Ko Ya-Zhu, Shih Huei-Chuan, Shiao Meng-Shin, Chiang Yu-Chung
Department of Biological Sciences, National Sun Yat-sen University, Kaohsiung 804, Taiwan National Sun Yat-sen University Kaohsiung Taiwan.
Department of Nursing, Meiho University, Pingtung 912, Taiwan Meiho University Pingtung Taiwan.
IMA Fungus. 2025 May 23;16:e147543. doi: 10.3897/imafungus.16.147543. eCollection 2025.
, a genus within the family, comprises significant plant pathogens with a broad host range and global distribution, posing a substantial threat to agricultural production. Our recent study revealed the complexity of this genus by identifying numerous potential cryptic species within the seemingly generalist . To fully understand this species' complexity, higher-resolution genetic markers are required. Therefore, this study employed a comprehensive analysis of multiple transferable microsatellite markers to verify species delimitation and examine the fine-scale genetic structure and diversity of species, particularly . The study identified four distinct genetic groups within , each showing high genetic diversity. The phylogenetic relationships of these groups align with the evolutionary history of their host plants. This finding suggests that host-pathogen co-evolution is shaped by shared ancestral variation, limited gene flow, isolation and natural selection. These insights enhance our understanding of managing economically important plant pathogens and highlight the significance of genetic diversity and host preferences in developing effective control measures.
属是科内的一个属,包含具有广泛寄主范围和全球分布的重要植物病原体,对农业生产构成重大威胁。我们最近的研究通过在看似具有广泛寄主适应性的属中鉴定出众多潜在的隐存物种,揭示了该属的复杂性。为了全面了解该物种的复杂性,需要更高分辨率的遗传标记。因此,本研究采用对多个可转移微卫星标记的综合分析,以验证物种界定,并研究该属物种,特别是物种的精细尺度遗传结构和多样性。该研究在属内鉴定出四个不同的遗传组,每个遗传组都表现出高遗传多样性。这些组的系统发育关系与其寄主植物的进化历史一致。这一发现表明,寄主 - 病原体共同进化是由共享的祖先变异、有限的基因流、隔离和自然选择塑造的。这些见解增强了我们对管理具有经济重要性的植物病原体的理解,并突出了遗传多样性和寄主偏好对制定有效控制措施的重要性。