The Genomics Revolution Drives a New Era in Entomology.

IF 15 1区 农林科学 Q1 ENTOMOLOGY
Fei Li, Xianhui Wang, Xin Zhou
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引用次数: 0

Abstract

Thanks to the fast development of sequencing techniques and bioinformatics tools, sequencing the genome of an insect species for specific research purposes has become an increasingly popular practice. Insect genomes not only provide sets of gene sequences but also represent a change in focus from reductionism to systemic biology in the field of entomology. Using insect genomes, researchers are able to identify and study the functions of all members of a gene family, pathway, or gene network associated with a trait of interest. Comparative genomics studies provide new insights into insect evolution, addressing long-lasting controversies in taxonomy. It is also now feasible to uncover the genetic basis of important traits by identifying variants using genome resequencing data of individual insects, followed by genome-wide association analysis. Here, we review the current progress in insect genome sequencing projects and the application of insect genomes in uncovering the phylogenetic relationships between insects and unraveling the mechanisms of important life-history traits. We also summarize the challenges in genome data sharing and possible solutions. Finally, we provide guidance for fully and deeply mining insect genome data.

基因组学革命推动昆虫学的新时代。
由于测序技术和生物信息学工具的快速发展,为特定研究目的对昆虫物种进行基因组测序已经成为一种越来越流行的做法。昆虫基因组不仅提供了一系列的基因序列,而且代表了昆虫学领域从还原论向系统生物学的转变。利用昆虫基因组,研究人员能够识别和研究与感兴趣的性状相关的基因家族、途径或基因网络的所有成员的功能。比较基因组学研究为昆虫进化提供了新的见解,解决了分类学上长期存在的争议。利用单个昆虫的基因组重测序数据识别变异,然后进行全基因组关联分析,从而揭示重要性状的遗传基础,现在也是可行的。本文综述了昆虫基因组测序项目的最新进展,以及昆虫基因组在揭示昆虫之间的系统发育关系和揭示重要生活史性状机制方面的应用。我们还总结了基因组数据共享面临的挑战和可能的解决方案。最后,为全面深入挖掘昆虫基因组数据提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Annual review of entomology
Annual review of entomology 生物-昆虫学
CiteScore
45.70
自引率
0.80%
发文量
46
期刊介绍: The Annual Review of Entomology, a publication dating back to 1956, offers comprehensive reviews of significant developments in the field of entomology.The scope of coverage spans various areas, including:biochemistry and physiology, morphology and development, behavior and neuroscience, ecology, agricultural entomology and pest management, biological control, forest entomology, acarines and other arthropods, medical and veterinary entomology, pathology, vectors of plant disease, genetics, genomics, and systematics, evolution, and biogeography.
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