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◆ Insects2026-09-01

Mitochondrial Genomes Reveal Global Population Structure, Lineage Divergence, and Candidate Diagnostic Markers of Diaphorina citri.

Lijuan Yin, Suming Dai, Dan Wei, Dazhi Li, Yunsheng Wang

原始摘要(英文原文)· Original abstract
The Asian citrus psyllid, Diaphorina citri Kuwayama (Hemiptera: Liviidae), is the primary vector of Candidatus Liberibacter asiaticus, the causal agent of huanglongbing, the most devastating disease of citrus worldwide. Understanding its population structure and developing lineage-specific markers are important for surveillance, quarantine and pest management. Here, 133 complete mitochondrial genomes were analyzed, comprising 77 previously published sequences, 13 newly assembled genomes and 43 metagenome-assembled mitogenomes. Phylogenetic analysis revealed two highly differentiated mitochondrial lineages-an Asian lineage (n = 91, including the Uruguay sample) and an American lineage (n = 42, including the Pakistan sample) (FST = 0.560, p < 0.001)-separated by 32 fixed variants (132 genomes, excluding the reference sequence MF426268.1). Within the Asian lineage, the Yunnan-Guizhou Plateau population showed significant differentiation from lowland populations (FST = 0.130, p < 0.05), reduced nucleotide diversity and moderately supported monophyletic clustering consistent with long-term isolation, while demographic analyses suggested that Southeast China may have acted as a post-colonization expansion center. Candidate lineage-specific markers, including variants in trnG and rrn16, provide molecular resources for population-origin assignment, quarantine surveillance and pest monitoring; these candidates require validation across broader geographic sampling.
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Mitochondrial Genomes Reveal Global Population Structure, Lineage Divergence, and Candidate Diagnostic Markers of Diaphorina citri. — 科研速览 Science Skim