Endosymbiont‐mediated cryptic speciation in insects: Mechanisms, evidence, and framework

Abstract Endosymbionts are prevalent in insects, establishing close associations with their hosts that range from mutualism to parasitism. Endosymbionts provide hosts with essential nutrients, enhance immunity, and regulate reproduction, thereby profoundly influencing host fitness and adaptive evolution. Such impacts can drive genetic divergence and even speciation over time. Consequently, endosymbionts are critical to understanding the formation of cryptic insect species, which are morphologically indistinguishable yet genetically distinct. Elucidating the mechanisms underlying cryptic speciation remains a central challenge in evolutionary biology, with endosymbionts increasingly recognized as key drivers in this process. In this review, we summarize the fundamental characteristics of insect endosymbionts and their multifaceted roles in host biology. We conceptualize endosymbionts as a critical evolutionary force, focusing on the mechanisms by which they drive cryptic speciation, including ecological adaptation divergence, genetic integration, and reproductive manipulation. By integrating current evidence and elucidating underlying mechanisms, this review presents a framework for understanding endosymbiont‐mediated cryptic speciation in insects. Research in this field holds great promise for revealing fundamental evolutionary processes and informing novel strategies for biodiversity conservation and pest management.

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Publication Details

Journal
Journal of Systematics and Evolution
Published
2026-09-15
DOI
https://doi.org/10.1111/jse.70111
Primary Topic
Insect symbiosis and bacterial influences
Type
article
Field-Weighted Citation Impact
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article

Endosymbiont‐mediated cryptic speciation in insects: Mechanisms, evidence, and framework

Hong‐Xia Hou, Xinxin Li, Dawei Huang, GUOHAO ZU et al.
Journal of Systematics and Evolution
Insect symbiosis and bacterial influences
article

Endosymbiont‐mediated cryptic speciation in insects: Mechanisms, evidence, and framework

Hong‐Xia Hou, Xinxin Li, Dawei Huang, GUOHAO ZU, Zhipeng Chen, Yangyi Jia, Yuao Wang
article en

Abstract

Abstract Endosymbionts are prevalent in insects, establishing close associations with their hosts that range from mutualism to parasitism. Endosymbionts provide hosts with essential nutrients, enhance immunity, and regulate reproduction, thereby profoundly influencing host fitness and adaptive evolution. Such impacts can drive genetic divergence and even speciation over time. Consequently, endosymbionts are critical to understanding the formation of cryptic insect species, which are morphologically indistinguishable yet genetically distinct. Elucidating the mechanisms underlying cryptic speciation remains a central challenge in evolutionary biology, with endosymbionts increasingly recognized as key drivers in this process. In this review, we summarize the fundamental characteristics of insect endosymbionts and their multifaceted roles in host biology. We conceptualize endosymbionts as a critical evolutionary force, focusing on the mechanisms by which they drive cryptic speciation, including ecological adaptation divergence, genetic integration, and reproductive manipulation. By integrating current evidence and elucidating underlying mechanisms, this review presents a framework for understanding endosymbiont‐mediated cryptic speciation in insects. Research in this field holds great promise for revealing fundamental evolutionary processes and informing novel strategies for biodiversity conservation and pest management.

Journal of Systematics and Evolution
Tianjin Agricultural University (CN), Nankai University (CN), Institute of Zoology (CN), Wuhan University of Science and Technology (CN), Xingtai University (CN)
Life in Land
Openalex Percentile: Top 11%
Insect symbiosis and bacterial influences
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