Peptide Uptake in the Ectomycorrhizal Fungus Hebeloma Cylindrosporum: Characterization of Two Di- and Tripeptide Transporters (HcPTR2A and B)
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Constraints on plant growth imposed by low availability of nitrogen are a characteristic feature of ecosystems dominated by ectomycorrhizal plants. Ectomycorrhizal fungi play a key role in the N nutrition of plants, allowing their host plants to access decomposition products of dead plant and animal materials. Ectomycorrhizal plants are thus able to compensate for the low availability of inorganic N in forest ecosystems. The capacity to take up peptides, as well as the transport mechanisms involved, were analysed in the ectomycorrhizal fungus Hebeloma cylindrosporum. The present study demonstrated that H. cylindrosporum mycelium was able to take up di- and tripeptides and use them as sole N source. Two peptide transporters (HcPTR2A and B) were isolated by yeast functional complementation using an H. cylindrosporum cDNA library, and were shown to mediate dipeptide uptake. Uptake capacities and expression regulation of both genes were analysed, indicating that HcPTR2A was involved in the high-efficiency peptide uptake under conditions of limited N availability, whereas HcPTR2B was expressed constitutively.
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PMID: 39236233 PMC: 11440039. DOI: 10.1093/ismejo/wrae171.
Stuart E, Plett K Front Plant Sci. 2020; 10:1658.
PMID: 31993064 PMC: 6971170. DOI: 10.3389/fpls.2019.01658.
Nugent B, Ali S, Mullins E, Doohan F Front Microbiol. 2019; 10:295.
PMID: 30863378 PMC: 6399157. DOI: 10.3389/fmicb.2019.00295.
New mutualistic fungal endophytes isolated from poplar roots display high metal tolerance.
Lacercat-Didier L, Berthelot C, Foulon J, Errard A, Martino E, Chalot M Mycorrhiza. 2016; 26(7):657-71.
PMID: 27113586 DOI: 10.1007/s00572-016-0699-y.
Belmondo S, Fiorilli V, Perez-Tienda J, Ferrol N, Marmeisse R, Lanfranco L Front Plant Sci. 2014; 5:436.
PMID: 25232358 PMC: 4153046. DOI: 10.3389/fpls.2014.00436.