Effects of hydrogen cyanamide on antioxidant enzymes’ activity, proline and polyamine contents during bud dormancy release in Superior Seedless grapevine buds
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[1] F. Pérez,et al. Similarities between natural and chemically induced bud-endodormancy release in grapevine Vitis vinifera L. , 2010 .
[2] J. Geuns,et al. Biochemical changes in dormant grapevine shoot tissues in response to chilling: possible role in dormancy release. , 2010 .
[3] B. Jiang,et al. Polyamines enhance chilling tolerance of cucumber (Cucumis sativus L.) through modulating antioxidative system , 2009 .
[4] D. Galbraith,et al. Gene-expression profiling of grape bud response to two alternative dormancy-release stimuli expose possible links between impaired mitochondrial activity, hypoxia, ethylene-ABA interplay and cell enlargement , 2009, Plant Molecular Biology.
[5] E. F. Walton,et al. A rapid transcriptional activation is induced by the dormancy-breaking chemical hydrogen cyanamide in kiwifruit (Actinidia deliciosa) buds , 2009, Journal of experimental botany.
[6] F. Pérez,et al. On the mechanism of dormancy release in grapevine buds: a comparative study between hydrogen cyanamide and sodium azide , 2009, Plant Growth Regulation.
[7] E. Carvajal‐Millan,et al. Metabolic activity of low chilling grapevine buds forced to break , 2009 .
[8] Tao Wu,et al. Comparison of antioxidant activities and endogenous hormone levels between bush and vine-type tropical pumpkin (Cucurbita moschata Duchesne) , 2008 .
[9] S. Lavee,et al. Similar mechanisms might be triggered by alternative external stimuli that induce dormancy release in grape buds , 2008, Planta.
[10] F. Pérez,et al. Short day-photoperiod triggers and low temperatures increase expression of peroxidase RNA transcripts and basic peroxidase isoenzyme activity in grapevine buds. , 2007, Phytochemistry.
[11] M. van der Auweraer,et al. Simultaneous liquid chromatography determination of polyamines and arylalkyl monoamines. , 2006, Analytical biochemistry.
[12] P. K. Nagar,et al. Alterations in endogenous polyamines in bulbs of tuberose (Polianthes tuberosa L.) during dormancy , 2005 .
[13] S. Verma,et al. Putrescine alleviation of growth in salt stressed Brassica juncea by inducing antioxidative defense system. , 2005, Journal of plant physiology.
[14] Sanjay Kumar,et al. Tea (Camellia sinensis (L.) O. Kuntze) clone with lower period of winter dormancy exhibits lesser cellular damage in response to low temperature. , 2005, Plant physiology and biochemistry : PPB.
[15] F. Pérez,et al. Possible role of catalase in post-dormancy bud break in grapevines. , 2005, Journal of plant physiology.
[16] R. Henry,et al. Genes associated with the end of dormancy in grapes , 2003, Functional & Integrative Genomics.
[17] R. Arora,et al. Induction and Release of Bud Dormancy in Woody Perennials: A Science Comes of Age , 2003 .
[18] P. Martínez-Gómez,et al. Chilling and heat requirements of almond cultivars for flowering , 2003 .
[19] V. Sawhney,et al. Polyamine research in plants – a changing perspective , 2002 .
[20] K. Kashiwagi,et al. Polyamines: mysterious modulators of cellular functions. , 2000, Biochemical and biophysical research communications.
[21] R. Stanton,et al. Importance of glucose-6-phosphate dehydrogenase activity in cell death. , 1999, American journal of physiology. Cell physiology.
[22] A. Bouchereau,et al. Polyamines and environmental challenges : recent development , 1999 .
[23] K. Stuhlmeier,et al. Importance of Glucose-6-phosphate Dehydrogenase Activity for Cell Growth* , 1998, The Journal of Biological Chemistry.
[24] E. F. Walton,et al. Regulation of proline biosynthesis in kiwifruit buds with and without hydrogen cyanamide treatment , 1998 .
