Lignocellulosic Enzymes Characterization and Scanning Electron Microscope Analysis on Rice Bran Surface Structure Changes

Rice bran was one of livestock food ingredients wit h high crude fibers contents, including cellulose and hemicelluloses. Lignocellulosic enzymes such as xylanase and cellulase functioned in degrading cellulose and hemicelluloses. The objectives of this study were to qu...

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Main Authors: Lamid, Mirni, Al-Arif, M. Anam, Puspaningsih, Ni Nyoman Tri, Kurniati, Anita, Asmarani, One, Warsito, Sunaryo Hadi
Format: Article PeerReviewed
Language:English
English
Published: www.jocpr.com 2015
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Online Access:http://repository.unair.ac.id/63554/3/Peereview%20018.pdf
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spelling id-langga.635542017-10-16T15:53:27Z http://repository.unair.ac.id/63554/ Lignocellulosic Enzymes Characterization and Scanning Electron Microscope Analysis on Rice Bran Surface Structure Changes Lamid, Mirni Al-Arif, M. Anam Puspaningsih, Ni Nyoman Tri Kurniati, Anita Asmarani, One Warsito, Sunaryo Hadi SF600-1100 Veterinary medicine Rice bran was one of livestock food ingredients wit h high crude fibers contents, including cellulose and hemicelluloses. Lignocellulosic enzymes such as xylanase and cellulase functioned in degrading cellulose and hemicelluloses. The objectives of this study were to qualitatively screen Actinobacillus sp. (G6) and Bacillus pumilus (G7) which produced xylanase and cellulase, determining molecular weight of xylanase and cellulase enz ymes using SDS-PAGE and Zymogram, and analyzing structure changes on rice bran surface after Scanning Electron Microscope treatments using xylanase and cellulase enzymes. The findings of this study indicated xylanolitic indexes for G6 and G7 were 2 and 1.7 respectively while cel lulosic index for G6 and G7 were 1.6 and 2. Enzymesproduced by Actinobacillus sp. (G6) had molecular weight 25- 35 kDa and above 100 kDa while enzymes produced by Bacillus pumilus (G7) had molecular weight 25 kDa up to above 100 kDa. The result of rice bran SEM analysis indicated profile change of the samples before and after enzymes treatment www.jocpr.com 2015 Article PeerReviewed text en http://repository.unair.ac.id/63554/3/Peereview%20018.pdf text en http://repository.unair.ac.id/63554/2/lignocellulosic-enzymes-characterization-and-scanning-electron-microscope-analysis-on-rice-bran-surface-structure-change.pdf Lamid, Mirni and Al-Arif, M. Anam and Puspaningsih, Ni Nyoman Tri and Kurniati, Anita and Asmarani, One and Warsito, Sunaryo Hadi (2015) Lignocellulosic Enzymes Characterization and Scanning Electron Microscope Analysis on Rice Bran Surface Structure Changes. Journal of Chemical and Pharmaceutical Research, 7 (1). pp. 124-130. ISSN 0975-7384 http://www.jocpr.com/articles/lignocellulosic-enzymes-characterization-and-scanning-electron-microscope-analysis-on-rice-bran-surface-structure-change.pdf
institution Universitas Airlangga
building Universitas Airlangga Library
country Indonesia
collection UNAIR Repository
language English
English
topic SF600-1100 Veterinary medicine
spellingShingle SF600-1100 Veterinary medicine
Lamid, Mirni
Al-Arif, M. Anam
Puspaningsih, Ni Nyoman Tri
Kurniati, Anita
Asmarani, One
Warsito, Sunaryo Hadi
Lignocellulosic Enzymes Characterization and Scanning Electron Microscope Analysis on Rice Bran Surface Structure Changes
description Rice bran was one of livestock food ingredients wit h high crude fibers contents, including cellulose and hemicelluloses. Lignocellulosic enzymes such as xylanase and cellulase functioned in degrading cellulose and hemicelluloses. The objectives of this study were to qualitatively screen Actinobacillus sp. (G6) and Bacillus pumilus (G7) which produced xylanase and cellulase, determining molecular weight of xylanase and cellulase enz ymes using SDS-PAGE and Zymogram, and analyzing structure changes on rice bran surface after Scanning Electron Microscope treatments using xylanase and cellulase enzymes. The findings of this study indicated xylanolitic indexes for G6 and G7 were 2 and 1.7 respectively while cel lulosic index for G6 and G7 were 1.6 and 2. Enzymesproduced by Actinobacillus sp. (G6) had molecular weight 25- 35 kDa and above 100 kDa while enzymes produced by Bacillus pumilus (G7) had molecular weight 25 kDa up to above 100 kDa. The result of rice bran SEM analysis indicated profile change of the samples before and after enzymes treatment
format Article
PeerReviewed
author Lamid, Mirni
Al-Arif, M. Anam
Puspaningsih, Ni Nyoman Tri
Kurniati, Anita
Asmarani, One
Warsito, Sunaryo Hadi
author_facet Lamid, Mirni
Al-Arif, M. Anam
Puspaningsih, Ni Nyoman Tri
Kurniati, Anita
Asmarani, One
Warsito, Sunaryo Hadi
author_sort Lamid, Mirni
title Lignocellulosic Enzymes Characterization and Scanning Electron Microscope Analysis on Rice Bran Surface Structure Changes
title_short Lignocellulosic Enzymes Characterization and Scanning Electron Microscope Analysis on Rice Bran Surface Structure Changes
title_full Lignocellulosic Enzymes Characterization and Scanning Electron Microscope Analysis on Rice Bran Surface Structure Changes
title_fullStr Lignocellulosic Enzymes Characterization and Scanning Electron Microscope Analysis on Rice Bran Surface Structure Changes
title_full_unstemmed Lignocellulosic Enzymes Characterization and Scanning Electron Microscope Analysis on Rice Bran Surface Structure Changes
title_sort lignocellulosic enzymes characterization and scanning electron microscope analysis on rice bran surface structure changes
publisher www.jocpr.com
publishDate 2015
url http://repository.unair.ac.id/63554/3/Peereview%20018.pdf
http://repository.unair.ac.id/63554/2/lignocellulosic-enzymes-characterization-and-scanning-electron-microscope-analysis-on-rice-bran-surface-structure-change.pdf
http://repository.unair.ac.id/63554/
http://www.jocpr.com/articles/lignocellulosic-enzymes-characterization-and-scanning-electron-microscope-analysis-on-rice-bran-surface-structure-change.pdf
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