Tom Beeckman
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Explore the profile of Tom Beeckman including associated specialties, affiliations and a list of published articles.
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213
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10545
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Recent Articles
11.
Motte H, Parizot B, Xuan W, Chen Q, Maere S, Bensmihen S, et al.
Plant J
. 2023 Oct;
116(4):1052-1063.
PMID: 37793018
Lateral roots are crucial for plant growth and development, making them an important target for research aiming to improve crop yields and food security. However, their endogenous ontogeny and, as...
12.
Zeng Y, Verstraeten I, Trinh H, Lardon R, Schotte S, Olatunji D, et al.
New Phytol
. 2023 Oct;
240(5):1883-1899.
PMID: 37787103
Upon exposure to light, etiolated Arabidopsis seedlings form adventitious roots (AR) along the hypocotyl. While processes underlying lateral root formation are studied intensively, comparatively little is known about the molecular...
13.
Morales-Herrera S, Jourquin J, Coppe F, Lopez-Galvis L, De Smet T, Safi A, et al.
Proc Natl Acad Sci U S A
. 2023 Sep;
120(40):e2302996120.
PMID: 37748053
Plant roots explore the soil for water and nutrients, thereby determining plant fitness and agricultural yield, as well as determining ground substructure, water levels, and global carbon sequestration. The colonization...
14.
Wang Q, De Gernier H, Duan X, Xie Y, Geelen D, Hayashi K, et al.
New Phytol
. 2023 Sep;
240(5):1900-1912.
PMID: 37743759
Lateral root (LR) positioning and development rely on the dynamic interplay between auxin production, transport but also inactivation. Nonetheless, how the latter affects LR organogenesis remains largely uninvestigated. Here, we...
15.
Beeckman F, Drozdzecki A, De Knijf A, Corrochano-Monsalve M, Bode S, Blom P, et al.
J Environ Manage
. 2023 Sep;
346:118996.
PMID: 37725864
Nitrogen (N) fertilization is crucial to sustain global food security, but fertilizer N production is energy-demanding and subsequent environmental N losses contribute to biodiversity loss and climate change. N losses...
16.
Liu W, Cai G, Zhai N, Wang H, Tang T, Zhang Y, et al.
Curr Biol
. 2023 Sep;
33(19):4085-4097.e5.
PMID: 37716350
The evolution of roots allowed vascular plants to adapt to land environments. Fossil evidence indicates that roots evolved independently in euphyllophytes (ferns and seed plants) and lycophytes, the two lineages...
17.
Yang X, Poelmans W, Grones C, Lakehal A, Pevernagie J, Van Bel M, et al.
Curr Biol
. 2023 Sep;
33(19):4069-4084.e8.
PMID: 37683643
Plant roots originated independently in lycophytes and euphyllophytes, whereas early vascular plants were rootless. The organization of the root apical meristem in euphyllophytes is well documented, especially in the model...
18.
Xie Y, Lv Y, Jia L, Zheng L, Li Y, Zhu M, et al.
Nat Plants
. 2023 Aug;
9(9):1514-1529.
PMID: 37604972
Ammonium toxicity affecting plant metabolism and development is a worldwide problem impeding crop production. Remarkably, rice (Oryza sativa L.) favours ammonium as its major nitrogen source in paddy fields. We...
19.
Phase separation-based visualization of protein-protein interactions and kinase activities in plants
Safi A, Smagghe W, Goncalves A, Wang Q, Xu K, Fernandez A, et al.
Plant Cell
. 2023 Jun;
35(9):3280-3302.
PMID: 37378595
Protein activities depend heavily on protein complex formation and dynamic posttranslational modifications, such as phosphorylation. The dynamic nature of protein complex formation and posttranslational modifications is notoriously difficult to monitor...
20.
Stael S, Sabljic I, Audenaert D, Andersson T, Tsiatsiani L, Kumpf R, et al.
Proc Natl Acad Sci U S A
. 2023 May;
120(22):e2303480120.
PMID: 37216519
Metacaspases are part of an evolutionarily broad family of multifunctional cysteine proteases, involved in disease and normal development. As the structure-function relationship of metacaspases remains poorly understood, we solved the...