ICAR-Indian Institute of Maize Research, PAU Campus, Ludhiana 141004, India.
School of Agriculture and Environment, The University of Western Australia, Perth, WA 6009, Australia.
Genes (Basel). 2022 Mar 27;13(4):598. doi: 10.3390/genes13040598.
Advances in sequencing technologies and bioinformatics tools have fueled a renewed interest in whole genome sequencing efforts in many organisms. The growing availability of multiple genome sequences has advanced our understanding of the within-species diversity, in the form of a pangenome. Pangenomics has opened new avenues for future research such as allowing dissection of complex molecular mechanisms and increased confidence in genome mapping. To comprehensively capture the genetic diversity for improving plant performance, the pangenome concept is further extended from species to genus level by the inclusion of wild species, constituting a super-pangenome. Characterization of pangenome has implications for both basic and applied research. The concept of pangenome has transformed the way biological questions are addressed. From understanding evolution and adaptation to elucidating host-pathogen interactions, finding novel genes or breeding targets to aid crop improvement to design effective vaccines for human prophylaxis, the increasing availability of the pangenome has revolutionized several aspects of biological research. The future availability of high-resolution pangenomes based on reference-level near-complete genome assemblies would greatly improve our ability to address complex biological problems.
测序技术和生物信息学工具的进步激发了人们对许多生物进行全基因组测序工作的新兴趣。越来越多的基因组序列的出现,以泛基因组的形式,提高了我们对物种内多样性的理解。泛基因组学为未来的研究开辟了新的途径,例如允许剖析复杂的分子机制,并提高基因组图谱绘制的可信度。为了全面捕获遗传多样性以提高植物性能,泛基因组概念通过纳入野生物种进一步从物种扩展到属水平,构成超级泛基因组。泛基因组的特征对于基础研究和应用研究都具有重要意义。泛基因组的概念改变了处理生物学问题的方式。从理解进化和适应到阐明宿主-病原体相互作用,寻找新的基因或育种目标以帮助作物改良,到设计用于人类预防的有效疫苗,泛基因组的可用性增加彻底改变了生物学研究的几个方面。基于参考级近乎完整基因组组装的高分辨率泛基因组的未来可用性将极大地提高我们解决复杂生物学问题的能力。