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Genome degradation promotes Salmonella pathoadaptation by remodeling fimbriae-mediated proinflammatory response

生物 毒力 基因组 沙门氏菌 谱系(遗传) 遗传学 微生物学 病菌 肠沙门氏菌 致病岛 基因 细菌
作者
Xiao Zhou,Xiamei Kang,Jiaqi Chen,Yan Song,Chenghao Jia,Lin Teng,Yanting Tang,Zhijie Jiang,Xianqi Peng,Xiaoxi Tao,Yiwei Xu,Linlin Huang,Xuebin Xu,Yaohui Xu,Téngfēi Zhāng,Shenye Yu,Jiansen Gong,Shaohui Wang,Yuqing Liu,Guoqiang Zhu
出处
期刊:National Science Review [Oxford University Press]
卷期号:10 (10) 被引量:37
标识
DOI:10.1093/nsr/nwad228
摘要

Understanding changes in pathogen behavior (e.g. increased virulence, a shift in transmission channel) is critical for the public health management of emerging infectious diseases. Genome degradation via gene depletion or inactivation is recognized as a pathoadaptive feature of the pathogen evolving with the host. However, little is known about the exact role of genome degradation in affecting pathogenic behavior, and the underlying molecular detail has yet to be examined. Using large-scale global avian-restricted Salmonella genomes spanning more than a century, we projected the genetic diversity of Salmonella Pullorum (bvSP) by showing increasingly antimicrobial-resistant ST92 prevalent in Chinese flocks. The phylogenomic analysis identified three lineages in bvSP, with an enhancement of virulence in the two recently emerged lineages (L2/L3), as evidenced in chicken and embryo infection assays. Notably, the ancestor L1 lineage resembles the Salmonella serovars with higher metabolic flexibilities and more robust environmental tolerance, indicating stepwise evolutionary trajectories towards avian-restricted lineages. Pan-genome analysis pinpointed fimbrial degradation from a virulent lineage. The later engineered fim-deletion mutant, and all other five fimbrial systems, revealed behavior switching that restricted horizontal fecal-oral transmission but boosted virulence in chicks. By depleting fimbrial appendages, bvSP established persistent replication with less proinflammation in chick macrophages and adopted vertical transovarial transmission, accompanied by ever-increasing intensification in the poultry industry. Together, we uncovered a previously unseen paradigm for remodeling bacterial surface appendages that supplements virulence-enhanced evolution with increased vertical transmission.

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