Phylogeny of Symbiotic Genes and the Symbiotic Properties of Rhizobia Specific to Astragalus glycyphyllos L

The phylogeny of symbiotic genes of Astragalus glycyphyllos L. (liquorice milkvetch) nodule isolates was studied by comparative sequence analysis of nodA, nodC, nodH and nifH loci. In all these genes phylograms, liquorice milkvetch rhizobia (closely related to bacteria of three species, i.e. Mesorhi...

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Published inPloS one Vol. 10; no. 10; p. e0141504
Main Authors Gnat, Sebastian, Małek, Wanda, Oleńska, Ewa, Wdowiak-Wróbel, Sylwia, Kalita, Michał, Łotocka, Barbara, Wójcik, Magdalena
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Published United States Public Library of Science 2015
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Abstract The phylogeny of symbiotic genes of Astragalus glycyphyllos L. (liquorice milkvetch) nodule isolates was studied by comparative sequence analysis of nodA, nodC, nodH and nifH loci. In all these genes phylograms, liquorice milkvetch rhizobia (closely related to bacteria of three species, i.e. Mesorhizobium amorphae, Mesorhizobium septentrionale and Mesorhizobium ciceri) formed one clearly separate cluster suggesting the horizontal transfer of symbiotic genes from a single ancestor to the bacteria being studied. The high sequence similarity of the symbiotic genes of A. glycyphyllos rhizobia (99-100% in the case of nodAC and nifH genes, and 98-99% in the case of nodH one) points to the relatively recent (in evolutionary scale) lateral transfer of these genes. In the nodACH and nifH phylograms, A. glycyphyllos nodule isolates were grouped together with the genus Mesorhizobium species in one monophyletic clade, close to M. ciceri, Mesorhizobium opportunistum and Mesorhizobium australicum symbiovar biserrulae bacteria, which correlates with the close relationship of these rhizobia host plants. Plant tests revealed the narrow host range of A. glycyphyllos rhizobia. They formed effective symbiotic interactions with their native host (A. glycyphyllos) and Amorpha fruticosa but not with 11 other fabacean species. The nodules induced on A. glycyphyllos roots were indeterminate with apical, persistent meristem, an age gradient of nodule tissues and cortical vascular bundles. To reflect the symbiosis-adaptive phenotype of rhizobia, specific for A. glycyphyllos, we propose for these bacteria the new symbiovar "glycyphyllae", based on nodA and nodC genes sequences.
AbstractList The phylogeny of symbiotic genes of Astragalus glycyphyllos L. (liquorice milkvetch) nodule isolates was studied by comparative sequence analysis of nodA , nodC , nodH and nifH loci. In all these genes phylograms, liquorice milkvetch rhizobia (closely related to bacteria of three species, i.e. Mesorhizobium amorphae , Mesorhizobium septentrionale and Mesorhizobium ciceri ) formed one clearly separate cluster suggesting the horizontal transfer of symbiotic genes from a single ancestor to the bacteria being studied. The high sequence similarity of the symbiotic genes of A . glycyphyllos rhizobia (99–100% in the case of nodAC and nifH genes, and 98–99% in the case of nodH one) points to the relatively recent (in evolutionary scale) lateral transfer of these genes. In the nodACH and nifH phylograms, A . glycyphyllos nodule isolates were grouped together with the genus Mesorhizobium species in one monophyletic clade, close to M . ciceri , Mesorhizobium opportunistum and Mesorhizobium australicum symbiovar biserrulae bacteria, which correlates with the close relationship of these rhizobia host plants. Plant tests revealed the narrow host range of A . glycyphyllos rhizobia. They formed effective symbiotic interactions with their native host ( A . glycyphyllos ) and Amorpha fruticosa but not with 11 other fabacean species. The nodules induced on A . glycyphyllos roots were indeterminate with apical, persistent meristem, an age gradient of nodule tissues and cortical vascular bundles. To reflect the symbiosis-adaptive phenotype of rhizobia, specific for A . glycyphyllos , we propose for these bacteria the new symbiovar “ glycyphyllae ”, based on nodA and nodC genes sequences.
