Wu Yifan, Peng Yousong
Bioinformatics Center, College of Biology, Hunan Provincial Key Laboratory of Medical Virology, Hunan University, Changsha 410082, China.
Bioinformatics Center, College of Biology, Hunan Provincial Key Laboratory of Medical Virology, Hunan University, Changsha 410082, China.
Virol Sin. 2024 Dec;39(6):845-850. doi: 10.1016/j.virs.2024.04.008. Epub 2024 Apr 30.
In recent years, substantial advancements have been achieved in understanding the diversity of the human virome and its intricate roles in human health and diseases. Despite this progress, the field of human virome research remains nascent, primarily hindered by the lack of effective methods, particularly in the domain of computational tools. This perspective systematically outlines ten computational challenges spanning various types of virome studies. These challenges arise due to the vast diversity of viromes, the absence of a universal marker gene in viral genomes, the low abundance of virus populations, the remote or minimal homology of viral proteins to known proteins, and the highly dynamic and heterogeneous nature of viromes. For each computational challenge, we discuss the underlying reasons, current research progress, and potential solutions. The resolution of these challenges necessitates ongoing collaboration among computational scientists, virologists, and multidisciplinary experts. In essence, this perspective serves as a comprehensive guide for directing computational efforts in human virome studies.
近年来,在了解人类病毒组的多样性及其在人类健康和疾病中的复杂作用方面取得了重大进展。尽管取得了这一进展,但人类病毒组研究领域仍处于起步阶段,主要受到缺乏有效方法的阻碍,特别是在计算工具领域。本文系统地概述了跨越各类病毒组研究的十个计算挑战。这些挑战的出现是由于病毒组的巨大多样性、病毒基因组中缺乏通用标记基因、病毒群体丰度低、病毒蛋白与已知蛋白的同源性远或低,以及病毒组高度动态和异质性的性质。对于每个计算挑战,我们讨论了其潜在原因、当前研究进展和潜在解决方案。解决这些挑战需要计算科学家、病毒学家和多学科专家之间持续的合作。从本质上讲,本文为指导人类病毒组研究中的计算工作提供了全面指南。