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- W2016584007 endingPage "325" @default.
- W2016584007 startingPage "309" @default.
- W2016584007 abstract "Salmonella is a diverse foodborne pathogen, which has more than 2600 recognized serovars. Classification of Salmonella isolates into serovars is essential for surveillance and epidemiological investigations; however, determination of Salmonella serovars, by traditional serotyping, has some important limitations (e.g. labor intensive, time consuming). To overcome these limitations, multiple methods have been investigated to develop molecular serotyping schemes. Currently, molecular methods to predict Salmonella serovars include (i) molecular subtyping methods (e.g. PFGE, MLST), (ii) classification using serovar-specific genomic markers and (iii) direct methods, which identify genes encoding antigens or biosynthesis of antigens used for serotyping. Here, we reviewed reported methodologies for Salmonella molecular serotyping and determined the “serovar-prediction accuracy”, as the percentage of isolates for which the serovar was correctly classified by a given method. Serovar-prediction accuracy ranged from 0 to 100%, 51 to 100% and 33 to 100% for molecular subtyping, serovar-specific genomic markers and direct methods, respectively. Major limitations of available schemes are errors in predicting closely related serovars (e.g. Typhimurium and 4,5,12:i:-), and polyphyletic serovars (e.g. Newport, Saintpaul). The high diversity of Salmonella serovars represents a considerable challenge for molecular serotyping approaches. With the recent improvement in sequencing technologies, full genome sequencing could be developed into a promising molecular approach to serotype Salmonella." @default.
- W2016584007 created "2016-06-24" @default.
- W2016584007 creator A5005226779 @default.
- W2016584007 creator A5032821708 @default.
- W2016584007 creator A5069734875 @default.
- W2016584007 creator A5082217142 @default.
- W2016584007 creator A5090391346 @default.
- W2016584007 date "2013-11-14" @default.
- W2016584007 modified "2023-10-13" @default.
- W2016584007 title "Molecular methods for serovar determination of Salmonella" @default.
- W2016584007 cites W115159529 @default.
- W2016584007 cites W1483214510 @default.
- W2016584007 cites W1491635529 @default.
- W2016584007 cites W1515896144 @default.
- W2016584007 cites W1595425497 @default.
- W2016584007 cites W1601444235 @default.
- W2016584007 cites W1608801656 @default.
- W2016584007 cites W183262170 @default.
- W2016584007 cites W1846695937 @default.
- W2016584007 cites W1868348006 @default.
- W2016584007 cites W1876096954 @default.
- W2016584007 cites W1900687908 @default.
- W2016584007 cites W1901743787 @default.
- W2016584007 cites W1912561070 @default.
- W2016584007 cites W1920699938 @default.
- W2016584007 cites W1961933713 @default.
- W2016584007 cites W1966534922 @default.
- W2016584007 cites W1967620589 @default.
- W2016584007 cites W1970793246 @default.
- W2016584007 cites W1971991156 @default.
- W2016584007 cites W1973562470 @default.
- W2016584007 cites W1974064502 @default.
- W2016584007 cites W1981700272 @default.
- W2016584007 cites W1981894896 @default.
- W2016584007 cites W1982276358 @default.
- W2016584007 cites W1982705492 @default.
- W2016584007 cites W1988159507 @default.
- W2016584007 cites W1988440953 @default.
- W2016584007 cites W1991330646 @default.
- W2016584007 cites W1991860284 @default.
- W2016584007 cites W1992140057 @default.
- W2016584007 cites W1992158011 @default.
- W2016584007 cites W1996882672 @default.
- W2016584007 cites W1998399152 @default.
- W2016584007 cites W1999096386 @default.
- W2016584007 cites W2000690927 @default.
- W2016584007 cites W2002277707 @default.
- W2016584007 cites W2005478409 @default.
- W2016584007 cites W2005698171 @default.
- W2016584007 cites W2008007825 @default.
- W2016584007 cites W2012865673 @default.
- W2016584007 cites W2013404388 @default.
- W2016584007 cites W2017915435 @default.
- W2016584007 cites W2020240240 @default.
- W2016584007 cites W2020570683 @default.
- W2016584007 cites W2020818267 @default.
- W2016584007 cites W2026765779 @default.
- W2016584007 cites W2027246443 @default.
- W2016584007 cites W2030062456 @default.
- W2016584007 cites W2030685223 @default.
- W2016584007 cites W2034631514 @default.
- W2016584007 cites W2037252631 @default.
- W2016584007 cites W2040581338 @default.
- W2016584007 cites W2040804527 @default.
- W2016584007 cites W2041731156 @default.
- W2016584007 cites W2042824541 @default.
- W2016584007 cites W2043663405 @default.
- W2016584007 cites W2044175550 @default.
- W2016584007 cites W2044289324 @default.
- W2016584007 cites W2045265859 @default.
- W2016584007 cites W2046394321 @default.
- W2016584007 cites W2049026608 @default.
- W2016584007 cites W2051506465 @default.
- W2016584007 cites W2055667488 @default.
- W2016584007 cites W2056309175 @default.
- W2016584007 cites W2056777381 @default.
- W2016584007 cites W2057120104 @default.
- W2016584007 cites W2058550226 @default.
- W2016584007 cites W2059130642 @default.
- W2016584007 cites W2061447760 @default.
- W2016584007 cites W2062280978 @default.
- W2016584007 cites W2064804732 @default.
- W2016584007 cites W2065155445 @default.
- W2016584007 cites W2066509943 @default.
- W2016584007 cites W2068445477 @default.
- W2016584007 cites W2069678357 @default.
- W2016584007 cites W2072805667 @default.
- W2016584007 cites W2073589185 @default.
- W2016584007 cites W2076763515 @default.
- W2016584007 cites W2077190448 @default.
- W2016584007 cites W2077653913 @default.
- W2016584007 cites W2080860466 @default.
- W2016584007 cites W2081209254 @default.
- W2016584007 cites W2082317013 @default.
- W2016584007 cites W2085535614 @default.
- W2016584007 cites W2088258950 @default.
- W2016584007 cites W2088510902 @default.
- W2016584007 cites W2089349301 @default.