Bacterial Diversity of a Microbial Mat from Hot Spring at Wartawan Beach, Lampung and Its Potential as a Source of Hydrogenases

Biohydrogen produced from thermophilic hydrogenases is an ideal and clean energy sources. As the biggest tectonic area in the world, Indonesia is potential for thermophile isolation. The aims of this study were to analyze the bacterial diversity of a microbial mat from hot spring at Wartawan beach,...

Full description

Bibliographic Details
Main Authors: Gintung Patantis, Ekowati Chasanah, Yusro Nuri Fawzya, He Pe Qing, Zhang Xue Lei
Format: Article
Language:English
Published: Kementerian Kelautan dan Perikanan 2018-05-01
Series:Squalen
Subjects:
Online Access:http://bbp4b.litbang.kkp.go.id/squalen-bulletin/index.php/squalen/article/view/323
_version_ 1828825199995256832
author Gintung Patantis
Ekowati Chasanah
Yusro Nuri Fawzya
He Pe Qing
Zhang Xue Lei
author_facet Gintung Patantis
Ekowati Chasanah
Yusro Nuri Fawzya
He Pe Qing
Zhang Xue Lei
author_sort Gintung Patantis
collection DOAJ
description Biohydrogen produced from thermophilic hydrogenases is an ideal and clean energy sources. As the biggest tectonic area in the world, Indonesia is potential for thermophile isolation. The aims of this study were to analyze the bacterial diversity of a microbial mat from hot spring at Wartawan beach, Lampung and to analyze the potency of microbial mat for hydrogenases, using clone library method. The diversity of 16S rRNA showed that the microbial mat sample contained 9 phyla of bacteria, and dominated by Cyanobacteria and Proteobacteria. These phyla indicate that the bacterial community of the microbial mat consisted of phototrophic and heterotrophic groups. In addition, a microbial mat of Wartawan beach environment might be influenced by marine environment and hydrothermal vent which was indicated by detection of both associated bacteria. The diversity of hydrogenase genes using NiFe hydrogenase (NiFe) and FeFe hydrogenase (FeFe) genes showed that Cyanobacteria was specifically related to NiFe, while Firmicutes was associated with FeFe. Proteobacteria and Bacteroidetes, however, were detected for both genes. The detected hydrogenase genes indicate that the microbial mat from hot spring at Wartawan beach is a promising source for hydrogenases isolation and further applications for biohydrogen production as a renewable energy.
first_indexed 2024-12-12T14:12:51Z
format Article
id doaj.art-2ed820fe6b274d2c88f055741029b0f7
institution Directory Open Access Journal
issn 2089-5690
2406-9272
language English
last_indexed 2024-12-12T14:12:51Z
publishDate 2018-05-01
publisher Kementerian Kelautan dan Perikanan
record_format Article
series Squalen
spelling doaj.art-2ed820fe6b274d2c88f055741029b0f72022-12-22T00:22:01ZengKementerian Kelautan dan PerikananSqualen2089-56902406-92722018-05-01131233310.15578/squalen.v13i1.323215Bacterial Diversity of a Microbial Mat from Hot Spring at Wartawan Beach, Lampung and Its Potential as a Source of HydrogenasesGintung Patantis0Ekowati Chasanah1Yusro Nuri FawzyaHe Pe QingZhang Xue LeiResearch Center for Marine and Fisheries Product Processing and BiotechnologyResearch Center for Marine and Fisheries Product Processing and BiotechnologyBiohydrogen produced from thermophilic hydrogenases is an ideal and clean energy sources. As the biggest tectonic area in the world, Indonesia is potential for thermophile isolation. The aims of this study were to analyze the bacterial diversity of a microbial mat from hot spring at Wartawan beach, Lampung and to analyze the potency of microbial mat for hydrogenases, using clone library method. The diversity of 16S rRNA showed that the microbial mat sample contained 9 phyla of bacteria, and dominated by Cyanobacteria and Proteobacteria. These phyla indicate that the bacterial community of the microbial mat consisted of phototrophic and heterotrophic groups. In addition, a microbial mat of Wartawan beach environment might be influenced by marine environment and hydrothermal vent which was indicated by detection of both associated bacteria. The diversity of hydrogenase genes using NiFe hydrogenase (NiFe) and FeFe hydrogenase (FeFe) genes showed that Cyanobacteria was specifically related to NiFe, while Firmicutes was associated with FeFe. Proteobacteria and Bacteroidetes, however, were detected for both genes. The detected hydrogenase genes indicate that the microbial mat from hot spring at Wartawan beach is a promising source for hydrogenases isolation and further applications for biohydrogen production as a renewable energy.http://bbp4b.litbang.kkp.go.id/squalen-bulletin/index.php/squalen/article/view/323diversity, bacteria, hydrogenases, microbial mat, hot spring Wartawan beach
spellingShingle Gintung Patantis
Ekowati Chasanah
Yusro Nuri Fawzya
He Pe Qing
Zhang Xue Lei
Bacterial Diversity of a Microbial Mat from Hot Spring at Wartawan Beach, Lampung and Its Potential as a Source of Hydrogenases
Squalen
diversity, bacteria, hydrogenases, microbial mat, hot spring Wartawan beach
title Bacterial Diversity of a Microbial Mat from Hot Spring at Wartawan Beach, Lampung and Its Potential as a Source of Hydrogenases
title_full Bacterial Diversity of a Microbial Mat from Hot Spring at Wartawan Beach, Lampung and Its Potential as a Source of Hydrogenases
title_fullStr Bacterial Diversity of a Microbial Mat from Hot Spring at Wartawan Beach, Lampung and Its Potential as a Source of Hydrogenases
title_full_unstemmed Bacterial Diversity of a Microbial Mat from Hot Spring at Wartawan Beach, Lampung and Its Potential as a Source of Hydrogenases
title_short Bacterial Diversity of a Microbial Mat from Hot Spring at Wartawan Beach, Lampung and Its Potential as a Source of Hydrogenases
title_sort bacterial diversity of a microbial mat from hot spring at wartawan beach lampung and its potential as a source of hydrogenases
topic diversity, bacteria, hydrogenases, microbial mat, hot spring Wartawan beach
url http://bbp4b.litbang.kkp.go.id/squalen-bulletin/index.php/squalen/article/view/323
work_keys_str_mv AT gintungpatantis bacterialdiversityofamicrobialmatfromhotspringatwartawanbeachlampunganditspotentialasasourceofhydrogenases
AT ekowatichasanah bacterialdiversityofamicrobialmatfromhotspringatwartawanbeachlampunganditspotentialasasourceofhydrogenases
AT yusronurifawzya bacterialdiversityofamicrobialmatfromhotspringatwartawanbeachlampunganditspotentialasasourceofhydrogenases
AT hepeqing bacterialdiversityofamicrobialmatfromhotspringatwartawanbeachlampunganditspotentialasasourceofhydrogenases
AT zhangxuelei bacterialdiversityofamicrobialmatfromhotspringatwartawanbeachlampunganditspotentialasasourceofhydrogenases