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Human cell-dependent, directional, time-dependent changes in the mono- and oligonucleotide compositions of SARS-CoV-2 genomes

机译:SARS-COV-2基因组的单核苷酸组合物中的人细胞依赖性,定向,时间依赖性变化

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When a virus that has grown in a nonhuman host starts an epidemic in the human population, human cells may not provide growth conditions ideal for the virus. Therefore, the invasion of severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), which is usually prevalent in the bat population, into the human population is thought to have necessitated changes in the viral genome for efficient growth in the new environment. In the present study, to understand host-dependent changes in coronavirus genomes, we focused on the mono- and oligonucleotide compositions of SARS-CoV-2 genomes and investigated how these compositions changed time-dependently in the human cellular environment. We also compared the oligonucleotide compositions of SARS-CoV-2 and other coronaviruses prevalent in humans or bats to investigate the causes of changes in the host environment. Time-series analyses of changes in the nucleotide compositions of SARS-CoV-2 genomes revealed a group of mono- and oligonucleotides whose compositions changed in a common direction for all clades, even though viruses belonging to different clades should evolve independently. Interestingly, the compositions of these oligonucleotides changed towards those of coronaviruses that have been prevalent in humans for a long period and away from those of bat coronaviruses. Clade-independent, time-dependent changes are thought to have biological significance and should relate to viral adaptation to a new host environment, providing important clues for understanding viral host adaptation mechanisms.
机译:当在非人宿主生长的病毒开始在人口中开始流行语时,人类细胞可能无法为病毒提供理想的生长条件。因此,侵袭在蝙蝠种群中通常普遍存在的严重急性呼吸综合征Coronavirus-2(SARS-COV-2)的侵袭,进入人群中的病毒基因组在新环境中有效增长的变化。在本研究中,为了了解冠状病毒基因组的宿主依赖性变化,我们专注于SARS-COV-2基因组的单核苷酸组合物,并研究了这些组合物在人体细胞环境中依赖于时间变化。我们还将SARS-COV-2的寡核苷酸组合物与人类或蝙蝠普遍存在的SAR-COV-2和其他冠状病毒的组合物进行了探讨了宿主环境变化的原因。 SARS-COV-2基因组的核苷酸组合物的变化的时间序列分析显示了一组单核苷酸,其组合物在所有植物中的共同方向变为共同的方向,即使属于不同的片状的病毒应该独立地发展。有趣的是,这些寡核苷酸的组合物对那些在人类中普遍存在的冠状病毒的组合物长期,远离蝙蝠冠状病毒的冠状虫病毒。思想独立于不同的,时间依赖的变化具有生物学意义,并且应与对新的宿主环境有关的病毒自适应,为理解病毒宿主适应机制提供重要的线索。

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