Biotechnology in flavor production / / edited by Daphna Havkin-Frenkel, Nativ Dudai |
Edizione | [Second edition.] |
Pubbl/distr/stampa | Chichester, England : , : Wiley-Blackwell, , 2016 |
Descrizione fisica | 1 online resource (341 pages) |
Disciplina | 664/.07 |
Collana | THEi Wiley ebooks. |
Soggetto topico |
Food - Biotechnology
Flavor |
ISBN |
1-118-35404-4
1-118-35403-6 1-118-35405-2 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Cover; Title Page; Copyright; Contents; Contributors; Preface; Chapter 1 The flavor of citrus fruit; Introduction; Taste components of citrus fruit; Sugars; Acids; Bitter compounds; Aroma compounds of citrus fruit; Terpene hydrocarbons; Aldehydes; Alcohols; Esters; Ketones; Other volatiles; Citrus genes involved in flavor production; The unique flavor of different citrus species; The flavor of oranges; The flavor of mandarins; The flavor of grapefruit; The flavor of lemons; Accumulation of off-flavors in fresh citrus fruit during postharvest storage; Flavor of citrus essential oils
AcknowledgmentsReferences; Chapter 2 Aroma as a factor in the breeding process of fresh herbs-the case of basil; The importance of selecting for aroma in breeding of aromatic plants; The importance of genetic factors regarding the essential oil composition in aromatic plants; Sweet basil and the Ocimum genus; Uses of sweet basil; The chemistry of the aroma factors of plants: the essential oil; Essential oil profiles of common commercial basil varieties; Comparison of chemical analysis methods; Variation of the volatile compound composition within the plant Variation of aroma compounds within cultivars and the potential for selectionBiosynthetic pathways of basil aroma components; Inheritance of aroma compounds in basil; Interspecific hybridization among Ocimum species; Applications of biotechnology-based approaches to modification of basil aroma; References; Chapter 3 Novel yeast strains as tools for adjusting the flavor of fermented beverages to market specifications; Introduction; Wine; Beer; Saké; Wine, beer, and saké yeasts; Wine yeasts; Beer yeasts; Saké yeasts; Acids; Non-volatile acids; Volatile acids; Alcohols; Ethanol; Glycerol Higher alcoholsEsters; Carbonyl compounds; Acetaldehyde; Diacetyl; Volatile phenols; Sulfur compounds; Sulfides; Mercaptans; Thiols; Monoterpenoids; Conclusion; References; Chapter 4 Biotechnology of flavor formation in fermented dairy products; Introduction; Biochemistry of dairy fermentations; Biotechnology and flavor; Flavor production from bacteria; Comparative genomics of flavor production; Expression and metabolite analysis; Predictive bioinformatics; Non-culturable lactococci; Translation of omics to biotechnology; Conclusion; References Chapter 5 Biotechnological production of vanillinIntroduction; Biosynthesis of vanillin; Natural occurrence of vanillin; Site of vanillin production in vanilla beans; Vanillin biosynthetic pathway in Vanilla planifolia; Production of vanillin by biotechnology; Introduction; Use of microorganisms; Use of plant tissue culture; Use of enzymes; Use of physical and mild chemistry methods; Synthetic vanillin; Vanillin from vanilla beans; Regulations; Conclusions and future outlook; References; Chapter 6 Plant cell culture as a source of valuable chemicals; Introduction Establishment of callus culture |
Record Nr. | UNINA-9910134879403321 |
Chichester, England : , : Wiley-Blackwell, , 2016 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Biotechnology in flavor production / / edited by Daphna Havkin-Frenkel, Nativ Dudai |
Edizione | [Second edition.] |
Pubbl/distr/stampa | Chichester, England : , : Wiley-Blackwell, , 2016 |
Descrizione fisica | 1 online resource (341 pages) |
Disciplina | 664/.07 |
Collana | THEi Wiley ebooks. |
Soggetto topico |
Food - Biotechnology
Flavor |
ISBN |
1-118-35404-4
1-118-35403-6 1-118-35405-2 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Cover; Title Page; Copyright; Contents; Contributors; Preface; Chapter 1 The flavor of citrus fruit; Introduction; Taste components of citrus fruit; Sugars; Acids; Bitter compounds; Aroma compounds of citrus fruit; Terpene hydrocarbons; Aldehydes; Alcohols; Esters; Ketones; Other volatiles; Citrus genes involved in flavor production; The unique flavor of different citrus species; The flavor of oranges; The flavor of mandarins; The flavor of grapefruit; The flavor of lemons; Accumulation of off-flavors in fresh citrus fruit during postharvest storage; Flavor of citrus essential oils
AcknowledgmentsReferences; Chapter 2 Aroma as a factor in the breeding process of fresh herbs-the case of basil; The importance of selecting for aroma in breeding of aromatic plants; The importance of genetic factors regarding the essential oil composition in aromatic plants; Sweet basil and the Ocimum genus; Uses of sweet basil; The chemistry of the aroma factors of plants: the essential oil; Essential oil profiles of common commercial basil varieties; Comparison of chemical analysis methods; Variation of the volatile compound composition within the plant Variation of aroma compounds within cultivars and the potential for selectionBiosynthetic pathways of basil aroma components; Inheritance of aroma compounds in basil; Interspecific hybridization among Ocimum species; Applications of biotechnology-based approaches to modification of basil aroma; References; Chapter 3 Novel yeast strains as tools for adjusting the flavor of fermented beverages to market specifications; Introduction; Wine; Beer; Saké; Wine, beer, and saké yeasts; Wine yeasts; Beer yeasts; Saké yeasts; Acids; Non-volatile acids; Volatile acids; Alcohols; Ethanol; Glycerol Higher alcoholsEsters; Carbonyl compounds; Acetaldehyde; Diacetyl; Volatile phenols; Sulfur compounds; Sulfides; Mercaptans; Thiols; Monoterpenoids; Conclusion; References; Chapter 4 Biotechnology of flavor formation in fermented dairy products; Introduction; Biochemistry of dairy fermentations; Biotechnology and flavor; Flavor production from bacteria; Comparative genomics of flavor production; Expression and metabolite analysis; Predictive bioinformatics; Non-culturable lactococci; Translation of omics to biotechnology; Conclusion; References Chapter 5 Biotechnological production of vanillinIntroduction; Biosynthesis of vanillin; Natural occurrence of vanillin; Site of vanillin production in vanilla beans; Vanillin biosynthetic pathway in Vanilla planifolia; Production of vanillin by biotechnology; Introduction; Use of microorganisms; Use of plant tissue culture; Use of enzymes; Use of physical and mild chemistry methods; Synthetic vanillin; Vanillin from vanilla beans; Regulations; Conclusions and future outlook; References; Chapter 6 Plant cell culture as a source of valuable chemicals; Introduction Establishment of callus culture |
Record Nr. | UNINA-9910819459603321 |
Chichester, England : , : Wiley-Blackwell, , 2016 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|