Florence Guerard
Overview
Explore the profile of Florence Guerard including associated specialties, affiliations and a list of published articles.
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25
Citations
300
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Recent Articles
1.
Lejeune C, Abreu S, Guerard F, Askora A, David M, Chaminade P, et al.
Microb Biotechnol
. 2024 Aug;
17(8):e14538.
PMID: 39093579
Chassis strains, derived from Streptomyces coelicolor M145, deleted for one or more of its four main specialized metabolites biosynthetic pathways (CPK, CDA, RED and ACT), in various combinations, were constructed...
2.
Favreau B, Gaal C, Pereira de Lima I, Droc G, Roques S, Sotillo A, et al.
Plant Environ Interact
. 2023 Oct;
4(5):229-257.
PMID: 37822730
Rice is more vulnerable to drought than maize, wheat, and sorghum because its water requirements remain high throughout the rice life cycle. The effects of drought vary depending on the...
3.
Apel C, Levasseur M, Lejeune C, Korch S, Guerard F, David M, et al.
Front Cell Dev Biol
. 2023 Mar;
11:1129009.
PMID: 36968208
ATP wasting is recognized as an efficient strategy to enhance metabolic activity and productivity of specific metabolites in several microorganisms However, such strategy has been rarely implemented in species whereas...
4.
Messant M, Hani U, Hennebelle T, Guerard F, Gakiere B, Gall A, et al.
Plant Physiol
. 2023 Feb;
192(1):356-369.
PMID: 36722179
Manganese (Mn) is an essential metal for plant growth. The most important Mn-containing enzyme is the Mn4CaO5 cluster that catalyzes water oxidation in photosystem II (PSII). Mn deficiency primarily affects...
5.
Lelarge-Trouverie C, Mhamdi A, Guerard F, Noctor G
Methods Mol Biol
. 2022 Jun;
2526:215-223.
PMID: 35657523
Measuring quantitative changes in plant hormones and derivatives is crucial to understand how reactive oxygen species trigger signaling cascades to regulate stress responses. In this chapter, we describe the liquid...
6.
Aubry E, Hoffmann B, Vilaine F, Gilard F, Klemens P, Guerard F, et al.
Plant Physiol
. 2021 Dec;
188(2):1229-1247.
PMID: 34865141
In Angiosperms, the development of the vascular system is controlled by a complex network of transcription factors. However, how nutrient availability in the vascular cells affects their development remains to...
7.
Nicoud Q, Lamouche F, Chaumeret A, Balliau T, Le Bars R, Bourge M, et al.
mSystems
. 2021 May;
6(3).
PMID: 33975972
Legume plants can form root organs called nodules where they house intracellular symbiotic rhizobium bacteria. Within nodule cells, rhizobia differentiate into bacteroids, which fix nitrogen for the benefit of the...
8.
Luo J, Have M, Clement G, Tellier F, Balliau T, Launay-Avon A, et al.
J Exp Bot
. 2020 Jul;
71(20):6471-6490.
PMID: 32687580
Plants have fundamental dependences on nitrogen and sulfur and frequently have to cope with chronic limitations when their supply is sub-optimal. This study aimed at characterizing the metabolomic, proteomic, and...
9.
Tcherkez G, Guerard F, Gilard F, Lamothe M, Mauve C, Gout E, et al.
Funct Plant Biol
. 2020 Jun;
41(3):330.
PMID: 32480993
Many horticultural and natural plant species have variegated leaves, that is, patchy leaves with green and non-green or white areas. Specific studies on the metabolism of variegated leaves are scarce...
10.
Guerard F, de Bont L, Gakiere B, Tcherkez G
Funct Plant Biol
. 2020 Jun;
44(6):624-634.
PMID: 32480593
Application of metabolomics techniques to plant physiology is now considerable, and LC-MS is often being used for non-targeted, semi-quantitative analysis of effects caused by mutations or environmental conditions. However, examination...