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Variable evolutionary routes to host establishment across repeated rabies virus host shifts among bats

机译:蝙蝠之间反复狂犬病毒宿主转移的可变进化途径建立宿主

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摘要

Determining the genetic pathways that viruses traverse to establish in new host species is crucial to predict the outcome of cross-species transmission but poorly understood for most host–virus systems. Using sequences encoding 78% of the rabies virus genome, we explored the extent, repeatability and dynamic outcome of evolution associated with multiple host shifts among New World bats. Episodic bursts of positive selection were detected in several viral proteins, including regions associated with host cell interaction and viral replication. Host shifts involved unique sets of substitutions, and few sites exhibited repeated evolution across adaptation to many bat species, suggesting diverse genetic determinants over host range. Combining these results with genetic reconstructions of the demographic histories of individual viral lineages revealed that although rabies viruses shared consistent three-stage processes of emergence in each new bat species, host shifts involving greater numbers of positively selected substitutions had longer delays between cross-species transmission and enzootic viral establishment. Our results point to multiple evolutionary routes to host establishment in a zoonotic RNA virus that may influence the speed of viral emergence.
机译:确定病毒穿越新宿主物种建立的遗传途径对于预测跨物种传播的结果至关重要,但是对于大多数宿主病毒系统了解甚少。使用编码78%的狂犬病病毒基因组的序列,我们探索了与新大陆蝙蝠中多个宿主转移相关的进化的程度,可重复性和动态结果。在几种病毒蛋白(包括与宿主细胞相互作用和病毒复制相关的区域)中检测到了积极选择的间歇爆发。寄主转移涉及独特的取代集,并且很少有位点在适应多种蝙蝠物种的过程中表现出反复的进化,表明在寄主范围内存在多种遗传决定因素。将这些结果与各个病毒谱系的人口历史的遗传重建相结合后发现,尽管狂犬病毒在每个新蝙蝠物种中均具有一致的出现三个阶段的出现过程,但涉及大量积极选择的替代的宿主转移在跨物种传播之间的延迟时间更长。和病毒性建立。我们的结果指出了在人畜共患RNA病毒中宿主建立的多种进化途径,这可能会影响病毒出现的速度。

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