Literature DB >> 28573458

An in vivo whole-plant experimental system for the analysis of gene expression in extraradical mycorrhizal mycelium.

Alessandra Pepe1, Cristiana Sbrana2, Nuria Ferrol3, Manuela Giovannetti4.   

Abstract

Arbuscular mycorrhizal fungi (AMF) establish beneficial mutualistic symbioses with land plants, receiving carbon in exchange for mineral nutrients absorbed by the extraradical mycelium (ERM). With the aim of obtaining in vivo produced ERM for gene expression analyses, a whole-plant bi-dimensional experimental system was devised and tested with three host plants and three fungal symbionts. In such a system, Funneliformis mosseae in symbiosis with Cichorium intybus var. foliosum, Lactuca sativa, and Medicago sativa produced ERM whose lengths ranged from 9.8 ± 0.8 to 20.8 ± 1.2 m per plant. Since ERM produced in symbiosis with C. intybus showed the highest values for the different structural parameters assessed, this host was used to test the whole-plant system with F. mosseae, Rhizoglomus irregulare, and Funneliformis coronatus. The whole-plant system yielded 1-7 mg of ERM fresh biomass per plant per harvest, and continued producing new ERM for 6 months. Variable amounts of high-quality and intact total RNA, ranging from 15 to 65 μg RNA/mg ERM fresh weight, were extracted from the ERM of the three AMF isolates. Ammonium transporter gene expression was successfully determined in the cDNAs obtained from ERM of the three fungal symbionts by RT-qPCR using gene-specific primers designed on available (R. irregulare) and new (F. mosseae and F. coronatus) ammonium transporter gene sequences. The whole-plant experimental system represents a useful research tool for large production and easy collection of ERM for morphological, physiological, and biochemical analyses, suitable for a wide variety of AMF species, for a virtually limitless range of host plants and for studies involving diverse symbiotic interactions.

Entities:  

Keywords:  Ammonium transporters; Arbuscular mycorrhizal fungi; Extraradical mycelium; Gene expression; Whole-plant experimental system

Mesh:

Year:  2017        PMID: 28573458     DOI: 10.1007/s00572-017-0779-7

Source DB:  PubMed          Journal:  Mycorrhiza        ISSN: 0940-6360            Impact factor:   3.387


  48 in total

1.  Expressed genes in the extraradical hyphae of an arbuscular mycorrhizal fungus, Glomus intraradices, in the symbiotic phase.

Authors:  H Sawaki; M Saito
Journal:  FEMS Microbiol Lett       Date:  2001-02-05       Impact factor: 2.742

2.  Mycelium development and architecture, and spore production of Scutellospora reticulata in monoxenic culture with Ri T-DNA transformed carrot roots.

Authors:  Francisco Adriano de Souza; Stéphane Declerck
Journal:  Mycologia       Date:  2003 Nov-Dec       Impact factor: 2.696

3.  GintAMT1 encodes a functional high-affinity ammonium transporter that is expressed in the extraradical mycelium of Glomus intraradices.

Authors:  Agustín López-Pedrosa; Manuel González-Guerrero; Ascensión Valderas; Concepción Azcón-Aguilar; Nuria Ferrol
Journal:  Fungal Genet Biol       Date:  2005-12-28       Impact factor: 3.495

4.  GintMT1 encodes a functional metallothionein in Glomus intraradices that responds to oxidative stress.

Authors:  M González-Guerrero; C Cano; C Azcón-Aguilar; N Ferrol
Journal:  Mycorrhiza       Date:  2007-02-03       Impact factor: 3.387

5.  Aquaporin genes GintAQPF1 and GintAQPF2 from Glomus intraradices contribute to plant drought tolerance.

Authors:  Tao Li; Ya-Jun Hu; Zhi-Peng Hao; Hong Li; Bao-Dong Chen
Journal:  Plant Signal Behav       Date:  2013-02-22

6.  A limiting source of organic nitrogen induces specific transcriptional responses in the extraradical structures of the endomycorrhizal fungus Glomus intraradices.

Authors:  Gilda Cappellazzo; Luisa Lanfranco; Paola Bonfante
Journal:  Curr Genet       Date:  2006-10-24       Impact factor: 3.886

7.  A phosphate transporter gene from the extra-radical mycelium of an arbuscular mycorrhizal fungus Glomus intraradices is regulated in response to phosphate in the environment.

