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Global Evidence of Temperature Acclimation of COVID‐19 D614G Linage

机译:Covid-19 D614G谱系温度适应的全球证据

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The novel D614G linage is becoming the dominating species of SARS‐CoV‐2. The impact of meteorological and geographical factors on SARS‐CoV‐2 pandemic are presently not well understood. This research article presents a retrospective case series. Pandemic and meteorological data from 30 countries and 49 states from USA are collected as of June 10th, 2020. The primary outcome are the coefficients of correlations between meteorological factors and pandemic data. Hierarchical clustering analysis are used on SARS‐CoV‐2 genome, meteorological factors, and pandemic. Disseminating velocity of SARS‐CoV‐2 is negatively correlated with average temperature in majority of included countries and states from USA. Proportion of the GR clade is positively associated with temperature, but is negatively correlated with altitude in countries‐set. Virus disseminating velocities in states from cluster A (Overwhelming proportion of G + GR + GH clades, GH >?60%) and C (Overwhelming proportion of G + GR + GH clades, G 20–30%) both has negative correlations with temperature, while cluster C has more significant negative correlation than cluster A. Climate and geographical environment are revealed to affect virus spreading. GH and GR clades of SARS‐CoV‐2 are probably acquiring higher temperature tolerance, while G clade may retain high temperature intolerance. Nowadays, the D614G linage is the dominating species of SARS‐CoV‐2. This research article suggests that climate and geographical environment could affect virus spread. GH and GR clades of SARS‐CoV‐2 are probably acquiring higher temperature tolerance, while the G clade might retain high temperature intolerance. Virus acclimation might have a critical contribution to the COVID‐19 pandemic.
机译:新型D614G线条正在成为SARS-COV-2的主导物种。目前还没有很好地理解气象和地理因素对SARS-COV-2大流行的影响。本研究制品提出了回顾性案例系列。从2020年6月10日收集来自30个国家和49个国家的大流行和气象数据。主要结果是气象因素与大流行数据之间的相关系数。分层聚类分析用于SARS-COV-2基因组,气象因素和大流行。 SARS-COV-2的传播速度与来自美国大多数国家和国家的大多数国家和国家的平均温度负相关。 GR疏水板的比例与温度呈正相关,但与各国的高度呈负相关。来自集群A的状态的病毒(G + Gr + GH片的压倒性比例,GH> 60%)和C(G + Gr + GH + GH片的压倒性比例,G 20-30%)都具有与温度负相关,虽然群集C具有比集群A更大的负相关性。气候和地理环境被揭示影响病毒扩散。 SARS-COV-2的GH和GR片材可能获得更高的温度耐受性,而G型材可能会保持高温不耐受。如今,D614G线条是SARS-COV-2的主导物种。本研究文章表明,气候和地理环境可能会影响病毒传播。 SARS-COV-2的GH和GR片材可能获得更高的耐热性,而G型材可能会保持高温的不容忍度。病毒驯化可能对Covid-19流行发出的关键贡献。

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