Pita Sebastián, Rico-Porras José M, Lorite Pedro, Mora Pablo
Evolutionary Genetic Section, Faculty of Science, University of the Republic, Iguá 4225, Montevideo 11400, Uruguay.
Department of Experimental Biology, Genetics Area, University of Jaén, Paraje las Lagunillas s/n, 23071 Jaén, Spain.
Curr Opin Insect Sci. 2025 Apr;68:101334. doi: 10.1016/j.cois.2025.101334. Epub 2025 Jan 20.
Insects, the most diverse group of animals, exhibit remarkable adaptability, playing both crucial and problematic roles in ecosystems. Recent advancements in genomic technologies, such as high-throughput sequencing, have provided unprecedented insights into the genetic foundations of insect adaptation. This review explores key methodologies, including de novo and reference-guided genome assemblies, and highlights cutting-edge technologies like second- and third-generation sequencing and hybrid techniques. The article delves into the genetic mechanisms underlying insect adaptations, focusing on structural variants. Case studies, such as the Anopheles gambiae genome assembly and the genomic research on Drosophila melanogaster, demonstrate the practical applications of these technologies in understanding pesticide resistance, climate adaptation, and other evolutionary traits. This review underscores the transformative role of genomic tools in insect research, with significant implications for pest management, agriculture, and biodiversity conservation.
昆虫是动物中种类最为多样的群体,展现出非凡的适应性,在生态系统中既扮演着关键角色,也带来了一些问题。基因组技术的最新进展,如高通量测序,为昆虫适应的遗传基础提供了前所未有的见解。本综述探讨了关键方法,包括从头基因组组装和参考引导基因组组装,并重点介绍了第二代和第三代测序以及混合技术等前沿技术。文章深入研究了昆虫适应背后的遗传机制,重点关注结构变异。案例研究,如冈比亚按蚊基因组组装和黑腹果蝇的基因组研究,展示了这些技术在理解抗药性、气候适应和其他进化特征方面的实际应用。本综述强调了基因组工具在昆虫研究中的变革性作用,对害虫管理、农业和生物多样性保护具有重要意义。