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Early transcriptomic events in microdissected Arabidopsis nematode-induced giant cells.Molecular Transducers from Roots Are Triggered in Arabidopsis Leaves by Root-Knot Nematodes for Successful Feeding Site Formation: A Conserved Post-Embryogenic De novo Organogenesis Program?Organ accumulation and subcellular location of Cicer arietinum ST1 protein.Differentially expressed small RNAs in Arabidopsis galls formed by Meloidogyne javanica: a functional role for miR390 and its TAS3-derived tasiRNAs.Long-Term In Vitro System for Maintenance and Amplification of Root-Knot Nematodes in Cucumis sativus Roots.Altered sucrose synthase and invertase expression affects the local and systemic sugar metabolism of nematode-infected Arabidopsis thaliana plants.Transcriptomic signatures of transfer cells in early developing nematode feeding cells of Arabidopsis focused on auxin and ethylene signaling.Characterization of microRNAs from Arabidopsis galls highlights a role for miR159 in the plant response to the root-knot nematode Meloidogyne incognita.Root-Knot and Cyst Nematodes Activate Procambium-Associated Genes in Arabidopsis Roots.A Standardized Method to Assess Infection Rates of Root-Knot and Cyst Nematodes in Arabidopsis thaliana Mutants with Alterations in Root Development Related to Auxin and Cytokinin Signaling.Phenotyping nematode feeding sites: three-dimensional reconstruction and volumetric measurements of giant cells induced by root-knot nematodes in Arabidopsis.Genes co-regulated with LBD16 in nematode feeding sites inferred from in silico analysis show similarities to regulatory circuits mediated by the auxin/cytokinin balance in Arabidopsis.Two closely related members of Arabidopsis 13-lipoxygenases (13-LOXs), LOX3 and LOX4, reveal distinct functions in response to plant-parasitic nematode infection.NEMATIC: a simple and versatile tool for the in silico analysis of plant-nematode interactions.Anatomical Alterations in Plant Tissues Induced by Plant-Parasitic Nematodes.A role for the gene regulatory module microRNA172/TARGET OF EARLY ACTIVATION TAGGED 1/FLOWERING LOCUS T (miRNA172/TOE1/FT) in the feeding sites induced by Meloidogyne javanica in Arabidopsis thaliana.A Phenotyping Method of Giant Cells from Root-Knot Nematode Feeding Sites by Confocal Microscopy Highlights a Role for CHITINASE-LIKE 1 in Arabidopsis.A role for ALF4 during gall and giant cell development in the biotic interaction between Arabidopsis and Meloidogyne spp.Arabidopsis HIPP27 is a host susceptibility gene for the beet cyst nematode Heterodera schachtii.The Role of Programmed Cell Death Regulator LSD1 in Nematode-Induced Syncytium Formation.A role for LATERAL ORGAN BOUNDARIES-DOMAIN 16 during the interaction Arabidopsis-Meloidogyne spp. provides a molecular link between lateral root and root-knot nematode feeding site developmentRoot-knot nematodes induce gall formation by recruiting developmental pathways of post-embryonic organogenesis and regeneration to promote transient pluripotencySilenced retrotransposons are major rasiRNAs targets in Arabidopsis galls induced by Meloidogyne javanica
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description
Spaans onderzoeker
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investigador español
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researcher ORCID: 0000-0002-9277-4876
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name
Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera
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Javier Cabrera
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Javier Cabrera Chaves
@ca
Javier Cabrera Chaves
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Javier Cabrera Chaves
@es
Javier Cabrera Chaves
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Javier Cabrera Chaves
@ga
Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera
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Javier Cabrera
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Javier Cabrera
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera Chaves
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Javier Cabrera
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Javier Cabrera
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P106
P1477
Javier Cabrera Chaves
@es
P1950
P21
P214
26149841762202840756
P27
P31
P496
0000-0002-9277-4876