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Béate HOFFMANN
Assistante-Ingénieure
Carbone, Allocation, Transport, Signalisation
présentation
publications
équipes
Publications IJPB (2006-présent)
Filtrer par année :
2022
2021
2018
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2014
2011
Hoffmann B
,
Aubry E
,
Marmagne A
,
Dinant S
,
Chardon F
,
Le Hir R
(2022).
Impairment of sugar transport in the vascular system acts on nitrogen remobilisation and nitrogen use efficiency in Arabidopsis.
Physiol Plant, e13830.
PubMed
|
DOI
Aubry E
,
Hoffmann B
,
Vilaine F
, Gilard F, Klemens PAW, Guérard F, Gakière B, Neuhaus HE,
Bellini C
,
Dinant S
,
Le Hir R
(2022).
A vacuolar hexose transport is required for xylem development in the inflorescence stem.
Plant Physiol, 188(2):1229-1247.
PubMed
|
DOI
Lopez-Obando M,
Guillory A
,
Boyer FD
, Cornu D,
Hoffmann B
,
Le Bris P
, Pouvreau JB, Delavault P,
Rameau C
,
De Saint Germain A
,
Bonhomme S
(2021).
The Physcomitrium (Physcomitrella) patens PpKAI2L receptors for strigolactones and related compounds function via MAX2-dependent and -independent pathways.
Plant Cell, 33(11):3487-3512.
PubMed
|
DOI
Lopez-Obando M, De Villiers R,
Hoffmann B
, Ma L,
De Saint Germain A
, Kossmann J, Coudert Y, Harrison CJ,
Rameau C
, Hills P,
Bonhomme S
(2018).
Physcomitrella patens MAX2 characterization suggests an ancient role for this F-box protein in photomorphogenesis rather than strigolactone signalling.
New Phytol, 219:743-756.
PubMed
|
DOI
Lopez-Obando M, Conn CE,
Hoffmann B
, Bythell-Douglas R, Nelson DC,
Rameau C
,
Bonhomme S
(2016).
Structural modelling and transcriptional responses highlight a clade of PpKAI2-LIKE genes as candidate receptors for strigolactones in Physcomitrella patens.
Planta, 243:1441-1453.
PubMed
|
DOI
Lopez-Obando M,
Hoffmann B
,
Géry C
,
Guyon-Debast A
,
Téoulé E
,
Rameau C
,
Bonhomme S
,
Nogué F
(2016).
Simple and Efficient Targeting of Multiple Genes Through CRISPR-Cas9 in Physcomitrella patens.
G3, 6:3647-3653.
PubMed
|
DOI
Hoffmann B
,
Proust H
,
Belcram K
, Labrune C,
Boyer FD
,
Rameau C
,
Bonhomme S
(2014).
Strigolactones inhibit caulonema elongation and cell division in the moss Physcomitrella patens.
PLoS One, 9:e99206.
PubMed
|
DOI
Proust H
,
Hoffmann B
, Xie X, Yoneyama K, Schaefer DG,
Nogué F
,
Rameau C
(2011).
Strigolactones regulate protonema branching and act as a quorum sensing-like signal in the moss Physcomitrella patens.
Development, 138:1531-1539.
PubMed
|
DOI
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