Literature DB >> 30843545

Metallophore profiling of nitrogen-fixing Frankia spp. to understand metal management in the rhizosphere of actinorhizal plants.

Michael Deicke1, Jan Frieder Mohr, Sébastien Roy, Peter Herzsprung, Jean-Philippe Bellenger, Thomas Wichard.   

Abstract

Frankia spp. are widespread nitrogen-fixing soil bacteria, which often live in symbiosis with a broad range of hosts. Metal homeostasis plays a crucial role in the success of the symbiosis regarding the acquisition of essential trace metals and detoxification of potentially toxic elements. We have hypothesised that Frankia releases many organic ligands with a broad spectrum of affinity for essential and toxic metals. We coined the term 'ligandosphere' to describe the entirety of excreted metal complexing agents and ligands derived from the dissolved organic matter. Using metal isotope-coded profiling (MICP); metallophores of physiological important and toxic trace metals were identified by the addition of stable metal isotope pairs such as 54Fe/58Fe, 63Cu/65Cu, 66Zn/68Zn or 95Mo/98Mo. Liquid chromatography coupled to a mass spectrometer revealed strong variations of the metallophore profile in between the 14 test-strains. In total, about 83 organic ligands were identified as binding to one of the tested metals. The predicted sum formula of the major Fe binding ligands and MS/MS experiments suggested that several metallophore candidates have a similar molecular backbone. Growth experiments with a hyper-producer of metallophores revealed a positive relationship between metallophore production and the concentration of Cu in the growth medium. The present study provides the first comprehensive overview of the complexity of Frankia's ligandosphere. It opens a path to a deeper understanding of mechanisms that regulate metal homeostasis in frankiae. Deciphering these mechanisms is important since the fitness of actinorhizal plants and their potential in ecological restoration relies heavily on their symbiosis with frankiae.

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Year:  2019        PMID: 30843545     DOI: 10.1039/c8mt00344k

Source DB:  PubMed          Journal:  Metallomics        ISSN: 1756-5901            Impact factor:   4.526


  4 in total

1.  Metallophores production by bacteria isolated from heavy metal-contaminated soil and sediment at Lerma-Chapala Basin.

Authors:  Jessica Maldonado-Hernández; Brenda Román-Ponce; Ivan Arroyo-Herrera; Joseph Guevara-Luna; Juan Ramos-Garza; Salvador Embarcadero-Jiménez; Paulina Estrada de Los Santos; En Tao Wang; María Soledad Vásquez-Murrieta
Journal:  Arch Microbiol       Date:  2022-02-17       Impact factor: 2.552

2.  Genome Sequence of Frankia sp. Strain CH37, a Metallophore-Producing, Nitrogen-Fixing Actinobacterium Isolated from the Sea Buckthorn, Hippophae rhamnoides (Elaeagnaceae).

Authors:  Jan Frieder Mohr; Anne Weiss; Sébastien Roy; Thomas Wichard
Journal:  Microbiol Resour Announc       Date:  2020-12-10

3.  Draft genome sequences for three unisolated Alnus-infective Frankia Sp+ strains, AgTrS, AiOr and AvVan, the first sequenced Frankia strains able to sporulate in-planta.

Authors:  Lorine Bethencourt; Florian Vautrin; Najwa Taib; Audrey Dubost; Lucia Castro-Garcia; Olivier Imbaud; Danis Abrouk; Pascale Fournier; Jérôme Briolay; Agnès Nguyen; Philippe Normand; Maria P Fernandez; Céline Brochier-Armanet; Aude Herrera-Belaroussi
Journal:  J Genomics       Date:  2019-09-17

Review 4.  Cell Communications among Microorganisms, Plants, and Animals: Origin, Evolution, and Interplays.

Authors:  Yves Combarnous; Thi Mong Diep Nguyen
Journal:  Int J Mol Sci       Date:  2020-10-28       Impact factor: 5.923

  4 in total

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