SARS-CoV-2 variants retain high airborne transmissibility by different strategies.

Jie Zhou, Ksenia Sukhova, Rebecca Frise, Laury Baillon, Jonathan C Brown, Thomas P Peacock, Wilhelm Furnon, Vanessa M Cowton, Arvind H Patel, Massimo Palmarini, Wendy S Barclay
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Abstract

SARS-CoV-2 variants evolve to balance immune evasion and airborne transmission, yet the mechanisms remain unclear. In hamsters, first-wave, Alpha, and Delta variants transmitted efficiently via aerosols. Alpha emitted fewer viral particles than first-wave virus but compensated with a lower infectious dose (ID50). Delta exhibited higher airborne emission but required a higher ID50. A fall in airborne emission of infectious Delta virus over time after infection correlated with a decrease in its infectivity to RNA ratio in nasal wash and a decrease in contagiousness to sentinel animals. Omicron subvariants (BA.1, EG.5.1, BA.2.86, JN.1) displayed varying levels of airborne transmissibility, partially correlated with airborne emissions. Mutations in the non-spike genes contributed to reduced airborne transmissibility, since recombinant viruses with spike genes of BA.1 or JN.1 and non-spike genes from first-wave virus are more efficiently transmitted between hamsters. These findings reveal distinct viral strategies for maintaining airborne transmission. Early assessment of ID50 and aerosolized viral load may help predict transmissibility of emerging variants.

SARS-CoV-2变体通过不同的策略保持高空气传播性。
SARS-CoV-2变体的进化是为了平衡免疫逃避和空气传播,但其机制尚不清楚。在仓鼠中,第一波、阿尔法和德尔塔变异通过气溶胶有效传播。α释放的病毒颗粒比第一波病毒少,但具有较低的感染剂量(ID50)。三角洲表现出更高的空气排放,但需要更高的ID50。感染后随着时间的推移,传染性德尔塔病毒在空气中排放的减少与鼻洗液中其传染性与RNA比率的降低以及对哨兵动物的传染性降低相关。基因组亚变体(BA.1, EG.5.1, BA.2.86, j .1)表现出不同程度的空气传播性,部分与空气排放相关。非刺突基因的突变有助于降低空气传播性,因为具有BA.1或JN.1刺突基因的重组病毒和来自第一波病毒的非刺突基因在仓鼠之间更有效地传播。这些发现揭示了维持空气传播的不同病毒策略。早期评估ID50和雾化病毒载量可能有助于预测新出现的变异的传播性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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