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MIP diversity from Trichoderma: Structural considerations and transcriptional modulation during mycoparasitic association with Fusarium solani olive trees

Authors :
Ben Amira, Maroua
Mom, Robin
Lopez, David
Chaar, Hatem
Khouaja, Ali
Pujade-Renaud, Valérie
Fumanal, Boris
Gousset-Dupont, Aurélie
Bronner, Gisèle
Label, Philippe
Julien, Jean-Louis
Triki, Ali Mohamed
Auguin, Daniel
Venisse, Jean-Stéphane
Ben Amira, Maroua
Mom, Robin
Lopez, David
Chaar, Hatem
Khouaja, Ali
Pujade-Renaud, Valérie
Fumanal, Boris
Gousset-Dupont, Aurélie
Bronner, Gisèle
Label, Philippe
Julien, Jean-Louis
Triki, Ali Mohamed
Auguin, Daniel
Venisse, Jean-Stéphane
Source :
PloS One
Publication Year :
2018

Abstract

Major intrinsic proteins (MIP) are characterized by a transmembrane pore-type architecture that facilitates transport across biomembranes of water and a variety of low molecular weight solutes. They are found in all parts of life, with remarkable protein diversity. Very little is known about MIP from fungi. And yet, it can legitimately be stated that MIP are pivotal molecular components in the privileged relationships fungi enjoy with plants or soil fauna in various environments. To date, MIP have never been studied in a mycoparasitism situation. In this study, the diversity, expression and functional prediction of MIP from the genus Trichoderma were investigated. Trichoderma spp. genomes have at least seven aquaporin genes. Based on a phylogenetic analysis of the translated sequences, members were assigned to the AQP, AQGP and XIP subfamilies. In in vitro and in planta assays with T. harzianum strain Ths97, expression analyses showed that four genes were constitutively expressed. In a mycoparasitic context with Fusarium solani, the causative agent of fusarium dieback on olive tree roots, these genes were up-regulated. This response is of particular interest in analyzing the MIP promoter cis-regulatory motifs, most of which are involved in various carbon and nitrogen metabolisms. Structural analyses provide new insights into the possible role of structural checkpoints by which these members transport water, H2O2, glycerol and, more generally, linear polyols across the membranes. Taken together, these results provide the first evidence that MIP may play a key role in Trichoderma mycoparasitism lifestyle.

Details

Database :
OAIster
Journal :
PloS One
Notes :
text, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1041929654
Document Type :
Electronic Resource