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Background: Salmonella enterica subsp. enterica serovar Javiana (antigenic formula 1,9,12:l,z28z28:1,5) is a serovar of the O:9 (D1) serogroup. Serovar Javiana remains one of the top five most common serotypes of Salmonella Javiana is the fourth most common serovar in human cases in the U.S. Some reports conclude that this serovar in highly virulent and severe cases have been reported. Investigation of virulence determinants have shown the presence of cdtB (virulence gene associated with virulence in S. Typhi). Serovar Javiana has been associated with a number of outbreaks with fresh produce as source linked fresh-cut produce, with an average of 11 clusters per year (2008 to 2012) identified by the PulseNet Network. Between 1996 and 2007, serovar Javiana ranked as the fifth most common Salmonella serovars reported to the CDC, but it rose to fourth place in 2008 representing 5% of overall salmonellosis cases in the US.

NCBI PD link for serovar Javiana: https://www.ncbi.nlm.nih.gov/pathogens/isolates/#(taxgroup_name:%22Salmonella%20enterica%22)%20AND%20computed_types:(%22serotype=Javiana%22)

Genetic characteristics: Serovar Javiana has been found to be monophyleticMezal et al. found a total of 34 distinct patterns grouped into five clusters at a 90% similarity threshold using pulsed-field gel electrophoresis (PFGE) analysis. Among the 50 Javiana isolates studied, all carried seven virulence genes, including cdtB. Additionally, the Javiana isolates exhibited substantial genetic diversity, indicating a heterogeneous clonal population across clinical, food, and environmental samples. Antimicrobial resistance in serovar Javiana was relatively low. Among the 140 isolates analyzed in 2013, only four (6.6%) exhibited resistance to nalidixic acid, while all remained susceptible to ceftriaxone. Notably, none of the isolates were classified as multidrug-resistant (MDR). In addition, serovar Javiana is primarily regarded as pansusceptible to clinically relevant antibiotics. According to the U.S. National Antimicrobial Resistance Monitoring System (NARMS) surveillance dashboard, none of the 3,047 serovar Javiana isolates tested between 1996-2024 showed phenotypic resistance to 20 clinically relevant antibiotics. Sanad et al. analyzed a total of 409 Javiana isolates and found that a high proportion (89%, n=364) of isolates demonstrated resistance to sulfisoxazole alone. Resistance to other agents (gentamicin, ciprofloxacin, ceftiofur) was rare (3%, n=11). PFGE resolved the population into nine major clusters, and isolates sharing XbaI/AvrII profiles were epidemiologically linked to prolonged human circulation. Plasmid analysis of resistant strains (n=19) revealed diverse plasmid sizes (<3–165 kb), while virulence screening confirmed the universal presence of 14 genes, including pagC, cdtB, and iroN. Interestingly, serovar Javiana is known to produce the typhoid toxin. Miller et al. revealed that deletion of the genes encoding the binding subunit (pltB) and a bacteriophage-derived muramidase, predicted to facilitate toxin export (ttsA), does not eliminate toxin activity in Javiana strains harboring the S-CDT operon.

Animal reservoir: According to the 2011 CDC report, S. serovar Javiana is found in samples from non-clinical no human origin, specifically, non-clinical chicken and turkey.  In addition, this serovar has a reservoir reptiles and amphibious.  mainly associated with amphibians. This serovar has also been rarely found in other animals such as chicken, cattle, and dogs.

Geographical distribution: S.  Serovar Javiana has been reported in the top 10 serovars from human cases the U.S., in Australia sporadic cases have been reported; in addition, spices from Thailand have been found to contain strains of serovar Javiana. worldwide including the US, Australia, and Germany.

Human outbreaks: Multiple human outbreaks of serovar Outbreaks: Outbreaks of S. Javiana have been associated with fresh produce and animal contact. Here are some examples.

