Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.

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Pulp and mucilage constitute the most abundant by-products of the processing of coffee and inadequate handling produces high-rates of pollution. Considering that in nature there is a large variety of cellulolytic microorganisms which can intervene in the degradation of coffee pulp, the inclusion of...

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Autores: Arteaga-Cuba, M.N., Dilas-Jiménez, J.O., Díaz, N.V., Cernaqué Miranda, O.C., Tafur-Santillan, S.M., Olivera Garcia, J.E.O., Mugruza-Vassallo, C.A.
Formato: artículo
Fecha de Publicación:2021
Institución:Universidad Nacional de Cajamarca
Repositorio:UNC-Institucional
Lenguaje:inglés
OAI Identifier:oai:repositorio.unc.edu.pe:20.500.14074/9653
Enlace del recurso:http://hdl.handle.net/20.500.14074/9653
https://doi.org/10.25186/.v16i.1810
Nivel de acceso:acceso abierto
Materia:Carboxymethylcellulose (CMC)
Cellulose
Coffee pulp
Degradation
Meters above sea level (masl)
Microbial consortium
https://purl.org/pe-repo/ocde/ford#2.09.02
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spelling Arteaga-Cuba, M.N.Dilas-Jiménez, J.O.Díaz, N.V.Cernaqué Miranda, O.C.Tafur-Santillan, S.M.Olivera Garcia, J.E.O.Mugruza-Vassallo, C.A.2026-02-12T15:50:05Z2026-02-12T15:50:05Z2021http://hdl.handle.net/20.500.14074/9653https://doi.org/10.25186/.v16i.1810Pulp and mucilage constitute the most abundant by-products of the processing of coffee and inadequate handling produces high-rates of pollution. Considering that in nature there is a large variety of cellulolytic microorganisms which can intervene in the degradation of coffee pulp, the inclusion of a native microbial cellulolytic consortium was assessed. The sample for isolation consisted of coffee pulp and soil from a humid forest at more than 2,000 masl. Nutrient agar was used as a means of isolation for bacteria, and malt agar for fungi, supplemented with 50% soil extract and 1% carboxylmethylb-cellulose. This achieved the isolation of 118 strains of bacteria and 114 of fungi. Cellulolytic activity was established using the filter paper test, assessing and selecting only those that presented higher glucose production, among them 12 strains of fungi and 11 strains of bacteria. To obtain the microbial con-sortium, randomized blends were performed for both fungi and bacteria, again assessing the production of glucose. The bacterial consortium was made up of Ochrobactrum pseudo grignonense, Paenibacillus lauruscon and Bacillus xiamenensis and the fungal consortium by Fusarium sp., Penicillum sp., Cylindrocarpon sp. The optimal treatment achieved a complete degradation of the pulp in 28 days, that would contribute to the recovery and conservation of the coffee ecosystem. The main interpretation was that a wet environment at more than 2,000 masl is still suitable for coffee composting but different bacterial and fungi consortia were found to support other recent work done with one type of consortium.Este trabajo fue financiado por RCO-229-2017-UNTELS.Este trabajo fue financiado por RCO-242-2017-UNTELS.Este trabajo fue financiado por Universidad Nacional de Ingenierias, UNI.application/pdfengEditora UFLA.https://www.scopus.com/pages/publications/85111634851urn:issn:18096875Coffee Science 2021; 16: e161810info:eu-repo/semantics/openAccesshttp://creativecommons.org/licenses/by/4.0/Carboxymethylcellulose (CMC)CelluloseCoffee pulpDegradationMeters above sea level (masl)Microbial consortiumhttps://purl.org/pe-repo/ocde/ford#2.09.02Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionreponame:UNC-Institucionalinstname:Universidad Nacional de Cajamarcainstacron:UNCORIGINAL1810-2021.pdf1810-2021.pdfapplication/pdf1378408http://repositorio.unc.edu.pe/bitstream/20.500.14074/9653/1/1810-2021.pdf55abf6738b124df2ef68548239b1da46MD5120.500.14074/9653oai:repositorio.unc.edu.pe:20.500.14074/96532026-02-26 12:12:58.778Universidad Nacional de Cajamarcarepositorio@unc.edu.pe
dc.title.es_PE.fl_str_mv Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.
title Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.
spellingShingle Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.
