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Effect of zinc on the biosynthesis of indole glucosinolates glucobrassicin and neoglucobrassicin in etiolated seedlings of rape (Brassica napus var.arvensis (Lam.) Thell)
Authors:V Jirá?ek  M Kutá?ek  S Salkade  J Ko?tí?
Institution:1. Department of Biochemistry, Faculty of Sciences, Charles University, Albertov 2030, 128 40, Praha 2, Czechoslovakia
2. Department of Plant Growth and Development Physiology, Institute of Experimental Botany, Czechoslovak Academy of Sciences, Ke dvoru 15, 166 30, Praha 6-Vokovice, Czechoslovakia
Abstract:The effect of Zn2+ ions (in the form of ZnCl2) in the ceoncentration range 10?3 to 10?6 M on the content and biosynthesis of indole glucosinolates glucobrassicin and neoglucobrassicin has been studied on etiolated seedlings of rape (Brassica napus var.arvensis (Lam.) Thell). In the “long-term” experiment zine ions influenced the seedlings during eight days of germination, whereas in the “short-term” experiment zinc ions acted only 72 h on seven days old intact seedlings. The biosynthesis of indole glucosinolates has been followed by the incorporation of35S from Na2 35SO4 into both glucosinolates in experiments with, hypocotyl segments of the rape seedlings. Zinc ions at chronic “long-term” application increased the glucobrassicin and neoglucobrassicin level in the seedlings. The neoglucobrassicin content especially was increased. A “short-term” application of zinc ions increased the level of both glucosinolates at higher and lower concentrations, whereas medium concentrations (10?4 and 10?5 M) lowered their level. Zn2+ ions lowered absorption of35SO4 ?2 ions by hypocotyl segments and simultaneously lowered the incorporation of35S into glucobrassicin. On the contrary, the incorporation of35S into neoglucobrassicin and proteins was stimulated. Zinc ions do exhibit a specific effect on neoglucobrassicin biosynthesis, on membrane permeability as against sulphate ions and on the incorporation of sulphur into proteins.
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