Indole -3-alkanoic acid derivatives and use for increasing sugar

Plant protecting and regulating compositions – Plant growth regulating compositions – Organic active compound containing

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548494, A01N 4338, C07D20918

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active

055785522

ABSTRACT:
An agent for increasing the sugar content and/or decreasing the acid content of plant fruits has as a substantial main component thereof a fluorine-containing .beta.-indolebutyric acid compound represented by the general formula ##STR1## (wherein Y stands for one member selected from the class consisting of hydroxyl group, alkoxy group, amino group, and alkyl amino group and R.sup.1 and R.sup.2 independently stand for one member selected from the class consisting of hydrogen atom, halogen atom, alkyl group, alkoxy group, aryl group, nitro group, amino group, and alkyl amino group). A method for producing ripe fruits having a high sugar content and/or a low acid content by causing the fluorine-containing .beta.-indolebutyric acid compound mentioned above to adhere to unripe fruits on plants and plants bearing fruits and subsequently allowing the fruits to mature.

REFERENCES:
patent: 3885949 (1975-05-01), Ono
Collection of Monographs for publication at the 1990 general meeting of the Plant Chemical Regulation Society, p. 31, published by the Plant Chemical Regulation Society.
Growth of Avena Coleoptiles and pH Drop of Protoplast Suspensions Induced by Chlorinated Indole acetic Acids, Michael Bottger, Kjeld C. Engvild and H. Soll, Planta, An International Journal Of Plant Biology, vol. 140, No. 1, 1978, pp. 89-92.
Patent Abstracts of Japan, vol. 15, No. 413 (C-0977), Oct. 22, 1991, JP-A-03 169 858, Jul. 23, 1991.
Chemical Abstracts, vol. 120, No. 19, p. 345, May 9, 1994, K. Kato, et al., "Studies On The Plant Growth Regulators Containing Flourines. Biological Acitivity TFIBA", and Nagoya Kogyo Gijitsu Shikensho Hokuku, vol. 42, No. 8/9, pp. 215-223, 1993.
Database WPI, Derwent Publications, AN 93-374582, JP-A-5 279 331, Oct. 26, 1993.

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