Cultivation-success of rare soil bacteria is not influenced by incubation time and growth medium.

Rare bacterial species have recently attracted interest due to their many potential beneficial functions. However, only little is known about their cultivability. In this study we test the hypotheses that the use of flow cell-sorting for cultivation results in a high proportion of rare soil bacteria...

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Main Authors: Viola Kurm, Wim H van der Putten, W H Gera Hol
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0210073
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spelling doaj-f5b33dee55394a528250d398faaf72b32021-03-03T20:58:41ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01141e021007310.1371/journal.pone.0210073Cultivation-success of rare soil bacteria is not influenced by incubation time and growth medium.Viola KurmWim H van der PuttenW H Gera HolRare bacterial species have recently attracted interest due to their many potential beneficial functions. However, only little is known about their cultivability. In this study we test the hypotheses that the use of flow cell-sorting for cultivation results in a high proportion of rare soil bacterial isolates relative to bacterial taxa that are abundant in soil. Moreover, we investigate whether different oligotrophic cultivation media and a prolonged incubation time increase the number of cultivated rare species. In a cultivation study we used flow cell sorting to select for small cells and to separate single cells, and grew bacteria on different oligotrophic media with prolonged incubation times. The abundance of the isolates in the field was assessed by comparing them to a 454-sequencing dataset from the same soil. Consequentially, all bacterial isolates were classified as either rare (<0.01% relative abundance) or abundant (>0.01% relative abundance) in the field soil. We found more bacterial taxa among the isolates that were abundant in soil than would be expected by the proportion of abundant species in the field. Neither incubation time nor growth medium had an influence on the recovery of rare species. However, we did find differences in time until visible growth on the plate between different phylogenetic classes of the isolates. These results indicate that rare cultivable species are active and not more likely to be dormant than abundant species, as has been suggested as a reason for their rarity. Moreover, future studies should be aware of the influence incubation time might have on the phylogenetic composition of the isolate collection.https://doi.org/10.1371/journal.pone.0210073
collection DOAJ
language English
format Article
sources DOAJ
author Viola Kurm
Wim H van der Putten
W H Gera Hol
spellingShingle Viola Kurm
Wim H van der Putten
W H Gera Hol
Cultivation-success of rare soil bacteria is not influenced by incubation time and growth medium.
PLoS ONE
author_facet Viola Kurm
Wim H van der Putten
W H Gera Hol
author_sort Viola Kurm
title Cultivation-success of rare soil bacteria is not influenced by incubation time and growth medium.
title_short Cultivation-success of rare soil bacteria is not influenced by incubation time and growth medium.
title_full Cultivation-success of rare soil bacteria is not influenced by incubation time and growth medium.
title_fullStr Cultivation-success of rare soil bacteria is not influenced by incubation time and growth medium.
title_full_unstemmed Cultivation-success of rare soil bacteria is not influenced by incubation time and growth medium.
title_sort cultivation-success of rare soil bacteria is not influenced by incubation time and growth medium.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description Rare bacterial species have recently attracted interest due to their many potential beneficial functions. However, only little is known about their cultivability. In this study we test the hypotheses that the use of flow cell-sorting for cultivation results in a high proportion of rare soil bacterial isolates relative to bacterial taxa that are abundant in soil. Moreover, we investigate whether different oligotrophic cultivation media and a prolonged incubation time increase the number of cultivated rare species. In a cultivation study we used flow cell sorting to select for small cells and to separate single cells, and grew bacteria on different oligotrophic media with prolonged incubation times. The abundance of the isolates in the field was assessed by comparing them to a 454-sequencing dataset from the same soil. Consequentially, all bacterial isolates were classified as either rare (<0.01% relative abundance) or abundant (>0.01% relative abundance) in the field soil. We found more bacterial taxa among the isolates that were abundant in soil than would be expected by the proportion of abundant species in the field. Neither incubation time nor growth medium had an influence on the recovery of rare species. However, we did find differences in time until visible growth on the plate between different phylogenetic classes of the isolates. These results indicate that rare cultivable species are active and not more likely to be dormant than abundant species, as has been suggested as a reason for their rarity. Moreover, future studies should be aware of the influence incubation time might have on the phylogenetic composition of the isolate collection.
url https://doi.org/10.1371/journal.pone.0210073
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AT whgerahol cultivationsuccessofraresoilbacteriaisnotinfluencedbyincubationtimeandgrowthmedium
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