|Related Categories||Auxins, Molecular Biology, Plant Biotechnology, Plant Growth Regulators, Plant Tissue Culture More...|
|suitability||plant cell culture tested|
Indole-3-butyric acid (IBA) is auxin-family plant hormone. IBA is thought to be a precursor of indole-3-acetic acid (IAA) the most abundant and the basic auxin natively occurring and functioning in plants. IAA generates the majority of auxin effects in intact plants, and is the most potent native auxin.
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Arabidopsis PIS1 encodes the ABCG37 transporter of auxinic compounds including the auxin precursor indole-3-butyric acid. Ruzicka K, Strader LC, Bailly A, Yang H, et. al. Proc. Natl. Acad. Sci. U. S. A. 107, 10749-10753, (2010)
Control of in vitro rooting and plant development in Corymbia maculata by silver nitrate, silver thiosulfate and thiosulfate ion. Steinitz B, Barr N, Tabib Y, et. al. Plant Cell Rep. 29, 1315-1323, (2010)
Identification of genes involved in indole-3-butyric acid-induced adventitious root formation in nodal cuttings of Camellia sinensis (L.) by suppression subtractive hybridization. Wei K, Wang L, Cheng H, et al. Gene 514(2), 91-8, (2013)
How do galactoglucomannan oligosaccharides regulate cell growth in epidermal and cortical tissues of mung bean seedlings? Richterová-Kučerová D, Kollárová K, Zelko I, et al. Plant Physiol. Biochem. 57, 154-8, (2012)
A liquid chromatography tandem mass spectrometry method for simultaneous determination of acid/alkaline phytohormones in grapes. Han Z, Liu G, Rao Q, et al. J. Chromatogr. B. Analyt. Technol. Biomed. Life Sci. 881-882, 83-9, (2012)
[Cutting propagation of Periploca forrestii and dynamic analyses of physiological and biochemical characteristitics related to adventitious roots formation]. Gao J, Zeng XF, Liu XH, et al. Zhong Yao Cai 34(6), 841-5, (2011)
Melatonin promotes adventitious root regeneration in in vitro shoot tip explants of the commercial sweet cherry rootstocks CAB-6P (Prunus cerasus L.), Gisela 6 (P. cerasus × P. canescens), and MxM 60 (P. avium × P. mahaleb). Sarropoulou VN, Therios IN, and Dimassi-Theriou KN J. Pineal Res. 52(1), 38-46, (2012)
Assisted phytoremediation of mixed metal(loid)-polluted pyrite waste: effects of foliar and substrate IBA application on fodder radish. Vamerali T, Bandiera M, Hartley W, et al. Chemosphere 84(2), 213-9, (2011)
Root cultures of Hypericum perforatum subsp. angustifolium elicited with chitosan and production of xanthone-rich extracts with antifungal activity. Tocci N, Simonetti G, D'Auria FD, et al. Appl. Microbiol. Biotechnol. 91(4), 977-87, (2011)
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