Authors:  I E Maldonado-Mendoza; G R Dewbre; M J Harrison
Journal:  Mol Plant Microbe Interact       Date:  2001-10       Impact factor: 4.171

8.  Functional characterisation and transcript analysis of an alkaline phosphatase from the arbuscular mycorrhizal fungus Funneliformis mosseae.

Authors:  Qianhe Liu; Anthony J Parsons; Hong Xue; Chris S Jones; Susanne Rasmussen
Journal:  Fungal Genet Biol       Date:  2013-03-05       Impact factor: 3.495

9.  Sulfur transfer through an arbuscular mycorrhiza.

Authors:  James W Allen; Yair Shachar-Hill
Journal:  Plant Physiol       Date:  2008-10-31       Impact factor: 8.340

10.  A dipeptide transporter from the arbuscular mycorrhizal fungus Rhizophagus irregularis is upregulated in the intraradical phase.

Authors:  Simone Belmondo; Valentina Fiorilli; Jacob Pérez-Tienda; Nuria Ferrol; Roland Marmeisse; Luisa Lanfranco
Journal:  Front Plant Sci       Date:  2014-09-03       Impact factor: 5.753

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  8 in total

1.  Two herbicides, two fungicides and spore-associated bacteria affect Funneliformis mosseae extraradical mycelium structural traits and viability.

Authors:  Candido Barreto de Novais; Manuela Giovannetti; Sergio Miana de Faria; Cristiana Sbrana
Journal:  Mycorrhiza       Date:  2019-06-12       Impact factor: 3.387

2.  Characterization of the NRAMP Gene Family in the Arbuscular Mycorrhizal Fungus Rhizophagus irregularis.

Authors:  Víctor Manuel López-Lorca; María Jesús Molina-Luzón; Nuria Ferrol
Journal:  J Fungi (Basel)       Date:  2022-05-31

Review 3.  Rhizosphere Microbiome Cooperations: Strategies for Sustainable Crop Production.

Authors:  Olubukola O Babalola; Obianuju C Emmanuel; Bartholomew S Adeleke; Kehinde A Odelade; Blessing C Nwachukwu; Oluwatobi E Ayiti; Taofeek T Adegboyega; Nicholas O Igiehon
Journal:  Curr Microbiol       Date:  2021-02-20       Impact factor: 2.188

4.  Transcriptome changes induced by arbuscular mycorrhizal fungi in sunflower (Helianthus annuus L.) roots.

Authors:  Alberto Vangelisti; Lucia Natali; Rodolfo Bernardi; Cristiana Sbrana; Alessandra Turrini; Keywan Hassani-Pak; David Hughes; Andrea Cavallini; Manuela Giovannetti; Tommaso Giordani
Journal:  Sci Rep       Date:  2018-01-08       Impact factor: 4.379

5.  Lifespan and functionality of mycorrhizal fungal mycelium are uncoupled from host plant lifespan.

Authors:  Alessandra Pepe; Manuela Giovannetti; Cristiana Sbrana
Journal:  Sci Rep       Date:  2018-07-06       Impact factor: 4.379

6.  Arbuscular mycorrhizal fungi induce the expression of specific retrotransposons in roots of sunflower (Helianthus annuus L.).

Authors:  Alberto Vangelisti; Flavia Mascagni; Tommaso Giordani; Cristiana Sbrana; Alessandra Turrini; Andrea Cavallini; Manuela Giovannetti; Lucia Natali
Journal:  PLoS One       Date:  2019-02-19       Impact factor: 3.240

7.  Mycorrhizal Symbionts and Associated Bacteria: Potent Allies to Improve Plant Phosphorus Availability and Food Security.

Authors:  Cristiana Sbrana; Monica Agnolucci; Luciano Avio; Luca Giovannini; Michela Palla; Alessandra Turrini; Manuela Giovannetti
Journal:  Front Microbiol       Date:  2022-01-10       Impact factor: 5.640

Review 8.  Possible role of arbuscular mycorrhizal fungi and associated bacteria in the recruitment of endophytic bacterial communities by plant roots.

Authors:  Gergely Ujvári; Alessandra Turrini; Luciano Avio; Monica Agnolucci
Journal:  Mycorrhiza       Date:  2021-07-20       Impact factor: 3.387

  8 in total

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