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Linda Jeanguenin

Explore the profile of Linda Jeanguenin including associated specialties, affiliations and a list of published articles. Areas
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Articles 14
Citations 297
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Recent Articles
1.
Maistriaux L, Laurent M, Jeanguenin L, Prado S, Nader J, Welcker C, et al.
Plant Physiol . 2024 Jun; 196(1):368-384. PMID: 38839061
Plant aquaporins are involved in numerous physiological processes, such as cellular homeostasis, tissue hydraulics, transpiration, and nutrient supply, and are key players of the response to environmental cues. While varying...
2.
Schoppach R, Wauthelet D, Jeanguenin L, Sadok W
Funct Plant Biol . 2020 Jun; 41(3):257-269. PMID: 32480986
Efficient breeding of drought-tolerant wheat (Triticum spp.) genotypes requires identifying mechanisms underlying exceptional performances. Evidence indicates that the drought-tolerant breeding line RAC875 is water-use conservative, limiting its transpiration rate (TR)...
3.
Pou A, Jeanguenin L, Milhiet T, Batoko H, Chaumont F, Hachez C
Plant Mol Biol . 2016 Sep; 92(6):731-744. PMID: 27671160
Salt stress triggers a simultaneous transcriptional repression and aquaporin internalization to modify root cell water conductivity. Plasma membrane intrinsic proteins (PIPs) are involved in the adjustment of plant water balance...
4.
Caldeira C, Jeanguenin L, Chaumont F, Tardieu F
Nat Commun . 2014 Nov; 5:5365. PMID: 25370944
Circadian rhythms enable plants to anticipate daily environmental variations, resulting in growth oscillations under continuous light. Because plants daily transpire up to 200% of their water content, their water status...
5.
Caldeira C, Bosio M, Parent B, Jeanguenin L, Chaumont F, Tardieu F
Plant Physiol . 2014 Jan; 164(4):1718-30. PMID: 24420931
Plants are constantly facing rapid changes in evaporative demand and soil water content, which affect their water status and growth. In apparent contradiction to a hydraulic hypothesis, leaf elongation rate...
6.
Nieves-Cordones M, Chavanieu A, Jeanguenin L, Alcon C, Szponarski W, Estaran S, et al.
Plant Physiol . 2014 Jan; 164(3):1415-29. PMID: 24406792
Shaker K(+) channels form the major K(+) conductance of the plasma membrane in plants. They are composed of four subunits arranged around a central ion-conducting pore. The intracellular carboxy-terminal region...
7.
Jeanguenin L, Lara-Nunez A, Rodionov D, Osterman A, Komarova N, Rentsch D, et al.
Funct Integr Genomics . 2011 Sep; 12(1):25-34. PMID: 21953179
The transporter(s) that mediate uptake of nicotinate and its N-methyl derivative trigonelline are not known in plants, and certain mammalian nicotinate transporters also remain unidentified. Potential candidates for these missing...
8.
Gerdes S, El Yacoubi B, Bailly M, Blaby I, Blaby-Haas C, Jeanguenin L, et al.
BMC Genomics . 2011 Aug; 12 Suppl 1:S2. PMID: 21810204
Background: Identifying functions for all gene products in all sequenced organisms is a central challenge of the post-genomic era. However, at least 30-50% of the proteins encoded by any given...
9.
Pribat A, Blaby I, Lara-Nunez A, Jeanguenin L, Fouquet R, Frelin O, et al.
Funct Integr Genomics . 2011 May; 11(3):467-78. PMID: 21538139
A paralog (here termed COG0212) of the ATP-dependent folate salvage enzyme 5-formyltetrahydrofolate cycloligase (5-FCL) occurs in all domains of life and, although typically annotated as 5-FCL in pro- and eukaryotic...
10.
Jeanguenin L, Alcon C, Duby G, Boeglin M, Cherel I, Gaillard I, et al.
Plant J . 2011 Apr; 67(4):570-82. PMID: 21518051
A functional Shaker potassium channel requires assembly of four α-subunits encoded by a single gene or various genes from the Shaker family. In Arabidopsis thaliana, AtKC1, a Shaker α-subunit that...