Insect genomes: progress and challenges
作者:F. Li, Xianxin Zhao, Minyong Li, Kang He, Cong Huang, Yuenan Zhou, Zhen Li, James R. Walters · 发表于:Insect Molecular Biology · 年份:2019 · DOI:10.1111/imb.12599 · 被引用次数:205 · 研究领域:Insect-Plant Interactions and Control、Insect symbiosis and bacterial influences、Insect and Arachnid Ecology and Behavior
In the wake of constant improvements in sequencing technologies, numerous insect genomes have been sequenced. Currently, 1219 insect genome-sequencing projects have been registered with the National Center for Biotechnology Information, including 401 that have genome assemblies and 155 with an official gene set of annotated protein-coding genes. Comparative genomics analysis showed that the expansion or contraction of gene families was associated with well-studied physiological traits such as immune system, metabolic detoxification, parasitism and polyphagy in insects. Here, we summarize the progress of insect genome sequencing, with an emphasis on how this impacts research on pest control. We begin with a brief introduction to the basic concepts of genome assembly, annotation and metrics for evaluating the quality of draft assemblies. We then provide an overview of genome information for numerous insect species, highlighting examples from prominent model organisms, agricultural pests and disease vectors. We also introduce the major insect genome databases. The increasing availability of insect genomic resources is beneficial for developing alternative pest control methods. However, many opportunities remain for developing data-mining tools that make maximal use of the available insect genome resources. Although rapid progress has been achieved, many challenges remain in the field of insect genomics.