Analysis of whole cell protein profiles by SDS-PAGE to identify indigenous cellulose-producer acetic acid bacteria
This study was carried out to analyze the suitability of the identification of four indigenous cellulose-producing acetic acid bacterial isolates (ANG29, KRE65, ANG32 and SAL53) based on the analysis of whole cellular protein profiles against identification based on phenotypic traits. Whole cellular...
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Universitas Gadjah Mada, Yogyakarta
2016-12-01
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doaj-9b6f5b04c1b242da83306ded1c67754a2020-11-24T21:59:21ZengUniversitas Gadjah Mada, YogyakartaIndonesian Journal of Biotechnology0853-86542089-22412016-12-01212869210.22146/ijbiotech.2716617410Analysis of whole cell protein profiles by SDS-PAGE to identify indigenous cellulose-producer acetic acid bacteriaSarkono Sarkono0Soekarti Moeljopawiro1Bambang Setiaji2Langkah Sembiring3Department of Biology, Faculty of Mathematics and Natural Sciences, Mataram University, MataramFaculty of Biology, Universitas Gadjah Mada, Jalan Teknika Selatan, Sekip Utara, Yogyakarta 55281Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Gadjah Mada, YogyakartaFaculty of Biology, Universitas Gadjah Mada, Jalan Teknika Selatan, Sekip Utara, Yogyakarta 55281This study was carried out to analyze the suitability of the identification of four indigenous cellulose-producing acetic acid bacterial isolates (ANG29, KRE65, ANG32 and SAL53) based on the analysis of whole cellular protein profiles against identification based on phenotypic traits. Whole cellular protein profiles were determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) method. The whole cellular protein profiles obtained from sample isolates, were compared with reference isolates for species identification. The results showed that based on visual observations can be determined as much as 12 bands of protein with a molecular weight of 19,099 KDa up to 132.182 KDa. Based on the analysis of protein bands were detected visually, fourth indigenous cellulose- producing acetic acid bacterial isolates in the study had a higher similarity profile to the reference strain Gluconacetobacter xylinus BTCC 769 compared with other reference strains namely G. hansenii NBRC 14820T. This condition is consistent with the results of the identification of fourth cellulose producing acetic acid bacterial isolates based on phenotypic traits. Thus, the whole cellular protein profiles by SDS-PAGE technique can be used as a one of method to identification of cellulose producing acetic acid bacterial isolates.https://jurnal.ugm.ac.id/ijbiotech/article/view/27166acetic acid bacteriabacterial celluloseidentificationSDS-PAGEwhole cellular protein |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sarkono Sarkono Soekarti Moeljopawiro Bambang Setiaji Langkah Sembiring |
spellingShingle |
Sarkono Sarkono Soekarti Moeljopawiro Bambang Setiaji Langkah Sembiring Analysis of whole cell protein profiles by SDS-PAGE to identify indigenous cellulose-producer acetic acid bacteria Indonesian Journal of Biotechnology acetic acid bacteria bacterial cellulose identification SDS-PAGE whole cellular protein |
author_facet |
Sarkono Sarkono Soekarti Moeljopawiro Bambang Setiaji Langkah Sembiring |
author_sort |
Sarkono Sarkono |
title |
Analysis of whole cell protein profiles by SDS-PAGE to identify indigenous cellulose-producer acetic acid bacteria |
title_short |
Analysis of whole cell protein profiles by SDS-PAGE to identify indigenous cellulose-producer acetic acid bacteria |
title_full |
Analysis of whole cell protein profiles by SDS-PAGE to identify indigenous cellulose-producer acetic acid bacteria |
title_fullStr |
Analysis of whole cell protein profiles by SDS-PAGE to identify indigenous cellulose-producer acetic acid bacteria |
title_full_unstemmed |
Analysis of whole cell protein profiles by SDS-PAGE to identify indigenous cellulose-producer acetic acid bacteria |
title_sort |
analysis of whole cell protein profiles by sds-page to identify indigenous cellulose-producer acetic acid bacteria |
publisher |
Universitas Gadjah Mada, Yogyakarta |
series |
Indonesian Journal of Biotechnology |
issn |
0853-8654 2089-2241 |
publishDate |
2016-12-01 |
description |
This study was carried out to analyze the suitability of the identification of four indigenous cellulose-producing acetic acid bacterial isolates (ANG29, KRE65, ANG32 and SAL53) based on the analysis of whole cellular protein profiles against identification based on phenotypic traits. Whole cellular protein profiles were determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) method. The whole cellular protein profiles obtained from sample isolates, were compared with reference isolates for species identification. The results showed that based on visual observations can be determined as much as 12 bands of protein with a molecular weight of 19,099 KDa up to 132.182 KDa. Based on the analysis of protein bands were detected visually, fourth indigenous cellulose- producing acetic acid bacterial isolates in the study had a higher similarity profile to the reference strain Gluconacetobacter xylinus BTCC 769 compared with other reference strains namely G. hansenii NBRC 14820T. This condition is consistent with the results of the identification of fourth cellulose producing acetic acid bacterial isolates based on phenotypic traits. Thus, the whole cellular protein profiles by SDS-PAGE technique can be used as a one of method to identification of cellulose producing acetic acid bacterial isolates. |
topic |
acetic acid bacteria bacterial cellulose identification SDS-PAGE whole cellular protein |
url |
https://jurnal.ugm.ac.id/ijbiotech/article/view/27166 |
work_keys_str_mv |
AT sarkonosarkono analysisofwholecellproteinprofilesbysdspagetoidentifyindigenouscelluloseproduceraceticacidbacteria AT soekartimoeljopawiro analysisofwholecellproteinprofilesbysdspagetoidentifyindigenouscelluloseproduceraceticacidbacteria AT bambangsetiaji analysisofwholecellproteinprofilesbysdspagetoidentifyindigenouscelluloseproduceraceticacidbacteria AT langkahsembiring analysisofwholecellproteinprofilesbysdspagetoidentifyindigenouscelluloseproduceraceticacidbacteria |
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1725847763129729024 |