Category Archives: Microbiology

Research – Potential Ad Hoc Markers of Persistence and Virulence in Canadian Listeria monocytogenes Food and Clinical Isolates

Food Protection Journal

ABSTRACT

The Listeria monocytogenes gene inlA, encoding a surface virulence protein, was examined for the presence of premature stop codon (PMSC) mutations in 82 isolates obtained by the Canadian Food Inspection Agency (CFIA) from foods and food contact surfaces. These mutations were coanalyzed for the presence of stress survival islet 1 (SSI-1) and for the abilities of the isolates to invade Caco-2 intestinal epithelial cells and form biofilms on polystyrene. PMSC mutations were present in one-third of the isolates (predominantly those of serogroup 1/2a), and their presence was correlated with a noninvasive phenotype. The presence of SSI-1 and the ability to form biofilms were also linked to the 1/2a serogroup. Serogroup 4b isolates lacked inlA PMSC mutations and were invasive, but neither formed biofilms nor carried SSI-1. To expand upon these experimental findings, an in silico analysis was performed on L. monocytogenes genomes from Canadian databases of 278 food isolates and 607 clinical isolates. The prevalence of inlA PMSC mutations in genomes of food isolates was significantly higher (P < 0.0001) than that in clinical isolates. Also, a three-codon deletion in inlA associated with a hyperinvasive phenotype was more prevalent in genomes from clinical isolates (primarily of clonal complex 6, serogroup 4b) than in those from food isolates (P < 0.001). In contrast, SSI-1 was significantly overrepresented (P < 0.001) in genomes from food isolates. We propose the hypothesis that SSI-1 and inlA play a role in the evolution of Canadian L. monocytogenes strains into either a virulent (represented by serogroup 4b clinical isolates) or an environmentally persistent (represented by serogroup 1/2a food isolates) phenotype. The combined presence of SSI-1 and inlA PMSC mutations have potential for use as genetic markers for risk assessment when L. monocytogenes is recovered from foods, indicating low potential for pathogenesis.

HIGHLIGHTS
  • Numerous Canadian food isolates of L. monocytogenes have attenuated virulence.

  • Food but not clinical Canadian L. monocytogenes strains often have inlA mutations.

  • Listeria strains carry potential markers of virulent or persistent phenotypes.

  • SSI-1 and inlA may be phenotypic markers for Canadian L. monocytogenes strains.

  • SSI-1 and inlA may indicate the health risk associated with L. monocytogenes food isolates.

RASFF Alerts – Animal Feed – Salmonella – Rape Seed Meal – Fish Meal

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RASFF – Salmonella enterica ser. Münster (present /25g) and Salmonella enterica ser. Tennessee (present /25g) in rape seed meal from Russia in Finland

RASFF – Salmonella enterica ser. Tennessee (presence /25g) in rape seed meal from Germany in Finland

RASFF – Salmonella (O:7 /25g) in fish meal from the United States in Germany

RASFF Alert – Moulds – Beet Pulp -Sunflower Seed Meal

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RASFF – dried beet pulp from Ukraine infested with moulds in Poland

RASFF – sunflower seed meal from Ukraine infested with moulds in Poland

RASFF Alerts – Animal Feed – Enterobacteriaceae – Fish Meal

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RASFF – high count of Enterobacteriaceae (<10; <10; 20; 50; 200 CFU/g) in fish meal from Peru in Germany

RASFF – high count of Enterobacteriaceae (up to 600 CFU/g) in fish meal from Peru in Germany

UK – Doctor, 47, is struck off after he made £72,000 signing more than 400 bogus sick notes for holidaymakers who were claiming compensation through his wife’s legal firm

Mail Online

A doctor who made £72,000 signing more than 400 bogus sick notes for his wife’s legal firm has been struck off the medical register.

Dr Zuber Bux, 47, filled in false illness reports from holidaymakers claiming compensation from travel firms through his solicitor wife Sehana’s law business.

Over four years Dr Bux, a GP from Blackburn, Lancashire, made about £72,000 writing more than 400 reports but did not inform holiday companies or the courts that his wife worked for AMS, the law firm that instructed him.

A Medical Practitioners Tribunal in Manchester informed Dr Bux that his name has been erased from the medical register due to his ‘dishonesty’ and for the ‘protection of the public’.

