Literature DB >> 29247058

Frankia Diversity in Host Plant Root Nodules Is Independent of Abundance or Relative Diversity of Frankia Populations in Corresponding Rhizosphere Soils.

Seifeddine Ben Tekaya1, Trina Guerra1, David Rodriguez1, Jeffrey O Dawson2, Dittmar Hahn3.   

Abstract

Actinorhizal plants form nitrogen-fixing root nodules in symbiosis with soil-dwelling actinobacteria within the genus Frankia, and specific Frankia taxonomic clusters nodulate plants in corresponding host infection groups. In same-soil microcosms, we observed that some host species were nodulated (Alnus glutinosa, Alnus cordata, Shepherdia argentea, Casuarina equisetifolia) while others were not (Alnus viridis, Hippophaë rhamnoides). Nodule populations were represented by eight different sequences of nifH gene fragments. Two of these sequences characterized frankiae in S. argentea nodules, and three others characterized frankiae in A. glutinosa nodules. Frankiae in A. cordata nodules were represented by five sequences, one of which was also found in nodules from A. glutinosa and C. equisetifolia, while another was detected in nodules from A. glutinosa Quantitative PCR assays showed that vegetation generally increased the abundance of frankiae in soil, independently of the target gene (i.e., nifH or the 23S rRNA gene). Targeted Illumina sequencing of Frankia-specific nifH gene fragments detected 24 unique sequences from rhizosphere soils, 4 of which were also found in nodules, while the remaining 4 sequences in nodules were not found in soils. Seven of the 24 sequences from soils represented >90% of the reads obtained in most samples; the 2 most abundant sequences from soils were not found in root nodules, and only 2 of the sequences from soils were detected in nodules. These results demonstrate large differences between detectable Frankia populations in soil and those in root nodules, suggesting that root nodule formation is not a function of the abundance or relative diversity of specific Frankia populations in soils.IMPORTANCE The nitrogen-fixing actinobacterium Frankia forms root nodules on actinorhizal plants, with members of specific Frankia taxonomic clusters nodulating plants in corresponding host infection groups. We assessed Frankia diversity in root nodules of different host plant species, and we related specific populations to the abundance and relative distribution of indigenous frankiae in rhizosphere soils. Large differences were observed between detectable Frankia populations in soil and those in root nodules, suggesting that root nodule formation is not a function of the abundance or relative diversity of specific Frankia populations in soils but rather results from plants potentially selecting frankiae from the soil for root nodule formation. These data also highlight the necessity of using a combination of different assessment tools so as to adequately address methodological constraints that could produce contradictory data sets.
Copyright © 2018 American Society for Microbiology.

Entities:  

Keywords:  Frankia; Illumina; abundance; actinorhiza; nifH; qPCR; quantification; soil

Mesh:

Year:  2018        PMID: 29247058      PMCID: PMC5812924          DOI: 10.1128/AEM.02248-17

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  26 in total

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2.  Quantification of frankia strains and other root-associated bacteria in pure cultures and in the rhizosphere of axenic seedlings by high-performance liquid chromatography-based muramic Acid assay.

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3.  Improved tools for biological sequence comparison.

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4.  Characterization of an ineffective actinorhizal microsymbiont, Frankia sp. EuI1 (Actinomycetales).

Authors:  D Baker; W Newcomb; J G Torrey
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5.  Frankia populations in soil and root nodules of sympatrically grown Alnus taxa.

Authors:  Anita Pokharel; Babur S Mirza; Jeffrey O Dawson; Dittmar Hahn
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6.  Growth responses of indigenous Frankia populations to edaphic factors in actinorhizal rhizospheres.

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Authors:  Babur S Mirza; Allana Welsh; Dittmar Hahn
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8.  Phylogenetic studies on uncultured Frankia populations in nodules of Datisca cannabina.

Authors:  M S Mirza; D Hahn; S V Dobritsa; A D Akkermans
Journal:  Can J Microbiol       Date:  1994-04       Impact factor: 2.419

9.  Variation in Frankia populations of the Elaeagnus host infection group in nodules of six host plant species after inoculation with soil.

Authors:  Babur S Mirza; Allana Welsh; Ghulam Rasul; Julie P Rieder; Mark W Paschke; Dittmar Hahn
Journal:  Microb Ecol       Date:  2009-03-31       Impact factor: 4.552

10.  In-planta Sporulation Capacity Enhances Infectivity and Rhizospheric Competitiveness of Frankia Strains.

Authors:  Laetitia Cotin-Galvan; Adrien C Pozzi; Guillaume Schwob; Pascale Fournier; Maria P Fernandez; Aude Herrera-Belaroussi
Journal:  Microbes Environ       Date:  2015-12-26       Impact factor: 2.912

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Journal:  Appl Environ Microbiol       Date:  2018-11-15       Impact factor: 4.792

2.  Inter-cluster competition and resource partitioning may govern the ecology of Frankia.

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Journal:  Arch Microbiol       Date:  2022-05-16       Impact factor: 2.552

3.  Draft Genomes of Symbiotic Frankia Strains AgB32 and AgKG'84/4 from Root Nodules of Alnus Glutinosa growing under Contrasted Environmental Conditions.

Authors:  Philippe Normand; Petar Pujic; Danis Abrouk; Spandana Vemulapally; Trina Guerra; Camila Carlos-Shanley; Dittmar Hahn
Journal:  J Genomics       Date:  2022-08-08
  3 in total

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