生物多样性

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DNA条形码揭示夏摇蚊族的隐存种多样性及生态位分化

张燕1, 徐海峰1, 张智超1, 王辉1, 莫李东2, 林晓龙1*   

  1. 1. 上海海洋大学水产与生命学院,海洋动物系统分类与进化上海高校重点实验室,上海 201306 2. 南开大学生命科学学院植物生物学与生态学系,天津 300071
  • 收稿日期:2026-04-25 修回日期:2026-06-11
  • 通讯作者: 林晓龙

DNA barcoding reveals cryptic species diversity and ecological niche differentiation in the tribe Xiaomyiini

Yan Zhang1, Haifeng Xu1, Zhichao Zhang1, Hui Wang1, Lidong Mo2, Xiaolong Lin1*   

  1. 1.Shanghai Universities Key Laboratory of Marine Animal Taxonomy and Evolution, College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306, China 

    2.Department of Plant Biology and Ecology, College of Life Sciences, Nankai University, Tianjin 300071, China

  • Received:2026-04-25 Revised:2026-06-11
  • Contact: Xiaolong Lin

摘要: 摇蚊科昆虫是淡水生态系统中重要的生物指示类群,但由于其形态特征高度相似,传统分类方法在物种识别中存在明显局限。夏摇蚊族Xiaomyiini是东洋区特有类群,作为摇蚊亚科中研究基础薄弱的类群,其物种多样性与分布格局仍缺乏系统认识。本研究基于中国多个地区采集的样本,共获得100条线粒体COI条形码序列,结合邻接法(Neighbor-Joining, NJ)系统发育分析与自动条形码间隙识别法(Automatic Barcode Gap Discovery, ABGD)开展分子物种界定,并结合历年气候数据与地形变量对夏摇蚊属与商摇蚊属进行生态位分析及环境驱动机制探讨。结果表明,COI条形码在夏摇蚊族中具有较高的物种分辨能力。ABGD稳定识别出10个分子操作分类单元,明显高于目前已知形态物种数,表明该类群中存在大量隐存分类单元。生态位分析显示,夏摇蚊族整体表现出显著的生态位保守性,但夏摇蚊属与商摇蚊属在空间环境利用上存在一定差异。随机森林分析进一步表明,最湿季度均温、海拔及温度季节性等变量是驱动两属生态分化的关键环境因子。本研究为夏摇蚊族的物种界定与分类研究提供了新的分子证据,并为完善摇蚊DNA条形码参考数据库提供了基础数据。

关键词: COI, 夏摇蚊属, 商摇蚊属, 物种界定

Abstract

Aims: Chironomidae are widely recognized as important bioindicators in freshwater ecosystems. However, their highly conservative morphology limits the effectiveness of traditional taxonomic approaches for reliable species identification. The Xiaomyiini, an oriental lineage within Chironominae, remains poorly understood in terms of species diversity and distribution patterns. 

Methods: A total of 100 mitochondrial cytochrome c oxidase subunit I (COI) barcode sequences were generated from specimens collected across multiple regions in China. Molecular species delimitation was conducted using Neighbor-Joining (NJ) phylogenetic analysis and the Automatic Barcode Gap Discovery (ABGD) method. Ecological niche analyses were performed based on climatic and topographic variables, and a random forest model was employed to identify key environmental drivers of intergeneric differentiation. 

Results: The COI barcode exhibited high discriminatory power within Xiaomyiini. The ABGD analysis consistently recovered 10 molecular operational taxonomic units, exceeding the number of currently recognized morphological species and indicating substantial cryptic diversity. Niche analyses revealed overall niche conservatism within Xiaomyiini, while Xiaomyia and Shangomyia differed in environmental space utilization. Random forest results highlighted temperature-related variables, particularly the mean temperature of the wettest quarter, along with elevation, as primary drivers of ecological differentiation. 

Conclusion: This study provides new molecular evidence for species delimitation within Xiaomyiini and highlights the presence of considerable cryptic diversity. The findings contribute to a better understanding of ecological differentiation within the tribe and offer baseline data for improving the DNA barcode reference database of Chironomidae.

Key words: COI, Xiaomyia, Shangomyia, species delimitation