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病毒学的未来是合成的。

The Future of Virology is Synthetic.

作者信息

White Richard Allen

机构信息

Department of Bioinformatics and Genomics, The University of North Carolina at Charlottegrid.266859.6, Charlotte, North Carolina, USA.

Department of Bioinformatics and Genomics, The University of North Carolina at Charlottegrid.266859.6, Kannapolis, North Carolina, USA.

出版信息

mSystems. 2021 Aug 31;6(4):e0077021. doi: 10.1128/mSystems.00770-21.

Abstract

The virosphere (i.e., global virome) represents a vast library of unknown genes on the planet. Synthetic biology through engineering principles could be the key to unlocking this massive global gene repository. Synthetic viruses may also be used as tools to understand "the rules of life" in diverse microbial ecosystems. Such insights may be crucial for understanding the assembly, diversity, structure, and scale of virus-mediated function. Viruses directly affect resilience, stability, and microbial community selection via death resistance cycles. Interpreting and clarifying these effects is essential for predicting the system's ecology, evolution, and ecosystem stability in an increasingly unstable global climate. A "silent looming pandemic" due to multidrug-resistant microbes will directly impact the global economy, and synthetic virology could provide a future strategy of treatment using targeted viral therapy. This commentary will discuss current techniques for manipulating viruses synthetically, contributing to improved human health and sustainable agriculture.

摘要

病毒圈(即全球病毒组)代表了地球上一个庞大的未知基因库。通过工程原理的合成生物学可能是解锁这个巨大的全球基因库的关键。合成病毒也可以用作工具来理解不同微生物生态系统中的“生命规则”。这些见解对于理解病毒介导功能的组装、多样性、结构和规模可能至关重要。病毒通过抗死亡循环直接影响恢复力、稳定性和微生物群落选择。解释和阐明这些影响对于预测在日益不稳定的全球气候中系统的生态、进化和生态系统稳定性至关重要。由于多重耐药微生物导致的“一场悄然而至的大流行”将直接影响全球经济,而合成病毒学可以提供一种使用靶向病毒疗法的未来治疗策略。本评论将讨论当前合成操纵病毒的技术,以促进人类健康改善和可持续农业发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12e4/8519122/139dd9465808/msystems.00770-21-f001.jpg

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