BIOSYNTHESIS OF DIGALACTOSYLDIACYLGLYCEROL IN PLASTIDS FROM 16-3 AND 18-3 PLANTS

被引:49
作者
HEEMSKERK, JWM [1 ]
STORZ, T [1 ]
SCHMIDT, RR [1 ]
HEINZ, E [1 ]
机构
[1] UNIV HAMBURG,INST ALLGEMEINE BOT,W-2000 HAMBURG 52,GERMANY
关键词
D O I
10.1104/pp.93.4.1286
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Intact chloroplasts isolated from leaves of eight species of 16:3 and 18:3 plants and chromoplasts isolated from Narcissus pseudonarcissus L. flowers synthesize galactose-labeled mono-, di, and trigalactosyldiacylglycerol (MGDG, DGDG, and TGDG) when incubated with UDP-[6-3H]galactose. In all plastids, galactolipid synthesis, and especially synthesis of DGDG and TGDG, is reduced by treatment of the organelles with the nonpenetrating protease thermolysin. Envelope membranes isolated from thermolysin-treated chloroplasts of Spinacia oleracea L. (16:3 plant) and Pisum sativum L. (18:3 plant) or membranes isolated from thermolysin-treated chromoplasts are strongly reduced in galactolipid:galactolipid galactosyltransferase activity, but not with regard to UDP-Gal:diacylglycerol galactosyltransferase. For the intact plastids, this indicates that thermolysin treatment specifically blocks DGDG (and TGDG) synthesis, whereas MGDG synthesis is not affected. Neither in chloroplast nor in chromoplast membranes is DGDG synthesis stimulated by UDP-Gal. DGDG synthesis in S. oleracea chloroplasts is not stimulated by nucleoside 5′-diphospho digalactosides. Therefore, galactolipid:galactolipid galactosyltransferase is so far the only detectable enzyme synthesizing DGDG. These results conclusively suggest that the latter enzyme is located in the outer envelope membrane of different types of plastids and has a general function in DGDG synthesis, both in 16:3 and 18:3 plants.
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页码:1286 / 1294
页数:9
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