Ethylene and carbon dioxide production by developing strawberries show a correlative pattern that is indicative of ripening climacteric fruit
暂无分享,去创建一个
Howard V. Davies | Euan K. James | E. James | F. Harren | N. Medina-Escobar | H. Davies | P. Iannetta | M. McManus | L. Laarhoven | Frans J. M. Harren | Pietro P. M. Iannetta | Luc-Jan Laarhoven | Nieves Medina-Escobar | Michael T. McManus | N. Medina-Escobar | Nieves Medina-Escobar
[1] B. Day. Fruit and vegetables , 1993 .
[2] J. Pech,et al. Expression of ACC oxidase antisense gene inhibits ripening of cantaloupe melon fruits , 1996, Nature Biotechnology.
[3] A. Reddy,et al. Molecular cloning of cDNAs for auxin-induced mRNAs and developmental expression of the auxin-inducible genes , 1990, Plant Molecular Biology.
[4] D. Nutrition. Fruit and vegetables , 2004 .
[5] R. Wills,et al. 1-Methylcyclopropene Can Differentially Affect the Postharvest Life of Strawberries Exposed to Ethylene , 1999 .
[6] D. Grierson,et al. Altered Gene Expression, Leaf Senescence, and Fruit Ripening by Inhibiting Ethylene Synthesis with EFE-Antisense Genes , 1993 .
[7] S. Yoo,et al. Expression of 1-aminocyclopropane-1-carboxylate oxidase during leaf ontogeny in white clover. , 1999, Plant physiology.
[8] S. Stürzenbaum,et al. The identification, cloning and characterization of earthworm metallothionein , 1998, FEBS letters.
[9] Gun-Hee Kim,et al. Interaction of enhanced carbon dioxide and reduced ethylene on the storage life of strawberries , 1998 .
[10] D. Joyce,et al. 1-Methylcyclopropene treatment affects strawberry fruit decay , 2001 .
[11] T. Leustek,et al. The cystathionine-γ-synthase gene involved in methionine biosynthesis is highly expressed and auxin-repressed during wild strawberry (Fragaria vesca L.) fruit ripening , 2000, Theoretical and Applied Genetics.
[12] V. Valpuesta,et al. Pectin esterase gene family in strawberry fruit: study of FaPE1, a ripening-specific isoform. , 2004, Journal of experimental botany.
[13] D. Huber,et al. Characterization of ethylene production in developing strawberry fruit , 1995, Plant Growth Regulation.
[14] D. Gong,et al. Purification and characterisation of two ACC oxidases expressed differentially during leaf ontogeny in white clover , 2000 .
[15] H. Ross,et al. Starch metabolism in developing strawberry (Fragaria × ananassa) fruits , 2004 .
[16] Hilko van der Voet,et al. Identification of the SAAT Gene Involved in Strawberry Flavor Biogenesis by Use of DNA Microarrays , 2000, Plant Cell.
[17] G. Casadoro,et al. Different ethylene receptors show an increased expression during the ripening of strawberries: does such an increment imply a role for ethylene in the ripening of these non-climacteric fruits? , 2005, Journal of experimental botany.
[18] V. Valpuesta,et al. Cloning and characterization of cDNAs from genes differentially expressed during the strawberry fruit ripening process by a MAST-PCR-SBDS method. , 1997, Analytical biochemistry.
[19] H. Ross,et al. Identification, cloning and expression analysis of strawberry (Fragaria x ananassa) mitochondrial citrate synthase and mitochondrial malate dehydrogenase. , 2004, Physiologia plantarum.
[20] J. Giovannoni,et al. MOLECULAR BIOLOGY OF FRUIT MATURATION AND RIPENING. , 2001, Annual review of plant physiology and plant molecular biology.
[21] D. Huber,et al. In vitro growth and ripening of strawberry fruit in the presence of ACC, STS or propylene , 1996 .
[22] E. James,et al. Development of N2‐fixing nodules on the wetland legume Lotus uliginosus exposed to conditions of flooding , 1999 .
[23] J. Nitsch. GROWTH AND MORPHOGENESIS OF THE STRAWBERRY AS RELATED TO AUXIN , 1950 .
[24] J. Alonso,et al. Evidence for the involvement of ethylene in the expression of specific RNAs during maturation of the orange, a non-climacteric fruit , 1995, Plant Molecular Biology.
[25] D. Huber,et al. Ethylene feedback mechanisms in tomato and strawberry fruit tissues in relation to fruit ripening and climacteric patterns , 2000 .
[26] G. Kim,et al. Effect of ethylene on postharvest life of strawberries , 1995 .
[27] N. Hoffman,et al. Ethylene biosynthesis and its regulation in higher plants , 1984 .
[28] A. Reddy,et al. Molecular cloning and sequencing of a cDNA for an auxin-repressed mRNA: correlation between fruit growth and repression of the auxin-regulated gene , 1990, Plant Molecular Biology.
[29] Ewa KepczynAska. Ethylene requirement during germination of Botrytis cinerea spores , 1989 .
[30] J. Roustan,et al. Ethylene seems required for the berry development and ripening in grape, a non-climacteric fruit , 2004 .
[31] Filip Vandenbussche,et al. Circadian Rhythms of Ethylene Emission in Arabidopsis1[w] , 2004, Plant Physiology.
[32] D. Burmeister,et al. Responses of strawberry fruit to 1-Methylcyclopropene (1-MCP) and ethylene , 2000, Plant Growth Regulation.
[33] K. Golden,et al. ACC oxidase from Carica papaya: Isolation and characterization , 1998 .
[34] P. Chatelet,et al. Involvement of ethylene signalling in a non-climacteric fruit: new elements regarding the regulation of ADH expression in grapevine. , 2004, Journal of experimental botany.
[35] A. Bauchot,et al. Ethylene biosynthesis and respiration in strawberry fruit treated with diazocyclopentadiene and IAA , 1997, Plant Growth Regulation.
[36] M. Venis,et al. Hormonal regulation of ripening in the strawberry, a non-climacteric fruit , 1988, Planta.
[37] M. Serek,et al. Compounds controlling the ethylene receptor , 1999 .
[38] F. Harren,et al. Geometrical optimization of a longitudinal resonant photoacoustic cell for sensitive and fast trace gas detection , 1996 .