Cargando…

A β-glucosidase-producing M-2 strain: Isolation from cow dung and fermentation parameter optimization for flaxseed cake

Flaxseed cake contains cyanogenic glucosides, which can be metabolized into hydrocyanic acid in an animal's body, leading to asphyxia poisoning in cells. Beta-glucosidase is highly efficient in degrading cyanogenic glucosides. The Cattle may have β-glucosidase-producing strains in the intestina...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Chenhui, Wei, Junshu, Jing, Yaping, Teng, Baoxia, Yang, Pingrong, Chen, Xinjun, Huang, Haiying, Zhao, Tang, Che, Tuanjie, Zhang, Chunjiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6407096/
https://www.ncbi.nlm.nih.gov/pubmed/30899817
http://dx.doi.org/10.1016/j.aninu.2018.05.010
_version_ 1783401472918028288
author Li, Chenhui
Wei, Junshu
Jing, Yaping
Teng, Baoxia
Yang, Pingrong
Chen, Xinjun
Huang, Haiying
Zhao, Tang
Che, Tuanjie
Zhang, Chunjiang
author_facet Li, Chenhui
Wei, Junshu
Jing, Yaping
Teng, Baoxia
Yang, Pingrong
Chen, Xinjun
Huang, Haiying
Zhao, Tang
Che, Tuanjie
Zhang, Chunjiang
author_sort Li, Chenhui
collection PubMed
description Flaxseed cake contains cyanogenic glucosides, which can be metabolized into hydrocyanic acid in an animal's body, leading to asphyxia poisoning in cells. Beta-glucosidase is highly efficient in degrading cyanogenic glucosides. The Cattle may have β-glucosidase-producing strains in the intestinal tract after eating small amounts of flaxseed cake for a long time. This study aimed to isolate of a strain from cow dung that produces β-glucosidase with high activity and can significantly reduce the amount of cyanogenic glucosides. We used cow dung as the microflora source and an esculin agar as the selective medium. After screening with 0.05% esculin and 0.01% ferric citrate, we isolated 5 strains producing high amounts of β-glucosidase. In vitro flaxseed cake fermentation was fermented by these 5 strains, in which the strain M-2 exerted the best effect (P < 0.05). The strain M-2 was identified as Lichtheimia ramosa and used as the fermentation strain to optimize the fermentation parameters by a single factor analysis and orthogonal experimental design. The optimum condition was as follows: inoculum size 3%, water content 60%, time 144 h, and temperature 32 °C. Under this condition, the removal rate of cyanogenic glucosides reached 89%, and crude protein increment reached 44%. These results provided a theoretical basis for the removal of cyanogenic glucosides in flaxseed and the comprehensive utilization of flaxseed cake.
format Online
Article
Text
id pubmed-6407096
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher KeAi Publishing
record_format MEDLINE/PubMed
spelling pubmed-64070962019-03-21 A β-glucosidase-producing M-2 strain: Isolation from cow dung and fermentation parameter optimization for flaxseed cake Li, Chenhui Wei, Junshu Jing, Yaping Teng, Baoxia Yang, Pingrong Chen, Xinjun Huang, Haiying Zhao, Tang Che, Tuanjie Zhang, Chunjiang Anim Nutr Feed Security Flaxseed cake contains cyanogenic glucosides, which can be metabolized into hydrocyanic acid in an animal's body, leading to asphyxia poisoning in cells. Beta-glucosidase is highly efficient in degrading cyanogenic glucosides. The Cattle may have β-glucosidase-producing strains in the intestinal tract after eating small amounts of flaxseed cake for a long time. This study aimed to isolate of a strain from cow dung that produces β-glucosidase with high activity and can significantly reduce the amount of cyanogenic glucosides. We used cow dung as the microflora source and an esculin agar as the selective medium. After screening with 0.05% esculin and 0.01% ferric citrate, we isolated 5 strains producing high amounts of β-glucosidase. In vitro flaxseed cake fermentation was fermented by these 5 strains, in which the strain M-2 exerted the best effect (P < 0.05). The strain M-2 was identified as Lichtheimia ramosa and used as the fermentation strain to optimize the fermentation parameters by a single factor analysis and orthogonal experimental design. The optimum condition was as follows: inoculum size 3%, water content 60%, time 144 h, and temperature 32 °C. Under this condition, the removal rate of cyanogenic glucosides reached 89%, and crude protein increment reached 44%. These results provided a theoretical basis for the removal of cyanogenic glucosides in flaxseed and the comprehensive utilization of flaxseed cake. KeAi Publishing 2019-03 2018-09-22 /pmc/articles/PMC6407096/ /pubmed/30899817 http://dx.doi.org/10.1016/j.aninu.2018.05.010 Text en © 2019 Chinese Association of Animal Science and Veterinary Medicine. Production and hosting by Elsevier B.V. on behalf of KeAi Communications Co., Ltd. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Feed Security
Li, Chenhui
Wei, Junshu
Jing, Yaping
Teng, Baoxia
Yang, Pingrong
Chen, Xinjun
Huang, Haiying
Zhao, Tang
Che, Tuanjie
Zhang, Chunjiang
A β-glucosidase-producing M-2 strain: Isolation from cow dung and fermentation parameter optimization for flaxseed cake
title A β-glucosidase-producing M-2 strain: Isolation from cow dung and fermentation parameter optimization for flaxseed cake
title_full A β-glucosidase-producing M-2 strain: Isolation from cow dung and fermentation parameter optimization for flaxseed cake
title_fullStr A β-glucosidase-producing M-2 strain: Isolation from cow dung and fermentation parameter optimization for flaxseed cake
title_full_unstemmed A β-glucosidase-producing M-2 strain: Isolation from cow dung and fermentation parameter optimization for flaxseed cake
title_short A β-glucosidase-producing M-2 strain: Isolation from cow dung and fermentation parameter optimization for flaxseed cake
title_sort β-glucosidase-producing m-2 strain: isolation from cow dung and fermentation parameter optimization for flaxseed cake
topic Feed Security
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6407096/
https://www.ncbi.nlm.nih.gov/pubmed/30899817
http://dx.doi.org/10.1016/j.aninu.2018.05.010
work_keys_str_mv AT lichenhui abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT weijunshu abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT jingyaping abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT tengbaoxia abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT yangpingrong abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT chenxinjun abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT huanghaiying abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT zhaotang abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT chetuanjie abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT zhangchunjiang abglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT lichenhui bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT weijunshu bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT jingyaping bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT tengbaoxia bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT yangpingrong bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT chenxinjun bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT huanghaiying bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT zhaotang bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT chetuanjie bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake
AT zhangchunjiang bglucosidaseproducingm2strainisolationfromcowdungandfermentationparameteroptimizationforflaxseedcake