β-Fructofuranosidase andβ–D-Fructosyltransferase from NewAspergillus carbonariusPC-4 Strain Isolated from Canned Peach Syrup: Effect of Carbon and Nitrogen Sources on Enzyme Production

Author:

Nascimento Gustavo Carvalho do1,Batista Ryhára Dias2,Santos Claudia Cristina Auler do Amaral3,Silva Ezequiel Marcelino da1,de Paula Fabrício Coutinho2,Mendes Danylo Bezerra3ORCID,de Oliveira Deyla Paula4,Almeida Alex Fernando de5ORCID

Affiliation:

1. Bioprocess Engineering and Biotechnology, Federal University of Tocantins, Gurupi, Tocantins, Brazil

2. Graduate Program on Food Science and Technology, Federal University of Tocantins, Palmas, Tocantins, Brazil

3. Graduate Program on Biotechnology and Biodiversity of Amazonian–Bionorte, Federal University of Tocantins, Tocantins, Brazil

4. Superintendência de Desenvolvimento Científico e Tecnológico, Fundação de Amparo à Pesquisa do Estado do Tocantins (FAPT), Tocantins, Brazil

5. Habite, Biotechnology-Based Companies Incubator, Federal University of Tocantins, Gurupi, Tocantins, Brazil

Abstract

β-fructofuranosidase (invertase) andβ-D-fructosyltransferase (FTase) are enzymes used in industrial processes to hydrolyze sucrose aiming to produce inverted sugar syrup or fructooligosaccharides. In this work, a blackAspergillussp. PC-4 was selected among six filamentous fungi isolated from canned peach syrup which were initially screened for invertase production. Cultivations with pure carbon sources showed that invertase and FTase were produced from glucose and sucrose, but high levels were also obtained from raffinose and inulin. Pineapple crown was the best complex carbon source for invertase (6.71 U/mL after 3 days of cultivation) and FTase production (14.60 U/mL after 5 days of cultivation). Yeast extract and ammonium chloride nitrogen sources provided higher production of invertase (6.80 U/mL and 6.30 U/mL, respectively), whereas ammonium nitrate and soybean protein were the best nitrogen sources for FTase production (24.00 U/mL and 24.90 U/mL, respectively). Fermentation parameters for invertase using yeast extract wereYP/S= 536.85 U/g andPP= 1.49 U/g/h. FTase production showed values ofYP/S= 2,627.93 U/g andPP= 4.4 U/h using soybean protein. The screening for best culture conditions showed an increase of invertase production values by 5.10-fold after 96 h cultivation compared to initial experiments (fungi bioprospection), while FTase production increased by 14.60-fold (44.40 U/mL) after 168 h cultivation.A. carbonariusPC-4 is a new promising strain for invertase and FTase production from low cost carbon sources, whose synthesized enzymes are suitable for the production of inverted sugar, fructose syrups, and fructooligosaccharides.

Funder

Federal University of Tocantins

Publisher

Hindawi Limited

Subject

General Environmental Science,General Biochemistry, Genetics and Molecular Biology,General Medicine

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