Genetic boundaries delineate the potential human pathogen Salmonella bongori into discrete lineages: divergence and speciation

Abstract Background Salmonella bongori infect mainly cold-blooded hosts, but infections by S. bongori in warm-blooded hosts have been reported. We hypothesized that S. bongori might have diverged into distinct phylogenetic lineages, with some being able to infect warm-blooded hosts. Results To inspect the divergence status of S. bongori, we first completely sequenced the parakeet isolate RKS3044 and compared it with other sequenced S. bongori strains. We found that RKS3044 contained a novel T6SS encoded in a pathogenicity island-like structure, in addition to a T6SS encoded in SPI-22, which is common to all S. bongori strains so far reported. This novel T6SS resembled the SPI-19 T6SS of the warm-blooded host infecting Salmonella Subgroup I lineages. Genomic sequence comparisons revealed different genomic sequence amelioration events among the S. bongori strains, including a unique CTAG tetranucleotide degeneration pattern in RKS3044, suggesting non-overlapping gene pools between RKS3044 and other S. bongori lineages/strains leading to their independent accumulation of genomic variations. We further proved the existence of a clear-cut genetic boundary between RKS3044 and the other S. bongori lineages/strains analyzed in this study. Conclusions The warm-blooded host-infecting S. bongori strain RKS3044 has diverged with distinct genomic features from other S. bongori strains, including a novel T6SS encoded in a previously not reported pathogenicity island-like structure and a unique genomic sequence degeneration pattern. These findings alert cautions about the emergence of new pathogens originating from non-pathogenic ancestors by acquiring specific pathogenic traits.

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PID https://www.doi.org/10.6084/m9.figshare.c.4770404
PID https://www.doi.org/10.6084/m9.figshare.c.4770404.v1
URL http://dx.doi.org/10.6084/m9.figshare.c.4770404
URL http://dx.doi.org/10.6084/m9.figshare.c.4770404.v1
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Author Xiaoyu Wang
Author Songling Zhu
Author Zhao, Jian-Hua
Author Bao, Hong-Xia
Author Huidi Liu
Author Ding, Tie-Min
Author Liu, Gui-Rong
Author Li, Yong-Guo
Author Johnston, Randal
Author Cao, Feng-Lin
Author Tang, Le
Author Liu, Shu-Lin
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Collected From Datacite
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Publication Date 2019-01-01
Publisher figshare
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keyword FOS: Health sciences
keyword FOS: Biological sciences
keyword FOS: Earth and related environmental sciences
system:type other
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Source https://science-innovation-policy.openaire.eu/search/other?orpId=dedup_wf_001::0ae01d5ceb6b326577f1f194f9c49ab9
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Last Updated 20 December 2020, 03:10 (CET)
Created 20 December 2020, 03:10 (CET)