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cognitis nomina
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Authors Normand

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Normand, Philippe


Publications
5

CitationNamesAbstract
Candidatus Frankia nodulisporulans sp. nov., an Alnus glutinosa-infective Frankia species unable to grow in pure culture and able to sporulate in-planta Herrera-Belaroussi et al. (2020). Systematic and Applied Microbiology 43 (6) Ca. Frankia nodulisporulans
Proposal of 'Candidatus Frankia alpina', the uncultured symbiont of Alnus alnobetula and A. incana that forms spore-containing nitrogen-fixing root nodules Pozzi et al. (2020). International Journal of Systematic and Evolutionary Microbiology 70 (10) Ca. Frankia alpina
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Proposal of 'Candidatus Frankia californiensis', the uncultured symbiont in nitrogen-fixing root nodules of a phylogenetically broad group of hosts endemic to western North America Normand et al. (2017). International Journal of Systematic and Evolutionary Microbiology 67 (10) Ca. Frankia californiensis
Candidatus Frankia Datiscae Dg1, the Actinobacterial Microsymbiont of Datisca glomerata, Expresses the Canonical nod Genes nodABC in Symbiosis with Its Host Plant Persson et al. (2015). PLOS ONE 10 (5) Frankia
Genome Sequence of “Candidatus Frankia datiscae” Dg1, the Uncultured Microsymbiont from Nitrogen-Fixing Root Nodules of the Dicot Datisca glomerata Persson et al. (2011). Journal of Bacteriology 193 (24) Ca. Frankia datiscae
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Proposal of 'Candidatus Frankia alpina', the uncultured symbiont of Alnus alnobetula and A. incana that forms spore-containing nitrogen-fixing root nodules
The members of the genusFrankiaare, with a few exceptions, a group of nitrogen-fixing symbiotic actinobacteria that nodulate mostly woody dicotyledonous plants belonging to three orders, eight families and 23 genera of pioneer dicots. These bacteria have been characterized phylogenetically and grouped into four molecular clusters. One of the clusters, cluster 1 contains strains that induce nodules onAlnusspp. (Betulaceae),Myricaspp.,Morellaspp. andComptoniaspp. (Myricaceae) that have global distributions. Some of these strains produce not only hyphae and vesicles, as other cluster 1 strains do, but also numerous sporangia in their host symbiotic tissues, hence their phenotype being described as spore-positive (Sp+). While Sp+ strains have resisted repeated attempts at cultivation, their genomes have recently been characterized and found to be different from those of all described species, being markedly smaller than their phylogenetic neighbours. We thus hereby propose to create a 'CandidatusFrankia alpina' species for some strains present in nodules ofAlnus alnobetulaandA. incanathat grow in alpine environments at high altitudes or in subarctic environments at high latitudes.
Genome Sequence of “Candidatus Frankia datiscae” Dg1, the Uncultured Microsymbiont from Nitrogen-Fixing Root Nodules of the Dicot Datisca glomerata
ABSTRACT Members of the noncultured clade of Frankia enter into root nodule symbioses with actinorhizal species from the orders Cucurbitales and Rosales. We report the genome sequence of a member of this clade originally from Pakistan but obtained from root nodules of the American plant Datisca glomerata without isolation in culture.
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