Year

Location

Associated source

Number of cases

2021US: multistatePre-cut cantaloupe70
2019-2020US: multistateFresh cut fruit165

2002

US

-

: Florida

Tomatoes

159

141

2001

US

- Massachusetts

: Mississippi

Anphibian

Amphibian

66

55

1993

Germany

Paprika & paprika-powdered potato chips

(serovars

1

Estimated 1000

1 Salmonella Saintpaul and Rubislaw were also involved

...

1000

Border rejections: Multiple border rejections have been linked to serovar Javiana. They are all associated with black pepper imported from Brazil to Germany. Here are some examples.

Year

Exporting country

Importing country

Associated source

Product category

2022BrazilGermanyBlack pepper1Herbs and spices
2022BrazilGermanyBlack pepperHerbs and spices
2021BrazilGermanyBlack pepper2Herbs and spices
2020BrazilGermanyBlack pepper3Herbs and spices

1 Salmonella Javiana and Salmonella Poona were both found. 

2 Salmonella Javiana, Salmonella Newport and Salmonella Infantis were found. 

3 Salmonella Saintpaul and Salmonella Javiana were both found. 

Recalls: 

YearLocationRecalled foodType
2023US: multistateBlack fungus1Other food product / mixed
2019USFresh fruit2Fruit and vegetables

1 Salmonella Javiana, Salmonella Mgulani and Salmonella Weltevreden were found. 

2 Tailor Cut Produce recalled its fruit luau, cut honeydew, cut cantaloupe and cut pineapple products. This recall was resulted by a multistate outbreak mentioned above. 

Relevant links:

  1. https://pmc.ncbi.nlm.nih.gov/articles/PMC3622996/
  2. https

 

Relevant links and references:

  1. http://genomea.asm.org/content/1/2/e00081-13.full
  2. http://www.sciencedirect.com/science/article/pii/S0168160513001670http
  3. https://europepmc.org/articles/PMC2130573/www.frontiersin.org/journals/microbiology/articles/10.3389/fmicb.2025.1547190/full
  4. https://www.cdc.gov/narms/reports/annual-human-isolates-report-2013.html
  5. https://www.fda.gov/animal-veterinary/national-antimicrobial-resistance-monitoring-system/narms-now-integrated-data
  6. https://pmc.ncbi.nlm.nih.gov/articles/PMC9611979/
  7. https://pubmed.ncbi.nlm.nih.gov/29588404/
  8. https://www.cdc.gov/salmonella/reportspubs/salmonella-atlas/serotype-snapshots.html#:~:text=Scientists%20speculate%20that%20Javiana%20may,native%20to%20specific%20geographic%20areas
  9. https://onlinelibrary.wiley.com/doi/10.1111/zph.13174
  10. https://pmc.ncbi.nlm.nih.gov/articles/PMC6719869/
  11. https://outbreakdatabase.com/outbreaks/2021-multistate-outbreak-of-salmonella-javiana-infections-associated-with-cantaloupe
  12. https://archive.cdc.gov/#/details?url=https://www.cdc.gov/salmonella/javiana-12-19/index.html
  13. https://www.cdc.gov/mmwr/preview/mmwrhtml/mm5131a2.htm
  14. https://pubmed.ncbi.nlm.nih.gov/15061502/#:~:text=Salmonella%20Javiana%20is%20a%20Salmonella,infections%20in%20Mississippi%20increased%20sevenfold.
  15. https://pmc.ncbi.nlm.nih.gov/articles/PMC2271603/
  16. https://webgate.ec.europa.eu/rasff-window/screen/notification/524913
  17. https://webgate.ec.europa.eu/rasff-window/screen/notification/524681
  18. https://webgate.ec.europa.eu/rasff-window/screen/notification/482981
  19. https://webgate.ec.europa.eu/rasff-window/screen/notification/452474
  20. https://www.foodsafetynews.com/2023/05/black-fungus-recalled-in-12-states-after-testing-finds-multiple-strains-of-salmonella/
  21. https://www.foodsafetynews.com/?s=javiana