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Application of data fusion modeling for the prediction of auxin response elements in Zea mays for food security purposes
Nesrine Sghaier, Rayda Ben Ayed, Ahmed Rebai
Genomics Inform. 2022;20(4):e45  Published online December 30, 2022
DOI: https://doi.org/10.5808/gi.22056

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Application of data fusion modeling for the prediction of Auxin response elements in Zea mays for food security purposes
Genomics & Informatics. 2022;20(4):e45   Crossref logo
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Prediction of auxin response elements based on data fusion in Arabidopsis thaliana
Molecular Biology Reports. 2018;45(5):763-772   Crossref logo
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Structure-activity relationships of auxin-like plant growth regulators and genetic influences on the culture induction response in maize (Zea mays L.)
Plant Science. 1989;61(2):245-252   Crossref logo
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Maize (Zea mays)
The Ecology of Tropical Food Crops. 1995;126-144   Crossref logo
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Auxin Dependent Growth and Auxin-Binding Proteins in Primary Roots and Root Hairs of Corn (Zea mays L.)
Journal of Plant Physiology. 1993;141(6):698-703   Crossref logo
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Auxin-binding protein from coleoptile membranes of corn (Zea mays L.). II. Localization of a putative auxin receptor.
Journal of Biological Chemistry. 1985;260(17):9854-9859   Crossref logo
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Influence of Ultraviolet Radiation on Auxin Transport in Zea mays L.
Zeitschrift für Pflanzenphysiologie. 1976;80(4):306-309   Crossref logo
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The Mu Elements of Zea mays
Advances in Genetics. 1992;77-122   Crossref logo
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Essential Elements, Cadmium and Lead in Fresh and Canned Corn (Zea mays L.)
Journal of Food Science. 1985;50(6):1760-1761   Crossref logo
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Unraveling the role of PIN auxin efflux carriers in mediating polar auxin transport and accumulation in Zea mays: phylogenetic analysis, expression patterns and subcellular trafficking
Journal of Biotechnology. 2010;150:110-111   Crossref logo
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