Warianty tytułu
Wplyw estru metylowego kwasu jasmonowego na produkcje etylenu, aktywnosc oksydazy ACC i wydzielanie dwutlenku wegla w owocach zolto-pomaranczowej odmiany pomidorow
Języki publikacji
Abstrakty
The yellowish-tangerine tomato (cv. Bursztyn) in the green, light yellow and yellow stages of ripening were treated with 0.1% and 1.0% of methyl jasmonate (JA-Me) in lanolin paste and kept for several days and then they were evaluated for production of ethylene, ACC oxidase activity and C02 evolution. Production of endogenous ethylene in mature green fruits was low and increased during ripening. JA-Me stimulated ethylene production and ACC oxidase activity in all investigated stages of fruit ripening. Slices excised from mature green fruits produced highest amount of carbon dioxide as compared to more advanced stages of ripening. JA-Me in 0.1% and 1.0% concentrations increased significantly C02 evolution in green fruits, while in light yellow and yellow fruits only higher concentration of JA-Me stimulated carbon dioxide production. Wpływ estru metylowego kwasu jasmonowego na produkcję etylenu, aktywność oksydazy ACC i wydzielanie dwutlenku węgla w owocach żółto-pomarańczowej odmiany pomidorów
Produkcja endogennego etylenu w wyrośniętych zielonych pomidorach odmiany żółto-pomarańczowej Bursztyn byla niska i wzrastała w miarę ich dojrzewania. Ester metylowy kwasu jasmonowego (JA-Me) zwiększał zarówno produkcję etylenu jak i aktywność oksydazy ACC we wszystkich stadiach dojrzałości owoców. Wycinki z owoców zielonych wydzielały istotnie więcej dwutlenku węgla niż wycinki pobrane z owoców bardziej dojrzałych. JA-Me w stężeniach 0.1% i 1.0% zwiększał wydzielanie C02 w wycinkach owoców zielonych, natomiast w owocach bardziej dojrzałych tylko stężenie 1.0% JA-Me powodowało nieznaczny wzrost produkcji dwutlenku węgla.
Wydawca
Czasopismo
Rocznik
Tom
Numer
Strony
67-72
Opis fizyczny
s.67-72,rys.,bibliogr.
Twórcy
autor
- Reserch Institute of Vegetable Crops, Konstytucji 3 Maja 1/3, 96-100 Skierniewice
autor
- Research Institute of Pomology and Floriculture, Pomologiczna 18, 96-100 Skierniewice
autor
- Research Institute of Pomology and Floriculture, Pomologiczna 18, 96-100 Skierniewice
Bibliografia
- Czapski J., Horbowicz M., Saniewski M., 1991. The effect of methyl jasmonate on tocopherols content in ripening tomato fruit. Bull. Pol. Ac.: Biol. 39: 41-45.
- Czapski J., Horbowicz M., Saniewski M., 1992. The effect of methyl jasmonate on free fatty acids content in ripening tomato fruits. Biol. Plant. 34: 71-76.
- Czapski J., Saniewski M., 1985. Effect of methyl jasmonate on carotenoids in tomato fruits. Gartenbauwiss. 50: 35-37.
- Czapski J., Saniewski M., 1988. The effect of methyl jasmonate on polyphenol oxidase and peroxidase activities in tomato fruit. Bull. Pol. Ac.: Biol. 39: 41-45.
- Czapski J., Saniewski M., 1992. Stimulation of ethylene production and ethylene - forming en zyme activity in fruits of the non-ripening nor and tin tomato mutants by methyl jasmonate. J. Plant Physiol. 139: 265-268.
- Hoffman N. E., Yang S. F., 1980. Changes of 1-amino-cyclopropane-1-carboxylic acid content in ripening fruits in relation to their ethylene production rates. J. Amer. Soc. Hort. Sci. 105: 492-495.
- Johjima T., 1993. Determination of cis and trans carotenes of tangerine and yellowish tangerine tomatoes by micro-thin-layer chromatography. J. Japan. Soc. Hort. Sci. 62: 567-574.
- Lee J. S., Hwa J. J., 1995. Effect of methyl jasmonate on ethylene production in tomato hypocotyl segments and fruits. 15th Intern. Conference on Plant Growth Substances, July 14-18, 1995, Minneapolis, Minnesota, USA, Program-Abstracts, Abstract No. 267.
- Meyer A., Miersh O., Bittner C, Dathe W., Sembdner G., 1984. Occurrence of the plant growth regulator jasmonic acid in plants . J. Plant Growth Regul. 3: 1-8.
- Park D. H., Kong E. W., Yoon I. S., Kim W. T., Lee J. S., Kang B.G., 1995. Effects of methyl jasmonate on ethylene biosynthesis in mungbean. 15th Intern. Conference on Plant Growth Substances, July 14-18, 1995, Minneapolis, Minnesota, USA, Program-Abstracts, Abstract No. 469.
- Saniewski M., Czapski J., 1983. The effect of methyl jasmonate on lycopene and β-carotene accumulation in ripening red tomatoes. Experientia, 39: 1373-1374.
- Saniewski M., Czapski J., 1985. Stimulatory effect of methyl jasmonate on ethylene pro-duction in tomato fruits. Experientia, 41: 256-257.
- Saniewski M., Czapski J., 1990. The effect of aminooxyacetic acid on ethylene production induced by methyl jasmonate in tomatoes. Biol. Plant. 32: 218-222.
- Saniewski M., Czapski J., Nowacki J., 1987 a. Relationship between stimulatory effect of methyl jasmonate on ethylene and 1-aminocyclopropane-1-carboxylic acid content in tomatoes. Biol. Plant. 29: 17-21.
- Saniewski M., Nowacki J., Czapski J., 1987 b. The effect of methyl jasmonate on ethylene production and ethylene forming enzyme activity in tomatoes. J. Plant Physiol. 129: 175-180.
- Saniewski M., Urbanek H., Czapski J., 1987 c. Effects of methyl jasmonate on ethylene production, chlorophyll degradation, and polygalacturonase activity in tomatoes. J. Plant Physiol. 127: 177-181.
- Saniewski M., Węgrzynowicz - Lesiak E., 1995. Methyl jasmonate - induced leaf abscission in Kalanchoe blossfeldiana. Acta Hortic. 394: 315-324.
- Tigchelaar E. C., McGlasson W. B., Buescher R. W., 1978. Genetic regulation of tomato fruit ripening. Hort Science 13: 508-513.
- Ueda J., Miyamoto K., Aoki M., 1994. Jasmonic acid inhibits the IAA - induced elongation of oat coleoptile segments: a possible mechanism involving the metabolism of cell wall polysaccharides. Plant Cell Physiol. 35: 1065-1070.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
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