The phylogeny of symbiotic genes of Astragalus glycyphyllos L. (liquorice milkvetch) nodule isolates was studied by comparative sequence analysis of nodA , nodC , nodH and nifH loci. In all these genes phylograms, liquorice milkvetch rhizobia (closely related to bacteria of three species, i.e. Mesorhizobium amorphae , Mesorhizobium septentrionale and Mesorhizobium ciceri ) formed one clearly separate cluster suggesting the horizontal transfer of symbiotic genes from a single ancestor to the bacteria being studied. The high sequence similarity of the symbiotic genes of A . glycyphyllos rhizobia (99–100% in the case of nodAC and nifH genes, and 98–99% in the case of nodH one) points to the relatively recent (in evolutionary scale) lateral transfer of these genes. In the nodACH and nifH phylograms, A . glycyphyllos nodule isolates were grouped together with the genus Mesorhizobium species in one monophyletic clade, close to M . ciceri , Mesorhizobium opportunistum and Mesorhizobium australicum symbiovar biserrulae bacteria, which correlates with the close relationship of these rhizobia host plants. Plant tests revealed the narrow host range of A . glycyphyllos rhizobia. They formed effective symbiotic interactions with their native host ( A . glycyphyllos ) and Amorpha fruticosa but not with 11 other fabacean species. The nodules induced on A . glycyphyllos roots were indeterminate with apical, persistent meristem, an age gradient of nodule tissues and cortical vascular bundles. To reflect the symbiosis-adaptive phenotype of rhizobia, specific for A . glycyphyllos , we propose for these bacteria the new symbiovar “ glycyphyllae ”, based on nodA and nodC genes sequences.
Author Małek, Wanda
Wójcik, Magdalena
Gnat, Sebastian
Łotocka, Barbara
Oleńska, Ewa
Wdowiak-Wróbel, Sylwia
Kalita, Michał
AuthorAffiliation 2 Department of Genetics and Microbiology, University of Maria Curie-Skłodowska, 19 Akademicka st., 20–033 Lublin, Poland
4 Department of Botany, Warsaw University of Life Sciences—SGGW, 159 Nowoursynowska st., 02–766 Warsaw, Poland
National Research Laboratory of Defense Proteins, REPUBLIC OF KOREA
1 Department of Veterinary Microbiology, University of Life Sciences, 13 Akademicka st. 20–950 Lublin, Poland
3 Department of Genetics and Evolution, University of Białystok, 1J Ciołkowskiego st., 15–245 Białystok, Poland
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Copyright 2015 Gnat et al. This is an open access article distributed under the terms of the Creative Commons Attribution License: http://creativecommons.org/licenses/by/4.0/ (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
2015 Gnat et al 2015 Gnat et al
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content type line 23
Conceived and designed the experiments: SG WM. Performed the experiments: SG BŁ. Analyzed the data: SG EO WM MK SW-W MW. Contributed reagents/materials/analysis tools: SG. Wrote the paper: WM BŁ.
Competing Interests: The authors have declared that no competing interests exist.
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PublicationPlace United States
PublicationPlace_xml – name: United States
– name: San Francisco
– name: San Francisco, CA USA
PublicationTitle PloS one
PublicationTitleAlternate PLoS One
PublicationYear 2015
Publisher Public Library of Science
Public Library of Science (PLoS)
Publisher_xml – name: Public Library of Science
– name: Public Library of Science (PLoS)
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Snippet The phylogeny of symbiotic genes of Astragalus glycyphyllos L. (liquorice milkvetch) nodule isolates was studied by comparative sequence analysis of nodA,...
The phylogeny of symbiotic genes of Astragalus glycyphyllos L. (liquorice milkvetch) nodule isolates was studied by comparative sequence analysis of nodA ,...
The phylogeny of symbiotic genes of Astragalus glycyphyllos L. (liquorice milkvetch) nodule isolates was studied by comparative sequence analysis of nodA ,...
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StartPage e0141504
SubjectTerms Acyltransferases - genetics
Astragalus glycyphyllos
Astragalus Plant - microbiology
Astragalus Plant - ultrastructure
Bacteria
Bacterial Proteins - genetics
Biological evolution
Bradyrhizobium
Cortex
Enzymes
Gene sequencing
Genes
Genes, Bacterial
Genetic Loci
Horizontal transfer
Host plants
Host range
Legumes
Life sciences
Mesorhizobium - genetics
Mesorhizobium - metabolism
Morphogenesis
N-Acetylglucosaminyltransferases - genetics
Next-generation sequencing
NifH gene
Nitrogen
Nitrogen Fixation
Nodules
Phaseolus
Phenotypes
Phylogenetics
Phylogeny
Plant tissues
Proteobacteria
Rhizobium - genetics
Rhizobium - metabolism
Root Nodules, Plant - microbiology
Root Nodules, Plant - ultrastructure
Sequence Analysis, DNA
Species
Symbiosis
Taxonomy
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Title Phylogeny of Symbiotic Genes and the Symbiotic Properties of Rhizobia Specific to Astragalus glycyphyllos L
URI https://www.ncbi.nlm.nih.gov/pubmed/26496493
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http://dx.doi.org/10.1371/journal.pone.0141504
Volume 10
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