Isolation and molecular identification of endophytic diazotrophs from seeds and stems of three cereal crops.

Ten strains of endophytic diazotroph were isolated and identified from the plants collected from three different agricultural crop species, wheat, rice and maize, using the nitrogen-free selective isolation conditions. The nitrogen-fixing ability of endophytic diazotroph was verified by the nifH-PCR...

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Main Authors: Huawei Liu, Lei Zhang, Aihua Meng, Junbiao Zhang, Miaomiao Xie, Yaohong Qin, Dylan Chase Faulk, Baohong Zhang, Shushen Yang, Li Qiu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5662235?pdf=render
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spelling doaj-2c0c14ba96e14ed384555922609cdecf2020-11-24T21:24:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-011210e018738310.1371/journal.pone.0187383Isolation and molecular identification of endophytic diazotrophs from seeds and stems of three cereal crops.Huawei LiuLei ZhangAihua MengJunbiao ZhangMiaomiao XieYaohong QinDylan Chase FaulkBaohong ZhangShushen YangLi QiuTen strains of endophytic diazotroph were isolated and identified from the plants collected from three different agricultural crop species, wheat, rice and maize, using the nitrogen-free selective isolation conditions. The nitrogen-fixing ability of endophytic diazotroph was verified by the nifH-PCR assay that showed positive nitrogen fixation ability. These identified strains were classified by 879F-RAPD and 16S rRNA sequence analysis. RAPD analyses revealed that the 10 strains were clustered into seven 879F-RAPD groups, suggesting a clonal origin. 16S rRNA sequencing analyses allowed the assignment of the 10 strains to known groups of nitrogen-fixing bacteria, including organisms from the genera Paenibacillus, Enterobacter, Klebsiella and Pantoea. These representative genus are not endophytic diazotrophs in the conventional sense. They may have obtained nitrogen fixation ability through lateral gene transfer, however, the evolutionary forces of lateral gene transfer are not well known. Molecular identification results from 16S rRNA analyses were also confirmed by morphological and biochemical data. The test strains SH6A and MZB showed positive effect on the growth of plants.http://europepmc.org/articles/PMC5662235?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Huawei Liu
Lei Zhang
Aihua Meng
Junbiao Zhang
Miaomiao Xie
Yaohong Qin
Dylan Chase Faulk
Baohong Zhang
Shushen Yang
Li Qiu
spellingShingle Huawei Liu
Lei Zhang
Aihua Meng
Junbiao Zhang
Miaomiao Xie
Yaohong Qin
Dylan Chase Faulk
Baohong Zhang
Shushen Yang
Li Qiu
Isolation and molecular identification of endophytic diazotrophs from seeds and stems of three cereal crops.
PLoS ONE
author_facet Huawei Liu
Lei Zhang
Aihua Meng
Junbiao Zhang
Miaomiao Xie
Yaohong Qin
Dylan Chase Faulk
Baohong Zhang
Shushen Yang
Li Qiu
author_sort Huawei Liu
title Isolation and molecular identification of endophytic diazotrophs from seeds and stems of three cereal crops.
title_short Isolation and molecular identification of endophytic diazotrophs from seeds and stems of three cereal crops.
title_full Isolation and molecular identification of endophytic diazotrophs from seeds and stems of three cereal crops.
title_fullStr Isolation and molecular identification of endophytic diazotrophs from seeds and stems of three cereal crops.
title_full_unstemmed Isolation and molecular identification of endophytic diazotrophs from seeds and stems of three cereal crops.
title_sort isolation and molecular identification of endophytic diazotrophs from seeds and stems of three cereal crops.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Ten strains of endophytic diazotroph were isolated and identified from the plants collected from three different agricultural crop species, wheat, rice and maize, using the nitrogen-free selective isolation conditions. The nitrogen-fixing ability of endophytic diazotroph was verified by the nifH-PCR assay that showed positive nitrogen fixation ability. These identified strains were classified by 879F-RAPD and 16S rRNA sequence analysis. RAPD analyses revealed that the 10 strains were clustered into seven 879F-RAPD groups, suggesting a clonal origin. 16S rRNA sequencing analyses allowed the assignment of the 10 strains to known groups of nitrogen-fixing bacteria, including organisms from the genera Paenibacillus, Enterobacter, Klebsiella and Pantoea. These representative genus are not endophytic diazotrophs in the conventional sense. They may have obtained nitrogen fixation ability through lateral gene transfer, however, the evolutionary forces of lateral gene transfer are not well known. Molecular identification results from 16S rRNA analyses were also confirmed by morphological and biochemical data. The test strains SH6A and MZB showed positive effect on the growth of plants.
url http://europepmc.org/articles/PMC5662235?pdf=render
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