Arteaga-Cuba, M.N.
Carboxymethylcellulose (CMC)
Cellulose
Coffee pulp
Degradation
Meters above sea level (masl)
Microbial consortium
https://purl.org/pe-repo/ocde/ford#2.09.02
title_short Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.
title_full Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.
title_fullStr Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.
title_full_unstemmed Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.
title_sort Isolation and identification of a native microbial consortium for the coffee pulp degradation above 2000 masl.
author Arteaga-Cuba, M.N.
author_facet Arteaga-Cuba, M.N.
Dilas-Jiménez, J.O.
Díaz, N.V.
Cernaqué Miranda, O.C.
Tafur-Santillan, S.M.
Olivera Garcia, J.E.O.
Mugruza-Vassallo, C.A.
author_role author
author2 Dilas-Jiménez, J.O.
Díaz, N.V.
Cernaqué Miranda, O.C.
Tafur-Santillan, S.M.
Olivera Garcia, J.E.O.
Mugruza-Vassallo, C.A.
author2_role author
author
author
author
author
author
dc.contributor.author.fl_str_mv Arteaga-Cuba, M.N.
Dilas-Jiménez, J.O.
Díaz, N.V.
Cernaqué Miranda, O.C.
Tafur-Santillan, S.M.
Olivera Garcia, J.E.O.
Mugruza-Vassallo, C.A.
dc.subject.es_PE.fl_str_mv Carboxymethylcellulose (CMC)
Cellulose
Coffee pulp
Degradation
Meters above sea level (masl)
Microbial consortium
topic Carboxymethylcellulose (CMC)
Cellulose
Coffee pulp
Degradation
Meters above sea level (masl)
Microbial consortium
https://purl.org/pe-repo/ocde/ford#2.09.02
dc.subject.ocde.es_PE.fl_str_mv https://purl.org/pe-repo/ocde/ford#2.09.02
description Pulp and mucilage constitute the most abundant by-products of the processing of coffee and inadequate handling produces high-rates of pollution. Considering that in nature there is a large variety of cellulolytic microorganisms which can intervene in the degradation of coffee pulp, the inclusion of a native microbial cellulolytic consortium was assessed. The sample for isolation consisted of coffee pulp and soil from a humid forest at more than 2,000 masl. Nutrient agar was used as a means of isolation for bacteria, and malt agar for fungi, supplemented with 50% soil extract and 1% carboxylmethylb-cellulose. This achieved the isolation of 118 strains of bacteria and 114 of fungi. Cellulolytic activity was established using the filter paper test, assessing and selecting only those that presented higher glucose production, among them 12 strains of fungi and 11 strains of bacteria. To obtain the microbial con-sortium, randomized blends were performed for both fungi and bacteria, again assessing the production of glucose. The bacterial consortium was made up of Ochrobactrum pseudo grignonense, Paenibacillus lauruscon and Bacillus xiamenensis and the fungal consortium by Fusarium sp., Penicillum sp., Cylindrocarpon sp. The optimal treatment achieved a complete degradation of the pulp in 28 days, that would contribute to the recovery and conservation of the coffee ecosystem. The main interpretation was that a wet environment at more than 2,000 masl is still suitable for coffee composting but different bacterial and fungi consortia were found to support other recent work done with one type of consortium.
publishDate 2021
dc.date.accessioned.none.fl_str_mv 2026-02-12T15:50:05Z
dc.date.available.none.fl_str_mv 2026-02-12T15:50:05Z
dc.date.issued.fl_str_mv 2021
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url http://hdl.handle.net/20.500.14074/9653
https://doi.org/10.25186/.v16i.1810
dc.language.iso.es_PE.fl_str_mv eng
language eng
dc.relation.ispartof.es_PE.fl_str_mv https://www.scopus.com/pages/publications/85111634851
urn:issn:18096875
Coffee Science 2021; 16: e161810
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