Literature DB >> 18397207

Analysis of nodulation kinetics in Frankia-Discaria trinervis symbiosis reveals different factors involved in the nodulation process.

Luciano Andrés Gabbarini1, Luis Gabriel Wall.   

Abstract

The induction of root nodule development in actinorhizal symbiosis would depend on the concentration of factors produced by the bacteria and the plant. A detailed analysis of nodulation description parameters revealed different factors related to the nodulation process. The initial time for nodulation (t(0)), the initial nodulation rate (v(0)) and the total time of nodule development (t(NOD)) were defined and consequently quantified in different experimental conditions: co-inoculation of Discaria trinervis with increasing concentrations of different non-infective bacteria together with the full compatible infective Frankia strain (the indicator strain) used at a limiting concentration or by changing plant factor(s) concentration. All the above nodulation parameters were modified by changing doses of full compatibility infective strain Frankia BCU110501; v(0) appears to be an expression of symbiotic recognition between partners as only fully symbiotic indicator Frankia BCU110501 was able to change it; t(0) seems not to reflect symbiotic recognition because it can also be modified by non-infective Frankia but suggest the existence of a basic level of plant microbe recognition. The initial time for nodulation t(0), reflecting the time required for the early interactions toward nodulation, is an inverse measure of the ability to establish early interactions toward nodulation. The increase in plant factors concentration also reduces t(0) values, suggesting that a plant factor is involved and favors very early interactions. Increases in plant factors concentration also modify the final number of nodules per plant and the nodule cluster profile along the taproot as an expression of the autoregulation phenomenon. Meanwhile, Frankia inoculums' concentration, either infective or not, modified t(NOD) in an opposite way plant factors did. In conclusion, the analysis of nodulation kinetics appears to be an appropriate tool to investigate factors involved in the symbiotic interaction leading to the formation of nitrogen-fixing nodules.

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Year:  2008        PMID: 18397207     DOI: 10.1111/j.1399-3054.2008.01096.x

Source DB:  PubMed          Journal:  Physiol Plant        ISSN: 0031-9317            Impact factor:   4.500


  4 in total

Review 1.  The diversity of actinorhizal symbiosis.

Authors:  Katharina Pawlowski; Kirill N Demchenko
Journal:  Protoplasma       Date:  2012-03-08       Impact factor: 3.356

2.  Casuarina root exudates alter the physiology, surface properties, and plant infectivity of Frankia sp. strain CcI3.

Authors:  Nicholas J Beauchemin; Teal Furnholm; Julien Lavenus; Sergio Svistoonoff; Patrick Doumas; Didier Bogusz; Laurent Laplaze; Louis S Tisa
Journal:  Appl Environ Microbiol       Date:  2011-11-18       Impact factor: 4.792

3.  Actinorhizal Signaling Molecules: Frankia Root Hair Deforming Factor Shares Properties With NIN Inducing Factor.

Authors:  Maimouna Cissoko; Valérie Hocher; Hassen Gherbi; Djamel Gully; Alyssa Carré-Mlouka; Seyni Sane; Sarah Pignoly; Antony Champion; Mariama Ngom; Petar Pujic; Pascale Fournier; Maher Gtari; Erik Swanson; Céline Pesce; Louis S Tisa; Mame Oureye Sy; Sergio Svistoonoff
Journal:  Front Plant Sci       Date:  2018-10-18       Impact factor: 5.753

4.  Draft Genome Sequence of Frankia sp. Strain BCU110501, a Nitrogen-Fixing Actinobacterium Isolated from Nodules of Discaria trinevis.

Authors:  Luis G Wall; Nicholas Beauchemin; Michael N Cantor; Eugenia Chaia; Amy Chen; J Chris Detter; Teal Furnholm; Faten Ghodhbane-Gtari; Lynne Goodwin; Maher Gtari; Cliff Han; James Han; Marcel Huntemann; Susan Xinyu Hua; Natalia Ivanova; Nikos Kyrpides; Victor Markowitz; Kostas Mavrommatis; Natalia Mikhailova; Henrik P Nordberg; Imen Nouioui; Galina Ovchinnikova; Ioanna Pagani; Amrita Pati; Arnab Sen; Saubashya Sur; Ernest Szeto; Subarna Thakur; Chia-Lin Wei; Tanja Woyke; Louis S Tisa
Journal:  Genome Announc       Date:  2013-07-11
  4 in total

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