Marc Hanikenne
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Explore the profile of Marc Hanikenne including associated specialties, affiliations and a list of published articles.
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53
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2269
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Recent Articles
11.
Thiebaut N, Hanikenne M
J Exp Bot
. 2021 Nov;
73(6):1699-1716.
PMID: 34791143
Zinc (Zn) deficiency is a widespread phenomenon in agricultural soils worldwide and has a major impact on crop yield and quality, and hence on human nutrition and health. Although dicotyledonous...
12.
Spielmann J, Detry N, Thiebaut N, Jadoul A, Schloesser M, Motte P, et al.
Plant Cell Environ
. 2021 Oct;
45(1):206-219.
PMID: 34628686
Metallic micronutrients are essential throughout the plant life cycle. Maintaining metal homeostasis in plant tissues requires a highly complex and finely tuned network controlling metal uptake, transport, distribution and storage....
13.
Thiriet-Rupert S, Gain G, Jadoul A, Vigneron A, Bosman B, Carnol M, et al.
Plant Physiol
. 2021 Oct;
187(3):1653-1678.
PMID: 34618070
Increasing industrial and anthropogenic activities are producing and releasing more and more pollutants in the environment. Among them, toxic metals are one of the major threats for human health and...
14.
Amini S, Arsova B, Gobert S, Carnol M, Bosman B, Motte P, et al.
Plant Cell Environ
. 2021 Jul;
44(10):3376-3397.
PMID: 34263935
The biological processes underlying zinc homeostasis are targets for genetic improvement of crops to counter human malnutrition. Detailed phenotyping, ionomic, RNA-Seq analyses and flux measurements with Zn isotope revealed whole-plant...
15.
Corso M, An X, Jones C, Gonzalez-Doblas V, Schvartzman M, Malkowski E, et al.
New Phytol
. 2021 Jan;
230(2):669-682.
PMID: 33421150
Metallophytes constitute powerful models for the study of metal homeostasis, adaptation to extreme environments and the evolution of naturally selected traits. Arabidopsis halleri is a pseudometallophyte which shows constitutive zinc/cadmium...
16.
Hanikenne M, Esteves S, Fanara S, Rouached H
J Exp Bot
. 2020 Nov;
72(6):2136-2153.
PMID: 33175167
In plants, iron (Fe) transport and homeostasis are highly regulated processes. Fe deficiency or excess dramatically limits plant and algal productivity. Interestingly, complex and unexpected interconnections between Fe and various...
17.
Deflandre B, Thiebaut N, Planckaert S, Jourdan S, Anderssen S, Hanikenne M, et al.
Biochim Biophys Acta Gene Regul Mech
. 2020 Aug;
1863(10):194615.
PMID: 32758700
In the plant pathogen Streptomyces scabies, the gene bglC encodes a GH1 family cellobiose beta-glucosidase that is both required for primary metabolism and for inducing virulence of the bacterium. Deletion...
18.
Ceasar S, Lekeux G, Motte P, Xiao Z, Galleni M, Hanikenne M
Front Plant Sci
. 2020 Jun;
11:560.
PMID: 32528485
Cadmium (Cd) is highly toxic to the environment and humans. Plants are capable of absorbing Cd from the soil and of transporting part of this Cd to their shoot tissues....
19.
Spielmann J, Ahmadi H, Scheepers M, Weber M, Nitsche S, Carnol M, et al.
Plant Cell Environ
. 2020 May;
43(9):2143-2157.
PMID: 32445418
Plants have the ability to colonize highly diverse environments. The zinc and cadmium hyperaccumulator Arabidopsis halleri has adapted to establish populations on soils covering an extreme range of metal availabilities....
20.
Scheepers M, Spielmann J, Boulanger M, Carnol M, Bosman B, De Pauw E, et al.
Plant J
. 2019 Nov;
102(1):34-52.
PMID: 31721347
FRD3 (FERRIC REDUCTASE DEFECTIVE 3) plays a major role in iron (Fe) and zinc (Zn) homeostasis in Arabidopsis. It transports citrate, which enables metal distribution in the plant. An frd3...