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Changes in the Concentrations of Abscisic Acid in Fruits of Normal and Nr, rin and nor Mutant Tomatoes During Growth, Maturation and Senescence

WB Mcglasson and I Adato
3(6) pp.809 - 817


18 articles found in Crossref database.

Changes in Abscisic Acid Translocation during Pod Development and Senescence in Soybeans
D.Noodén L., R.Obermeyer W.
Biochemie und Physiologie der Pflanzen. 1981 176(9). p.859
Postharvest Physiology and Pathology of Vegetables (2002)
Ludford Pamela
Composition and quality of tomato fruit cultivated in nutrient solutions containing different calcium concentrations
Paiva Elder Antonio S., Sampaio Reginaldo Arruda, Martinez Herminia E. Prieto
Journal of Plant Nutrition. 1998 21(12). p.2653
The constituents of tomato fruit — the influence of environment, nutrition, and genotype
Davies Jack N., Hobson Graeme E., McGlasson W. B.
C R C Critical Reviews in Food Science and Nutrition. 1981 15(3). p.205
Distribution of abscisic acid in different parts of the reproductive organs of tomato
Kojima Kiyohide, Kuraishi Susumu, Sakurai Naoki, Fusao Kazuhiro
Scientia Horticulturae. 1993 56(1). p.23
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Mou Wangshu, Li Dongdong, Luo Zisheng, Li Li, Mao Linchun, Ying Tiejin
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Processes and Control of Plant Senescence (1986)
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TSAY Lung-Ming, MIZUNO Susumu, KOZUKUE Nobuyuki
Journal of the Japanese Society for Horticultural Science. 1984 52(4). p.458
Action of the Ripening Inhibitor (rin) on Fruit Ripening of Tomato
SAWANO Minoru, MIZUNO Susumu, SUN Xu-Mang, KOZUKUE Nobuyuki
Journal of the Japanese Society for Horticultural Science. 1984 53(1). p.79
Commentaries in Plant Science (1981)
HOBSON G.E.
Abscisic acid and carotenoids metabolism in tomato during postharvest
Franzoni G., Cocetta G., Trivellini A., Angeli S., Ferrante A.
Acta Horticulturae. 2018 (1194). p.381
Plant Hormones and their Role in Plant Growth and Development (1987)
Ludford Pamela M.
Responses of climacteric and suppressed-climacteric plums to treatment with propylene and 1-methylcyclopropene
Abdi Nasser, McGlasson William B, Holford Paul, Williams Mark, Mizrahi Yosef
Postharvest Biology and Technology. 1998 14(1). p.29
Water relations of GA‐ and ABA‐deficient tomato mutants during seed and fruit development and their influence on germination
Liu Yongqing, Bino Raoul J., Karssen Cees M., Hilhorst Henk W. M.
Physiologia Plantarum. 1996 96(3). p.425
Horticultural Reviews (1988)
Bower John P., Cutting Jonathan G.
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