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Publicaciones científicas
A cDNA Encoding an HD-Zip Protein from Sunflower
A monomer–dimer equilibrium modulates the interaction of the sunflower homeodomain leucine-zipper protein Hahb-4 with DNA
Hahb-4, a homeobox-leucine zipper gene potentially involved in abscisic acid-dependent responses to water stress in sunflower
Hahb-4, a sunflower homeobox-leucine zipper gene, is a developmental regulator and confers drought tolerance to Arabidopsis thaliana plants
The promoter of the sunflower HD-Zip protein gene Hahb4 directs tissue-specific expression and is inducible by water stress, high salt concentrations and ABA
Cross-talk between ethylene and drought signalling pathways is mediated by the sunflower Hahb-4 transcription factor
HD-Zip I and II, Transcription Factors Involved in the Adaptive Response to Environmental Stress
The intron of the Arabidopsis thaliana COX5c gene is able to improve the drought tolerance conferred by the sunXower Hahb-4 transcription factor
The sunflower HD-Zip transcription factor HAHB4 is up-regulated in darkness, reducing the transcription of photosynthesis-related genes
Two ABREs, two redundant root-specific and one W-box cis-acting elements are functional in the sunflower HAHB4 promoter
HAHB4, a sunflower HD-Zip protein, integrates signals from the jasmonic acid and ethylene pathways during wounding and biotic stress responses
The use of sunflower transcription factors as biotechnological tools to improve yield and stress tolerance in crops
HAHB10, a sunflower HD-Zip II transcription factor, participates in the induction of flowering and in the control of phytohormone-mediated responses to biotic stress
A role for LAX2 in regulating xylem development and lateral-vein symmetry in the leaf
Compositional equivalence of event INDØØ412-7 to non-transgenic wheat
Field-grown transgenic wheat expressing the sunflower gene HaHB4 significantly outyields the wild type
Successful field performance in dry-warm environments of soybean expressing the sunflower transcription factor HaHB4
RENDIMENTO ATINGÍVEL DE TRIGO NA ARGENTINA UTILIZANDO UMA CULTIVAR ELITE QUE EXPRESSA O GENE HaHB4
An Interdisciplinary Approach to Study the Performance of Second-generation Genetically Modified Crops in Field Trials: A Case Study With Soybean and Wheat Carrying the Sunflower HaHB4 Transcription Factor