Publications by authors named "Melissa Bizzarri"

Article Synopsis
  • - The study focuses on developing a faster detection method for seafood-related pathogens, specifically three bacteria types, using multiplex real-time PCR, which is quicker than traditional culture methods.
  • - Bivalve mollusks were tested by inoculating them with different concentrations of these bacteria, and the PCR method showed a high detection accuracy, matching results with the standard reference method.
  • - The new PCR technique proved reliable for two of the bacteria types, while results for the third were promising but needed more investigation; this method could enhance food safety monitoring in seafood.
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The so-called nonconventional yeasts are becoming increasingly attractive in food and industrial biotechnology. Among them, Zygosaccharomyces rouxii is known to be halotolerant, osmotolerant, petite negative, and poorly Crabtree positive. These traits and the high fermentative vigour make this species very appealing for industrial and food applications.

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The pre-whole genome duplication (WGD) clade comprises several allodiploid strain/species with industrially interesting traits. The salt-tolerant yeast ATCC42981 is a sterile and allodiploid strain which contains two subgenomes, one of them resembling the haploid parental species . Recently, different mating-type-like () loci repertoires were reported for ATCC42981 and the Japanese strain JCM22060, which are considered two stocks of the same strain.

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Here, we report draft genome sequences of the halotolerant and allodiploid strains Zygosaccharomyces rouxii ATCC 42981 and Zygosaccharomyces sapae ABT301. Illumina and Oxford Nanopore MinION sequencing revealed genome sizes of 20.9 and 24.

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In haploid Saccharomyces cerevisiae, a complex recombination system regulates mating-type switching and requires one MAT expression locus, two donor cassettes (HML and HMR) and the HO endonuclease that catalyses gene conversion. Zygosaccharomyces rouxii is the most distant species from S. cerevisiae with a functional HO, but with a poorly understood mating-type switching.

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Allodiploidization is a fundamental yet evolutionarily poorly characterized event, which impacts genome evolution and heredity, controlling organismal development and polyploid cell-types. In this study, we investigated the sex determination system in the allodiploid and sterile ATCC 42981 yeast, a member of the Zygosaccharomyces rouxii species complex, and used it to study how a chimeric mating-type gene repertoire contributes to hybrid reproductive isolation. We found that ATCC 42981 has 7 MAT-like (MTL) loci, 3 of which encode α-idiomorph and 4 encode a-idiomorph.

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