Genome specialization and decay of the strangles pathogen, Streptococcus equi, is driven by persistent infection

被引:58
作者
Harris, Simon R. [1 ]
Robinson, Carl [2 ]
Steward, Karen F. [2 ]
Webb, Katy S. [2 ]
Paillot, Romain [2 ]
Parkhill, Julian [1 ]
Holden, Matthew T. G. [1 ,3 ]
Waller, Andrew S. [2 ]
机构
[1] Wellcome Trust Sanger Inst, Cambridge CB10 1SA, England
[2] Anim Hlth Trust, Newmarket CB8 7UU, Suffolk, England
[3] Univ St Andrews, Sch Med, St Andrews KY16 9TF, Fife, Scotland
基金
英国惠康基金;
关键词
MYCOBACTERIUM-TUBERCULOSIS; GLOBAL SPREAD; EVOLUTION; TRANSMISSION; POPULATION; VIRULENCE; OUTBREAKS; VACCINE; KERATINOCYTES; ZOOEPIDEMICUS;
D O I
10.1101/gr.189803.115
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Strangles, the most frequently diagnosed infectious disease of horses worldwide, is caused by Streptococcus equi. Despite its prevalence, the global diversity and mechanisms underlying the evolution of S. equi as a host-restricted pathogen remain poorly understood. Here, we define the global population structure of this important pathogen and reveal a population replacement in the late 19th or early 20th Century. Our data reveal a dynamic genome that continues to mutate and decay, but also to amplify and acquire genes despite the organism having lost its natural competence and become host-restricted. The lifestyle of S. equi within the horse is defined by short-term acute disease, strangles, followed by long-term infection. Population analysis reveals evidence of convergent evolution in isolates from post-acute disease samples as a result of niche adaptation to persistent infection within a host. Mutations that lead to metabolic streamlining and the loss of virulence determinants are more frequently found in persistent isolates, suggesting that the pathogenic potential of S. equi reduces as a consequence of long-term residency within the horse post-acute disease. An example of this is the deletion of the equibactin siderophore locus that is associated with iron acquisition, which occurs exclusively in persistent isolates, and renders S. equi significantly less able to cause acute disease in the natural host. We identify several loci that may similarly be required for the full virulence of S. equi, directing future research toward the development of new vaccines against this host-restricted pathogen.
引用
收藏
页码:1360 / 1371
页数:12
相关论文
共 57 条
[1]  
[Anonymous], 1831, HORSE TREATISE DRAUG, P149
[2]  
Bazeley P. L., 1940, Australian Veterinary Journal, V16, P140, DOI 10.1111/j.1751-0813.1940.tb01317.x
[3]  
Blaine D., 1841, OUTLINES VET ART, P432
[4]   Evaluation of a commercially available modified-live Streptococcus equi subsp equi vaccine in ponies [J].
Borst, Luke B. ;
Patterson, Sheila K. ;
Lanka, Saraswathi ;
Barger, Anne M. ;
Fredrickson, Richard L. ;
Maddox, Carol W. .
AMERICAN JOURNAL OF VETERINARY RESEARCH, 2011, 72 (08) :1130-1138
[5]   Inferring patient to patient transmission of Mycobacterium tuberculosis from whole genome sequencing data [J].
Bryant, Josephine M. ;
Schurch, Anita C. ;
van Deutekom, Henk ;
Harris, Simon R. ;
de Beer, Jessica L. ;
de Jager, Victor ;
Kremer, Kristin ;
van Hijum, Sacha A. F. T. ;
Siezen, Roland J. ;
Borgdorff, Martien ;
Bentley, Stephen D. ;
Parkhill, Julian ;
van Soolingen, Dick .
BMC INFECTIOUS DISEASES, 2013, 13
[6]   Evolution and transmission of drug-resistant tuberculosis in a Russian population [J].
Casali, Nicola ;
Nikolayevskyy, Vladyslav ;
Balabanova, Yanina ;
Harris, Simon R. ;
Ignatyeva, Olga ;
Kontsevaya, Irina ;
Corander, Jukka ;
Bryant, Josephine ;
Parkhill, Julian ;
Nejentsev, Sergey ;
Horstmann, Rolf D. ;
Brown, Timothy ;
Drobniewski, Francis .
NATURE GENETICS, 2014, 46 (03) :279-+
[7]   SHORT HISTORY OF ROYAL-ARMY-VETERINARY-CORPS [ABRIDGED] [J].
CLABBY, J .
PROCEEDINGS OF THE ROYAL SOCIETY OF MEDICINE-LONDON, 1976, 69 (02) :93-96
[8]   Enhanced Bayesian modelling in BAPS software for learning genetic structures of populations [J].
Corander, Jukka ;
Marttinen, Pekka ;
Siren, Jukka ;
Tang, Jing .
BMC BIOINFORMATICS, 2008, 9 (1) :539
[9]   Evolutionary and Population Genomics of the Cavity Causing Bacteria Streptococcus mutans [J].
Cornejo, Omar E. ;
Lefebure, Tristan ;
Bitar, Paulina D. Pavinski ;
Lang, Ping ;
Richards, Vincent P. ;
Eilertson, Kirsten ;
Thuy Do ;
Beighton, David ;
Zeng, Lin ;
Ahn, Sang-Joon ;
Burne, Robert A. ;
Siepel, Adam ;
Bustamante, Carlos D. ;
Stanhope, Michael J. .
MOLECULAR BIOLOGY AND EVOLUTION, 2013, 30 (04) :881-893
[10]   Rapid Pneumococcal Evolution in Response to Clinical Interventions [J].
Croucher, Nicholas J. ;
Harris, Simon R. ;
Fraser, Christophe ;
Quail, Michael A. ;
Burton, John ;
van der Linden, Mark ;
McGee, Lesley ;
von Gottberg, Anne ;
Song, Jae Hoon ;
Ko, Kwan Soo ;
Pichon, Bruno ;
Baker, Stephen ;
Parry, Christopher M. ;
Lambertsen, Lotte M. ;
Shahinas, Dea ;
Pillai, Dylan R. ;
Mitchell, Timothy J. ;
Dougan, Gordon ;
Tomasz, Alexander ;
Klugman, Keith P. ;
Parkhill, Julian ;
Hanage, William P. ;
Bentley, Stephen D. .
SCIENCE, 2011, 331 (6016) :430-434