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March 21, 2026Insects3 citationsOpen Access

Mitogenomic Insight into the Population Genetic Diversity and Phylogeography of Soybean Stink Bug (Riptortus pedestris) in China

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YZYuxin ZhouSSShusen ShiLCL. L. Chen

Key Points

  • This research explores the genetic structure and evolutionary history of Riptortus pedestris populations in China.
  • Analyzed three mitochondrial genes (COI, COII, Cytb) from 35 populations.
  • Conducted genetic diversity analysis and phylogenetic reconstruction using multiple methods.
  • Estimated genetic differentiation using Fst/Nm and conducted AMOVA tests.
  • Found high genetic diversity across populations (Hd > 0.81, π > 0.011).
  • Identified two main clades with significant geographic differentiation.
  • Observed a correlation between genetic and geographic distances, indicating strong population structure.

Abstract

Riptortus pedestris (Hemiptera, Alydidae) is widely distributed across East Asia, where significant genetic differentiation may occur among geographic populations. To understand the genetic structure, historical dynamics, and formation of geographic distribution patterns in China, we conducted a phylogeographic analysis using three mitochondrial genes (COI, COII, Cytb) from 35 populations. After PCR amplification, we performed genetic diversity analysis, Fst/Nm estimation, phylogenetic reconstruction (ML, BI, NJ), haplotype network, AMOVA, neutrality tests, mismatch distribution, and molecular dating. Results revealed high genetic diversity (Hd > 0.81, π > 0.011), an AT-rich base composition, and faster evolution at the first codon position. Genetic and geographic distances were significantly correlated, with high Fst values indicating strong differentiation, especially between southwestern/southern and other populations. Two main clades were identified: Clade 1 (mainly southern and southwestern China) and Clade 2 (central, northern, northwestern, and northeastern China). A star-like haplotype network and neutrality tests suggested a rapid expansion around 0.019–0.022 Ma (Last Glacial Maximum), and molecular dating estimated the main split at ~0.029 Ma. AMOVA and Gst/Nst confirmed significant phylogeographic structure with most variation among populations. This study provides initial evidence for the genetic differentiation and evolutionary history of R. pedestris in China, demonstrating that its population structure was shaped by climatic changes and geographical isolation, providing key insights into its adaptive evolution and dispersal.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/69be38446e48c4981c678856https://doi.org/10.3390/insects17030337
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