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Michel Chalot

Researcher at University of Lorraine

Publications -  136
Citations -  11330

Michel Chalot is an academic researcher from University of Lorraine. The author has contributed to research in topics: Paxillus involutus & Mycorrhiza. The author has an hindex of 41, co-authored 129 publications receiving 10080 citations. Previous affiliations of Michel Chalot include University of Burgundy & Institut national de la recherche agronomique.

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The genome of black cottonwood, Populus trichocarpa (Torr. & Gray)

Gerald A. Tuskan, +115 more
- 15 Sep 2006 - 
TL;DR: The draft genome of the black cottonwood tree, Populus trichocarpa, has been reported in this paper, with more than 45,000 putative protein-coding genes identified.
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The genome of Laccaria bicolor provides insights into mycorrhizal symbiosis

TL;DR: The predicted gene inventory of the L. bicolor genome points to previously unknown mechanisms of symbiosis operating in biotrophic mycorrhizal fungi, providing an unparalleled opportunity to develop a deeper understanding of the processes by which symbionts interact with plants within their ecosystem to perform vital functions in the carbon and nitrogen cycles that are fundamental to sustainable plant productivity.

The genome of black cottonwood, Populus trichocarpa (Torr. & Gray) - eScholarship

TL;DR: Analyzing the draft genome of the black cottonwood tree, Populus trichocarpa, revealed a whole-genome duplication event; about 8000 pairs of duplicated genes from that event survived in the Populus genome.
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Physiology of organic nitrogen acquisition by ectomycorrhizal fungi and ectomycorrhizas

TL;DR: One of the main future challenges in the physiology of organic nitrogen acquisition is to determine the nature, the regulation and the location of N-compound transporters at the soil-fungus and fungus-plant interfaces.
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Phylogenetic and functional analysis of the Cation Diffusion Facilitator (CDF) family: improved signature and prediction of substrate specificity.

TL;DR: P phylogenetic and functional analyses have allowed the identification of three major substrate-specific CDF groups and the metal selectivity of newly identified CDF transporters can be inferred by their position in one of these groups.