참고문헌
- Ethylene in Plant Biology(2nd ed.) Abeles FB;Morgan PW;Saltveit ME Jr
- Hort Rev v.11 Physiology and biochemistry of flower petal senescence Borochov A;Woodson WR
- Plant Physiol v.115 cDNA sequence of a putative ethylene receptor from carnation petals (Accession no. AF016250) (PGR97-144) Charng Y-Y;Sun C-W;yan S-L;Chou S-J;Chen Y-R;Yang SF
- Annu Rev Genet v.32 The ethylene gas signal transduction pathway: A molecular perspective Johnson PR;Ecker JR
- Plant Mol Biol v.28 Ethylene-regulated expression of a carnation cysteine proteinase during flower petal senescence Jones M;Larsen PB;Woodson WR
- J Amer Soc Hort Sci v.124 Interorgan signaling following pollinaton in carnations Jones ML;Woodson WR
- Plant Physiol v.119 Differential expression of three members of the 1-aminocyclopropane-1-carboxylate synthase gene family in carnation Jones ML;Woodsono WR
- Ann Rev Plant Physiol Plant Mol Biol v.44 Ethylene biosynthesis Kende H
- Annu Rev Plant Physiol Plant Mol Biol v.48 The ethylene reponse pathway in Arabidopsis Kieber JJ
- Plant Physiol v.108 Pollination-induced ethylene in carnation. Role of pollen tube growth and sexual compatibility Larsen PB;Ashworth EN;Jones ML;Woodson WR
- Ethylene and Plant Development The ethylene forming enzyme system in carnation flowers Manning K;Roberts JA(ed.);Tucker GA(ed.)
- Plant Growth Regul v.20 Effects of 1,1-dimethyl-4-(phenylsulfonyl)semicarbazide (DPSS) on carnation flower longevity Midoh N;Saijou Y;Matsumoto K;Iwata M
- Ent Exp Appl v.93 Transgenic rice plant expressing a trypsin inhibitor are resistant against rice stem borers, Chiol suppressalis Mochizuki A;Nishizawa Y;Onodera H;Tabei Y;Toki S;Habu Y;Ugaki M;Ohashi Y
- Planta v.135 Sites of ethylene production in the pollinated and unpollinated senescing carnation (Dianthus caryophyllus) inflorescence Nichols R
- J. Plant Growth Regul v.2 Changes in ethylene production and 1-aminocyclopropane-1-carboxylic acid content of pollinated carnation flowers Nichols R;Bufler G;Mor Y;Fujino DW;Reid MS
- Plant Growth Regul v.30 Characteristics of the inhibitory action of 1,1-dimethyl-4-(phenylsulfonyl)semicarbazude (DPSS) on ethylene production in carnation (Dianthus caryophyllus L.) Onoue T;Mikami M;Yoshioka T;Hashiba T;Satoh S
- Plant Physiol Biocehm v.36 Programmed cell death of daylily petals: Activities of wall-based enzymes and effects of heat shock Panavas T;Reid PD;Rubinstein RB
- Plant Mol Biol v.40 Identification of senescence-associated genes from daylily petlas Panavas T;Pikula A;Reid PD;Rubinstein B;Walker EL
- Plant Mol Biol v.18 Molecular cloning of an 1-aminocyclopropane-1-carboxylate synthase from senescing carnation flower petals Park KY;Drory A;Woodson WR
- Acta Hort v.181 Levels of 1-aminocyclopropane-1-carboxylic acid (ACC) synthase activity, ACC and ACC-conjugate in cut carnation flowers during senescence Peiser G
- Plant Growth Regul v.11 Ethylene and flower senescence Reid MS;Wu M-J
- Plant Growth Regul v.23 1,1-Dimethyl-4-(phenylsulfonyl)semicarbazide (DPSS) does not inhibit the in vitro activities of 1-aminocyclopropane-1-carboxylate (ACC) oxidase and ACC synthase obtained from senescing carnation(Dianthus caryophyllus L.) petals Satoh S;Oymada N;Yoshioka T;Midoh N
- Plant Physiol v.116 A cDNA encoding a putative ethylene receptor related to petal senescence in carnation (Diianthus caryophyllus L.) flowers (Accession No. AF034770)(PGR98-019) Shibuya K;Satoh S;Yoshioka T
- Plant Physiol v.89 Reversible inhibition of ethylene action and interruption of petal senescence in carnation flowers by norbornadiene Wang H;Woodson WR
- Phil Trans R Soc Lond B v.353 The molecular basis of ethylene signalling in Arabidopsis Woeste K;Kieber JJ
- Plant Physiol v.99 Expression of ethylene biosynthetic pathway transcripts in senescing carnaton flowers Woodson WR;Park KY;Drory A;Larsen PB;Wang H
- Ann Rev Plant Physiol v.35 Ethylene biosynthesis and its regulation in higher plants Yang SF;Hoffman NE