Literature DB >> 30094833

Vanillin biotechnology: the perspectives and future.

Goutam Banerjee1, Pritam Chattopadhyay2.   

Abstract

The biotechnological production of fragrances is a recent trend that has expanded rapidly in the last two decades. Vanillin is the second most popular flavoring agent after saffron and is extensively used in various applications, e.g., as a food additive in food and beverages and as a masking agent in various pharmaceutical formulations. It is also considered a valuable product for other applications, such as metal plating and the production of other flavoring agents, herbicides, ripening agents, antifoaming agents, and personal and home-use products (such as in deodorants, air fresheners, and floor-polishing agents). In general, three types of vanillin, namely natural, biotechnological, and chemical/synthetic, are available on the market. However, only natural and nature-identical (biotechnologically produced from ferulic acid only) vanillins are considered as food-grade additives by most food-safety control authorities worldwide. In the present review, we summarize recent trends in fermentation technology for vanillin production and discuss the importance of the choice of raw materials for the economically viable production of vanillin. We also describe the key enzymes used in the biotechnological production of vanillin as well as their underlying genes. Research to advance our understanding of the molecular regulation of different pathways involved in vanillin production from ferulic acid is still ongoing. The enhanced knowledge is expected to offer new opportunities for the application of metabolic engineering to optimize the production of nature-identical vanillin.
© 2018 Society of Chemical Industry. © 2018 Society of Chemical Industry.

Entities:  

Keywords:  bioconversion; fermentation; industrial use; nature-identical vanillin; underlying gene

Mesh:

Substances:

Year:  2018        PMID: 30094833     DOI: 10.1002/jsfa.9303

Source DB:  PubMed          Journal:  J Sci Food Agric        ISSN: 0022-5142            Impact factor:   3.638


  17 in total

1.  Site-directed mutagenesis of coenzyme-independent carotenoid oxygenase CSO2 to enhance the enzymatic synthesis of vanillin.

Authors:  Xueyan Yao; Yuemeng Lv; Huilei Yu; Hao Cao; Luyao Wang; Boting Wen; Tianyi Gu; Fengzhong Wang; Lichao Sun; Fengjiao Xin
Journal:  Appl Microbiol Biotechnol       Date:  2020-03-04       Impact factor: 4.813

2.  Production of phenolic flavoring compounds from sugarcane bagasse by Lactobacillus acidophilus MTCC 10307.

Authors:  Bhabjit Pattnaik; Prakash Kumar Sarangi; Padan Kumar Jena; Hara Prasad Sahoo; Latika Bhatia
Journal:  Arch Microbiol       Date:  2021-12-17       Impact factor: 2.552

3.  Applying biochemical and structural characterization of hydroxycinnamate catabolic enzymes from soil metagenome for lignin valorization strategies.

Authors:  Thiago Augusto Gonçalves; Victoria Sodré; Stephanie Nemesio da Silva; Nathalia Vilela; Geizecler Tomazetto; Juscemácia Nascimento Araujo; João Renato C Muniz; Taícia Pacheco Fill; André Damasio; Wanius Garcia; Fabio Marcio Squina
Journal:  Appl Microbiol Biotechnol       Date:  2022-03-30       Impact factor: 4.813

4.  One-pot microbial bioconversion of wheat bran ferulic acid to biovanillin.

Authors:  Abha Sharma; Jyoti Singh; Pushpendra Sharma; Govind Singh Tomar; Surender Singh; Minakshi Grover; Lata Nain
Journal:  3 Biotech       Date:  2021-10-18       Impact factor: 2.406

5.  Aspergillus niger uses the peroxisomal CoA-dependent β-oxidative genes to degrade the hydroxycinnamic acids caffeic acid, ferulic acid, and p-coumaric acid.

Authors:  R J M Lubbers; A Dilokpimol; J Visser; R P de Vries
Journal:  Appl Microbiol Biotechnol       Date:  2021-05-05       Impact factor: 4.813

6.  A thermostable glycosyltransferase from Paenibacillus polymyxa NJPI29: recombinant expression, characterization, and application in synthesis of glycosides.

Authors:  Siyuan Chang; Xin Pan; Mingzhe Zhao; Guoqing Li; Xue Wang; Yachen Fan; Wei Song; Bingfeng Li; Sen Zhang; Xuejun He
Journal:  3 Biotech       Date:  2021-06-04       Impact factor: 2.893

Review 7.  Strategies for the production of biochemicals in bioenergy crops.

Authors:  Chien-Yuan Lin; Aymerick Eudes
Journal:  Biotechnol Biofuels       Date:  2020-04-15       Impact factor: 6.040

8.  Maximizing the Efficiency of Vanillin Production by Biocatalyst Enhancement and Process Optimization.

Authors:  Francesca Luziatelli; Lorenza Brunetti; Anna Grazia Ficca; Maurizio Ruzzi
Journal:  Front Bioeng Biotechnol       Date:  2019-10-18

Review 9.  Production of Aldehydes by Biocatalysis.

Authors:  Veronika Kazimírová; Martin Rebroš
Journal:  Int J Mol Sci       Date:  2021-05-06       Impact factor: 5.923

10.  Microbial synthesis of vanillin from waste poly(ethylene terephthalate).

Authors:  Joanna C Sadler; Stephen Wallace
Journal:  Green Chem       Date:  2021-06-10       Impact factor: 10.182

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