[25] R. Valcke,et al. Sterols and polyamines in ipt-transformed tobacco plants , 1997 .
[26] G. Lang. Plant Dormancy: Physiology, Biochemistry and Molecular Biology , 1996 .
[27] N. Dokoozlian,et al. Chilling Exposure and Hydrogen Cyanamide Interact in Breaking Dormancy of Grape Buds , 1995 .
[28] A. Erez. MEANS TO COMPENSATE FOR INSUFFICIENT CHILLING TO IMPROVE BLOOM AND LEAFING , 1995 .
[29] P. Balandier,et al. Leaf bud endodormancy release in peach trees: evaluation of temperature models in temperate and tropical climates , 1993 .
[30] E. F. Walton,et al. Effect of Hydrogen Cyanamide on Amino Acid Profiles in Kiwifruit Buds during Budbreak. , 1991, Plant physiology.
[31] E. Weiler,et al. Changes in Xylem Constituents in Response to Rest-breaking Agents Applied to Apple before Budbreak , 1991 .
[32] L. Fuchigami,et al. Degree Growth Stage Model and Rest-breaking Mechanisms in Temperate Woody Perennials , 1987, HortScience.
[33] M. Faust,et al. Breaking bud dormancy in apple with a plant bioregulator, thidiazuron. , 1986 .
[34] S. Srivastava,et al. Regulation of bound peroxidase by polyamines and guanidines in maize scutellum , 1985 .
[35] H. Greppin,et al. Interaction of polyamines or their precursors with the calcium-controlled secretion of peroxidase by sugarbeet cells , 1984, Experientia.
[36] H. Lenhoff,et al. A sensitive and versatile chromogenic assay for peroxidase and peroxidase-coupled reactions. , 1980, Analytical biochemistry.
[37] M. M. Bradford. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. , 1976, Analytical biochemistry.
[38] H. Khemira,et al. ESTIMATION OF CHILLING REQUIREMENT AND EFFECT OF HYDROGEN CYANAMIDE ON BUDBREAK AND FRUIT CHARACTERISTICS OF 'SUPERIOR SEEDLESS' TABLE GRAPE CULTIVATED IN A MILD WINTER CLIMATE , 2010 .
[39] M. Benavides,et al. Polyamines and abiotic stress: recent advances , 2007, Amino Acids.
[40] N. Sreenivasulu,et al. Regulation of proline biosynthesis, degradation, uptake and transport in higher plants: Its implications in plant growth and abiotic stress tolerance , 2005 .
[41] K. Paschalidis,et al. Spatial and Temporal Distribution of Polyamine Levels and Polyamine Anabolism in Different Organs/Tissues of the Tobacco Plant. Correlations with Age, Cell Division/Expansion, and Differentiation , 2005 .
[42] M. Wahlqvist,et al. A model for the role of the proline-linked pentose-phosphate pathway in phenolic phytochemical bio-synthesis and mechanism of action for human health and environmental applications. , 2004, Asia Pacific journal of clinical nutrition.
[43] G. Tonon,et al. Effect of NaCl and mannitol iso-osmotic stresses on proline and free polyamine levels in embryogenic Fraxinus angustifolia callus. , 2004, Journal of plant physiology.
[44] A. Fennell,et al. Dormancy in grape buds: isolation and characterization of catalase cDNA and analysis of its expression following chemical induction of bud dormancy release☆ , 2002 .
[45] M. Kirkham,et al. Drought-Stress-Induced Changes in Activities of Superoxide Dismutase, Catalase, and Peroxidase in Wheat Species , 1994 .
[46] M. Faust,et al. Changes in Polyamine Content during Dormancy in Flower Buds of 'Anna' Apple , 1994 .
[47] A. Galston,et al. Polyamines as Endogenous Growth Regulators , 1987 .
[48] M. Saure. Dormancy release in deciduous fruit trees , 1985 .
[49] H. Aebi,et al. Catalase in vitro. , 1984, Methods in enzymology.