Literature DB >> 21609342

Trichoderma harzianum might impact phosphorus transport by arbuscular mycorrhizal fungi.

Nathalie De Jaeger1, Ivan E de la Providencia, Hervé Dupré de Boulois, Stéphane Declerck.   

Abstract

Trichoderma sp. is a biocontrol agent active against plant pathogens via mechanisms such as mycoparasitism. Recently, it was demonstrated that Trichoderma harzianum was able to parasitize the mycelium of an arbuscular mycorrhizal (AM) fungus, thus affecting its viability. Here, we question whether this mycoparasitism may reduce the capacity of Glomus sp. to transport phosphorus ((33)P) to its host plant in an in vitro culture system. (33)P was measured in the plant and in the fungal mycelium in the presence/absence of T. harzianum. The viability and metabolic activity of the extraradical mycelium was measured via succinate dehydrogenase and alkaline phosphatase staining. Our study demonstrated an increased uptake of (33)P by the AM fungus in the presence of T. harzianum, possibly related to a stress reaction caused by mycoparasitism. In addition, the disruption of AM extraradical hyphae in the presence of T. harzianum affected the (33)P translocation within the AM fungal mycelium and consequently the transfer of (33)P to the host plant. The effects of T. harzianum on Glomus sp. may thus impact the growth and function of AM fungi and also indirectly plant performance by influencing the source-sink relationship between the two partners of the symbiosis.
© 2011 Federation of European Microbiological Societies. Published by Blackwell Publishing Ltd. All rights reserved.

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Year:  2011        PMID: 21609342     DOI: 10.1111/j.1574-6941.2011.01135.x

Source DB:  PubMed          Journal:  FEMS Microbiol Ecol        ISSN: 0168-6496            Impact factor:   4.194


  8 in total

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Authors:  Ismahen Lalaymia; Sylvie Cranenbrouck; Stéphane Declerck
Journal:  Mycorrhiza       Date:  2013-11-30       Impact factor: 3.387

2.  The arbuscular mycorrhizal fungus Rhizophagus irregularis MUCL 41833 increases the phosphorus uptake and biomass of Medicago truncatula, a benzo[a]pyrene-tolerant plant species.

Authors:  Maryline Calonne-Salmon; Katia Plouznikoff; Stéphane Declerck
Journal:  Mycorrhiza       Date:  2018-08-18       Impact factor: 3.387

3.  Alien invasive Leucaena leucocephala successfully acquires nutrients by investing in below-ground biomass compared to native Vachellia nilotica in nutrient-amended soils in South Africa.

Authors:  Khululwa Ndabankulu; Zivanai Tsvuura; Anathi Magadlela
Journal:  AoB Plants       Date:  2022-05-26       Impact factor: 3.138

Review 4.  Track and trace: how soil labelling techniques have revealed the secrets of resource transport in the arbuscular mycorrhizal symbiosis.

Authors:  Stephanie J Watts-Williams
Journal:  Mycorrhiza       Date:  2022-05-21       Impact factor: 3.856

5.  Cryopreservation of in vitro-produced Rhizophagus species has minor effects on their morphology, physiology, and genetic stability.

Authors:  Ismahen Lalaymia; Stephane Declerck; Sylvie Cranenbrouck
Journal:  Mycorrhiza       Date:  2013-05-21       Impact factor: 3.387

Review 6.  Modulation of the Root Microbiome by Plant Molecules: The Basis for Targeted Disease Suppression and Plant Growth Promotion.

Authors:  Alberto Pascale; Silvia Proietti; Iakovos S Pantelides; Ioannis A Stringlis
Journal:  Front Plant Sci       Date:  2020-01-24       Impact factor: 5.753

Review 7.  Deciphering Trichoderma-Plant-Pathogen Interactions for Better Development of Biocontrol Applications.

Authors:  Alsayed Alfiky; Laure Weisskopf
Journal:  J Fungi (Basel)       Date:  2021-01-18

8.  An In Vitro Method for Studying the Three-Way Interaction between Soybean, Rhizophagus irregularis and the Soil-Borne Pathogen Fusarium virguliforme.

Authors:  María L Giachero; Nathalie Marquez; Adrien Gallou; Celina M Luna; Stéphane Declerck; Daniel A Ducasse
Journal:  Front Plant Sci       Date:  2017-06-16       Impact factor: 5.753

  8 in total

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