Mechanism of indole-3-acetic acid conjugation: no induction by ethylene

Formation of indole-3-acetic acid-aspartate in detached primary leaves of cowpea (Vigna sinensis Endl.) floating on 14C-indole-3-acetic acid (3 μc; 3.15 μM, phosphate-citrate buffer, pH 4.75), almost doubled when leaves were pretreated with 31.5 μM 12C-indole-3-acetic acid for 17 hr and then transfe...

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Veröffentlicht in:Plant physiology (Bethesda) 1974-02, Vol.53 (2), p.164-166
Hauptverfasser: Goren, R, Bukovac, M.J, Flore, J.A
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Sprache:eng
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Zusammenfassung:Formation of indole-3-acetic acid-aspartate in detached primary leaves of cowpea (Vigna sinensis Endl.) floating on 14C-indole-3-acetic acid (3 μc; 3.15 μM, phosphate-citrate buffer, pH 4.75), almost doubled when leaves were pretreated with 31.5 μM 12C-indole-3-acetic acid for 17 hr and then transferred to 14C-indole-3-acetic acid for 4 hours as compared with leaves preincubated in buffer only. When leaves were preincubated with ethylene (11.0 and 104 μl/l) instead of 12C-indole-3-acetic acid, no induction of indole-3-acetylaspartic acid formation was observed, and the rate of indole-3-acetylaspartic acid formation decreased as compared with control leaves. Rhizobitoxine (1.87 μM) inhibited indole-3-acetic acid-induced ethylene production but did not prevent the formation of indole-3-acetylaspartic acid. In view of the similarity of these results and those previously obtained with α-naphthaleneacetic acid, it is concluded that ethylene has no role in the auxin-induced indole-3-acetylaspartic acid formation in cowpea leaves.
ISSN:0032-0889
1532-2548
DOI:10.1104/pp.53.2.164