Research -Tiny droplets allow bacteria to survive daytime dryness on leaves

Science Daily

Microscopic droplets on the surface of leaves give refuge to bacteria that otherwise may not survive during the dry daytime, according to a new study published today in eLife.

Understanding this bacterial survival strategy for dry conditions may enable scientists to develop practices that support healthy plant microbiomes in agricultural and natural settings.

The surface of an average plant leaf is teeming with about 10 million microbes — a population comparable to that of large cities — that contribute to the health and day-to-day functioning of the plant. Scientists have long wondered how bacteria are able to survive as daytime temperatures and sunlight dry off leaf surfaces.

“While leaves may appear to be completely dry during the day, there is evidence that they are frequently covered by thin liquid films or micrometre-sized droplets that are invisible to the naked eye,” says co-lead author Maor Grinberg, a PhD student at Hebrew University’s Robert H. Smith Faculty of Agriculture, Food, and Environment in Rehovot, Israel. “It wasn’t clear until now whether this microscopic wetness was enough to protect bacteria from drying out.”

To answer this question, Grinberg, together with co-lead author and Research Scientist Tomer Orevi and their team, recreated leaf surface-like conditions in the laboratory using glass plates that were exposed to various levels of humidity. They then conducted experiments with more than a dozen different bacteria species in these conditions.

They observed that while these surfaces appeared dry to the naked eye, under a microscope bacteria cells and aggregates were safely shielded in miniscule droplets. Interestingly, larger droplets formed around aggregates of more than one cell, while only tiny droplets formed around solitary cells. This microscopic wetness is caused by a process called deliquescence — where hygroscopic substances, such as aerosols, that are prevalent on leaves absorb moisture from the atmosphere and dissolve within the moisture to form the droplets.

“We found that bacteria cells can survive inside these droplets for more than 24 hours and that survival rates were much higher in larger droplets,” Orevi explains. “Our results suggest that through methods of self-organisation, for example by aggregation, these cells can improve their survival chances in environments frequently exposed to drying.”

These findings could have important implications for agriculture as human practices may inadvertently interfere with this bacterial survival mechanism, endangering the health of crops and natural vegetation, according to senior author Nadav Kashtan, PhD, Assistant Professor at Hebrew University’s Robert H. Smith Faculty of Agriculture, Food, and Environment. “A greater understanding of how microscopic leaf wetness may protect the healthy plant microbiome and how it might be disrupted by agricultural practices and human aerosol emissions is of great importance,” he says.

Kashtan also notes that similar microscopic surface wetness likely occurs in soil, in the built environment, on human and animal skin, and potentially even in extra-terrestrial systems where conditions might allow, suggesting such bacterial survival strategies are not limited to leaf surfaces.


Story Source:

Materials provided by eLife.

RASFF Alert – Animal Feed – Moulds – Beet Pulp

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RASFF -dried beet pulp from Ukraine infested with moulds in Poland

RASFF Alert – Animal Feed – Aflatoxin – Groundnuts for Bird Feed

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RASFF -aflatoxins (B1 = 160 µg/kg – ppb) in groundnuts for birdfeed from the United States in the UK

RASFF Alert – Animal Feed – Salmonella – Poultry MEal – Frozen Raw Pet Food

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RASFF -Salmonella (present /25g) in poultry meal from Ukraine in Cyprus

RASFF -Salmonella enterica ser. Agona (presence /25g) and Salmonella enterica ser. Derby (presence /25g) in frozen raw pet food from the Netherlands

USA – Legionnaires’ disease: 3rd death reported in North Carolina outbreak

Outbreak News Today CDC legionella

North Carolina health officials have reported a third Legionnaires’ disease fatality linked to the NC Mountain State Fair, held September 6-15, 2019 at the Western North Carolina Agricultural Center in Fletcher, NC.

As of Oct. 14, 140 cases of Legionnaires’ disease or Pontiac Fever had been reported in residents of multiple states and North Carolina counties.

Buncombe, Henderson and Haywood counties have seen the most cases with 49, 34 and 12, respectively. Ten cases were reported in out of state residents.

The outbreak has been linked to a hot tubs display at the Davis Event Center at WNC Ag Center.

Legionella bacteria are found naturally in the environment. These bacteria can become a health concern when they grow and spread in human-made building water systems like hot water tanks, cooling towers of air conditioning systems, decorative fountains and hot tubs or spas that aren’t properly maintained.

Approximately 200 cases are reported annually in North Carolina.