Identifying Hidden Viable Bacterial Taxa in Tropical Forest Soils Using Amplicon Sequencing of Enrichment Cultures
This study aims to estimate the proportion and diversity of soil bacteria derived from eDNA-based and culture-based methods. Specifically, we used Illumina Miseq to sequence and characterize the bacterial communities from (i) DNA extracted directly from forest soil and (ii) DNA extracted from a mixt...
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doaj-d6cf7a64b84e41799fb4c2253c7587a42021-07-23T13:30:59ZengMDPI AGBiology2079-77372021-06-011056956910.3390/biology10070569Identifying Hidden Viable Bacterial Taxa in Tropical Forest Soils Using Amplicon Sequencing of Enrichment CulturesChakriya Sansupa0Sara Fareed Mohamed Wahdan1Terd Disayathanoowat2Witoon Purahong3Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200, ThailandDepartment of Soil Ecology, UFZ-Helmholtz Centre for Environmental Research, 06120 Halle (Saale), GermanyDepartment of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200, ThailandDepartment of Soil Ecology, UFZ-Helmholtz Centre for Environmental Research, 06120 Halle (Saale), GermanyThis study aims to estimate the proportion and diversity of soil bacteria derived from eDNA-based and culture-based methods. Specifically, we used Illumina Miseq to sequence and characterize the bacterial communities from (i) DNA extracted directly from forest soil and (ii) DNA extracted from a mixture of bacterial colonies obtained by enrichment cultures on agar plates of the same forest soil samples. The amplicon sequencing of enrichment cultures allowed us to rapidly screen a culturable community in an environmental sample. In comparison with an eDNA community (based on a 97% sequence similarity threshold), the fact that enrichment cultures could capture both rare and abundant bacterial taxa in forest soil samples was demonstrated. Enrichment culture and eDNA communities shared 2% of OTUs detected in total community, whereas 88% of enrichment cultures community (15% of total community) could not be detected by eDNA. The enrichment culture-based methods observed 17% of the bacteria in total community. FAPROTAX functional prediction showed that the rare and unique taxa, which were detected with the enrichment cultures, have potential to perform important functions in soil systems. We suggest that enrichment culture-based amplicon sequencing could be a beneficial approach to evaluate a cultured bacterial community. Combining this approach together with the eDNA method could provide more comprehensive information of a bacterial community. We expected that more unique cultured taxa could be detected if further studies used both selective and non-selective culture media to enrich bacteria at the first step.https://www.mdpi.com/2079-7737/10/7/569eDNAenrichment cultureamplicon sequencingsoil bacteriabacterial communityculture-dependent |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chakriya Sansupa Sara Fareed Mohamed Wahdan Terd Disayathanoowat Witoon Purahong |
spellingShingle |
Chakriya Sansupa Sara Fareed Mohamed Wahdan Terd Disayathanoowat Witoon Purahong Identifying Hidden Viable Bacterial Taxa in Tropical Forest Soils Using Amplicon Sequencing of Enrichment Cultures Biology eDNA enrichment culture amplicon sequencing soil bacteria bacterial community culture-dependent |
author_facet |
Chakriya Sansupa Sara Fareed Mohamed Wahdan Terd Disayathanoowat Witoon Purahong |
author_sort |
Chakriya Sansupa |
title |
Identifying Hidden Viable Bacterial Taxa in Tropical Forest Soils Using Amplicon Sequencing of Enrichment Cultures |
title_short |
Identifying Hidden Viable Bacterial Taxa in Tropical Forest Soils Using Amplicon Sequencing of Enrichment Cultures |
title_full |
Identifying Hidden Viable Bacterial Taxa in Tropical Forest Soils Using Amplicon Sequencing of Enrichment Cultures |
title_fullStr |
Identifying Hidden Viable Bacterial Taxa in Tropical Forest Soils Using Amplicon Sequencing of Enrichment Cultures |
title_full_unstemmed |
Identifying Hidden Viable Bacterial Taxa in Tropical Forest Soils Using Amplicon Sequencing of Enrichment Cultures |
title_sort |
identifying hidden viable bacterial taxa in tropical forest soils using amplicon sequencing of enrichment cultures |
publisher |
MDPI AG |
series |
Biology |
issn |
2079-7737 |
publishDate |
2021-06-01 |
description |
This study aims to estimate the proportion and diversity of soil bacteria derived from eDNA-based and culture-based methods. Specifically, we used Illumina Miseq to sequence and characterize the bacterial communities from (i) DNA extracted directly from forest soil and (ii) DNA extracted from a mixture of bacterial colonies obtained by enrichment cultures on agar plates of the same forest soil samples. The amplicon sequencing of enrichment cultures allowed us to rapidly screen a culturable community in an environmental sample. In comparison with an eDNA community (based on a 97% sequence similarity threshold), the fact that enrichment cultures could capture both rare and abundant bacterial taxa in forest soil samples was demonstrated. Enrichment culture and eDNA communities shared 2% of OTUs detected in total community, whereas 88% of enrichment cultures community (15% of total community) could not be detected by eDNA. The enrichment culture-based methods observed 17% of the bacteria in total community. FAPROTAX functional prediction showed that the rare and unique taxa, which were detected with the enrichment cultures, have potential to perform important functions in soil systems. We suggest that enrichment culture-based amplicon sequencing could be a beneficial approach to evaluate a cultured bacterial community. Combining this approach together with the eDNA method could provide more comprehensive information of a bacterial community. We expected that more unique cultured taxa could be detected if further studies used both selective and non-selective culture media to enrich bacteria at the first step. |
topic |
eDNA enrichment culture amplicon sequencing soil bacteria bacterial community culture-dependent |
url |
https://www.mdpi.com/2079-7737/10/7/569 |
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