcanus group phylogeny based on ITS2 resolution

IF 1.1 3区 农林科学 Q3 ENTOMOLOGY Journal of Asia-pacific Entomology Pub Date : 2024-12-01 DOI:10.1016/j.aspen.2024.102346
Ui Wook Hwang , Ashraf Akintayo Akintola
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Abstract

This study presents a meticulous reassessment of the phylogenetic relationships within the Hyrcanus Group of Anopheles (Anopheles) mosquitoes, a group of substantial medical and epidemiological importance. These vectors are responsible for the transmission of various diseases, including malaria, posing a significant public health challenge in many regions. This research employs advanced molecular techniques, specifically focusing on the Internal Transcribed Spacer 2 (ITS2) region, to enhance taxonomic resolution within this complex group of mosquitoes. The ITS2 region has proven to be a valuable molecular marker for differentiating closely related species and refining our understanding of their evolutionary history. A total of 857 ITS2 sequences of Hyrcanus group members were retrieved from the GenBank after using specific search keywords. 83 out of the initial retrieved sequenced were then finally selected and utilized in the analysis based on sequence quality and length. Sequences retrieved represent 22 out of the 25 members of the Hyrcanus group. This study clarified the confusion surrounding the taxonomic placement and synonymy of each member of the Hyrcanus group using the latest available molecular ITS2 sequence data through Neighbor Joining (NJ), Maximum Likelihood (ML), and Bayesian Inference (BI) phylogenetic tree analysis. The work also revised the taxonomic groupings based on morphological characters observed within the group and evaluated the limitations within the classification based on morphology and the challenges using molecular ITS2 data. A refined understanding of the Hyrcanus group phylogeny provides a foundation for more precise and tailored approaches to combat malaria and other vector-borne diseases in South Korea.

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基于ITS2分辨率的hycanus类群系统发育修正
本研究提出了一个细致的重新评估在按蚊(按蚊)的Hyrcanus组的系统发育关系,一组实质性的医学和流行病学的重要性。这些病媒造成包括疟疾在内的各种疾病的传播,对许多区域的公共卫生构成重大挑战。本研究采用先进的分子技术,特别关注内部转录间隔器2 (ITS2)区域,以提高对这一复杂蚊子群体的分类分辨率。ITS2区域已被证明是区分近亲物种和完善我们对其进化史的理解的一个有价值的分子标记。在GenBank中检索到hycanus类群成员的ITS2序列共857条。从最初检索到的序列中,最终根据序列质量和长度选择83个序列用于分析。检索到的序列代表了Hyrcanus群25个成员中的22个。本研究利用最新的分子ITS2序列数据,通过邻居连接(NJ)、最大似然(ML)和贝叶斯推理(BI)系统发育树分析,澄清了围绕Hyrcanus类群各成员的分类位置和同义词的混淆。本文还根据观察到的形态学特征对其分类进行了修正,并评估了基于形态学的分类的局限性和利用分子ITS2数据所面临的挑战。对hycanus类群系统发育的精确理解为在韩国更精确和有针对性地防治疟疾和其他病媒传播疾病提供了基础。
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来源期刊
Journal of Asia-pacific Entomology
Journal of Asia-pacific Entomology Agricultural and Biological Sciences-Insect Science
CiteScore
2.70
自引率
6.70%
发文量
152
审稿时长
69 days
期刊介绍: The journal publishes original research papers, review articles and short communications in the basic and applied area concerning insects, mites or other arthropods and nematodes of economic importance in agriculture, forestry, industry, human and animal health, and natural resource and environment management, and is the official journal of the Korean Society of Applied Entomology and the Taiwan Entomological Society.
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