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Yeast community structures and dynamics in healthy and Botrytis-affected grape must fermentations

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dc.contributor.author Nisiotou, AA en
dc.contributor.author Spiropoulos, AE en
dc.contributor.author Nychas, G-JE en
dc.date.accessioned 2014-06-06T06:47:58Z
dc.date.available 2014-06-06T06:47:58Z
dc.date.issued 2007 en
dc.identifier.issn 00992240 en
dc.identifier.uri http://dx.doi.org/10.1128/AEM.01279-07 en
dc.identifier.uri http://62.217.125.90/xmlui/handle/123456789/3899
dc.subject.other Biodiversity en
dc.subject.other DNA en
dc.subject.other Ecosystems en
dc.subject.other Fermentation en
dc.subject.other Fruits en
dc.subject.other Fungus attack en
dc.subject.other Genetic engineering en
dc.subject.other Greece en
dc.subject.other Population dynamics en
dc.subject.other Community structures en
dc.subject.other Gradient gel electrophoresis en
dc.subject.other Restriction fragment length polymorphism en
dc.subject.other Structural divergences en
dc.subject.other Yeast en
dc.subject.other internal transcribed spacer en
dc.subject.other ribosome DNA en
dc.subject.other biodiversity en
dc.subject.other community dynamics en
dc.subject.other community structure en
dc.subject.other DNA en
dc.subject.other fermentation en
dc.subject.other polymorphism en
dc.subject.other species diversity en
dc.subject.other vine en
dc.subject.other yeast en
dc.subject.other amplicon en
dc.subject.other article en
dc.subject.other biodiversity en
dc.subject.other Botrytis en
dc.subject.other community structure en
dc.subject.other denaturing gradient gel electrophoresis en
dc.subject.other fermentation en
dc.subject.other geographic distribution en
dc.subject.other grape en
dc.subject.other grape juice en
dc.subject.other issatchenkia en
dc.subject.other Kluyveromyces en
dc.subject.other Kluyveromyces dobzhanskii en
dc.subject.other nonhuman en
dc.subject.other nucleotide sequence en
dc.subject.other population dynamics en
dc.subject.other restriction fragment length polymorphism en
dc.subject.other sequence analysis en
dc.subject.other species diversity en
dc.subject.other species dominance en
dc.subject.other wine en
dc.subject.other Zygosaccharomyces en
dc.subject.other zygosaccharomyces bailii en
dc.subject.other Biodiversity en
dc.subject.other Botrytis en
dc.subject.other DNA, Fungal en
dc.subject.other DNA, Ribosomal en
dc.subject.other DNA, Ribosomal Spacer en
dc.subject.other Fermentation en
dc.subject.other Polymorphism, Restriction Fragment Length en
dc.subject.other Vitis en
dc.subject.other Wine en
dc.subject.other Yeasts en
dc.subject.other Arcadia [Peloponnisos] en
dc.subject.other Attica en
dc.subject.other Eurasia en
dc.subject.other Europe en
dc.subject.other Greece en
dc.subject.other Peloponnisos en
dc.subject.other Southern Europe en
dc.subject.other Botrytis en
dc.subject.other Issatchenkia en
dc.subject.other Kazachstania en
dc.subject.other Kluyveromyces dobzhanskii en
dc.subject.other Saccharomyces cerevisiae en
dc.subject.other Vitaceae en
dc.subject.other Zygosaccharomyces bailii en
dc.title Yeast community structures and dynamics in healthy and Botrytis-affected grape must fermentations en
heal.type journalArticle en
heal.identifier.primary 10.1128/AEM.01279-07 en
heal.publicationDate 2007 en
heal.abstract Indigenous yeast population dynamics during the fermentation of healthy and Botrytis-affected grape juice samples from two regions in Greece, Attica and Arcadia, were surveyed. Species diversity was evaluated by using restriction fragment length polymorphism and sequence analyses of the 5.8S internal transcribed spacer and the D1/D2 ribosomal DNA (rDNA) regions of cultivable yeasts. Community-level profiles were also obtained by direct analysis of fermenting samples through denaturing gradient gel electrophoresis of 26S rDNA amplicons. Both approaches revealed structural divergences in yeast communities between samples of different sanitary states or geographical origins. In all cases, Botrytis infection severely perturbed the bioprocess of fermentation by dramatically altering species heterogeneity and succession during the time course. At the beginning and middle of fermentations, Botrytis-affected samples possessed higher levels of biodiversity than their healthy counterparts, being enriched with fermentative and/or spoilage species, such as Zygosaccharomyces bailii and Issatchenkia spp. or Kluyveromyces dobzhanskii and Kazachstania sp. populations that have not been reported before for wine fermentations. Importantly, Botryiis-affected samples exposed discrete final species dominance. Selection was not species specific, and two different populations, i.e., Saccharomyces cerevisiae in samples from Arcadia and Z. bailii in samples from Attica, could be recovered at the end of Botrytis-affected fermentations. The governing of wine fermentations by Z. bailii is reported for the first time and could elucidate the origins and role of this particular spoilage microbe for the wine industry. This is the first survey to compare healthy and Botrytis-affected spontaneous fermentations by using both culture-based and -independent molecular methods in an attempt to further illuminate the complex yeast ecology of grape must fermentations. Copyright © 2007, American Society for Microbiology. All Rights Reserved. en
heal.journalName Applied and Environmental Microbiology en
dc.identifier.issue 21 en
dc.identifier.volume 73 en
dc.identifier.doi 10.1128/AEM.01279-07 en
dc.identifier.spage 6705 en
dc.identifier.epage 6713 en


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