A novel fungal family of oligopeptide transporters identified by functional metatranscriptomics of soil eukaryotes

被引:0
|
作者
Coralie Damon
Laurent Vallon
Sabine Zimmermann
Muhammad Z Haider
Virginie Galeote
Sylvie Dequin
Patricia Luis
Laurence Fraissinet-Tachet
Roland Marmeisse
机构
[1] Université de Lyon,
[2] Université Lyon 1,undefined
[3] CNRS,undefined
[4] UMR5557 d’Ecologie Microbienne,undefined
[5] CNRS,undefined
[6] UMR5004 Biochimie et Physiologie Moléculaire des Plantes,undefined
[7] INRA,undefined
[8] UMR1083 Sciences pour l’Oenologie,undefined
来源
The ISME Journal | 2011年 / 5卷
关键词
environmental genomics; metatranscriptomics; oligopeptide transport;
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中图分类号
学科分类号
摘要
Functional environmental genomics has the potential to identify novel biological functions that the systematic sequencing of microbial genomes or environmental DNA may fail to uncover. We targeted the functions expressed by soil eukaryotes using a metatranscriptomic approach based on the use of soil-extracted polyadenylated messenger RNA to construct environmental complementary DNA expression libraries. Functional complementation of a yeast mutant defective in di/tripeptide uptake identified a novel family of oligopeptide transporters expressed by fungi. This family has a patchy distribution in the Basidiomycota and Ascomycota and is present in the genome of a Saccharomyces cerevisiae wine strain. High throughput phenotyping of yeast mutants expressing two environmental transporters showed that they both displayed broad substrate specificity and could transport more than 60–80 dipeptides. When expressed in Xenopus oocytes one environmental transporter induced currents upon dipeptide addition, suggesting proton-coupled co-transport of dipeptides. This transporter was also able to transport specifically cysteine. Deletion of the two copies of the corresponding gene family members in the genome of the wine yeast strain severely reduced the number of dipeptides that it could assimilate. These results demonstrate that these genes are functional and can be used by fungi to efficiently scavenge the numerous, low concentration, oligopeptides continuously generated in soils by proteolysis.
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页码:1871 / 1880
页数:9
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