Polyunsatuated Fatty Acid Synthesis by a Mixture of Chloroplasts and Microsomes from Spinach Leaves : Evidence for Two Distinct Pathways of the Biosynthesis of Trienoic Acids
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概要
- 論文の詳細を見る
In a mixture of chloroplasts and microsomes from spinach leaves, all the leaf lipids were synthesized from (1-^<14>C)-acetate. In this system, all the lipids contained labelled oleate, linoleate and linolenate but labelled linolenate was mainly concentrated into diacylgalactosylglycerol (MGDG). A small but significant labelling was found in the linolenate of the diacyldigalactosylglycerol (DGDG). On the other hand, labelled hexadecamonoenoic acid (C_<16:1>), hexadecadienoic acid (C_<16:2>) and hexadecatrienoic acid (C_<16:3>) were only found into MGDG. In such a reconstituted system, at the end of the incubation period, labelled MGDG was almost exclusively recovered into the chloroplast while the labelled phosphatidylcholine (PC) was found highly concentrated in the microsomes. In the MGDG of the chloroplast, C_<16:1>, C_<16:2> and C_<16:3> were found at the C2 position of the glycerol while oleic acid (C_<18:1>), linoleic acid (C_<18:2>) and a-linolenic acid (C_<18:3>) esterified specifically the position 1 of the glycerol. No C_<18> acids were found in position 2. In the PC of the microsomes, C_<18:1>, C_<18:2> and C_<18:3> were found at the C1 and C2 positions of the glycerol while palmitic acid esterified exclusively the C1 of the glycerol. The biosynthetic pathway of trienoic fatty acids in leaves of higher plants is discussed.
- 日本植物生理学会の論文
著者
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Drapier D
Laboratoire De Physiologie Cellulaire (e.r.a. 323) Universite P. 〓 M. Curie
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Drapier Dominique
Universite Pierre Et Marie Curie Institut De Biologie Vegetale (era 323)
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Tremolieres Antoine
Laboratoire du Phytotron, C.N.R.S.
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Dubacq Jean-Paul
Universitd Pierre et Marie Curie, Laboraloire de Physiologie cellulaire
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Dubacq Jean-paul
Laboratoire De Physiologie Cellulaire (e.r.a. 323) Universite P. 〓 M. Curie
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Tremolieres Antoine
Laboratoire Du Phytotron C.n.r.s.
関連論文
- Isolation and Biochemical Characteristics of Protoplasts of Jojoba (Simmond sia chinensis (Link) Schneider)
- Role of Phospholipid Transfer Protein in the Exchange of Phospholipids between Microsomes and Chloroplasts
- Polyunsatuated Fatty Acid Synthesis by a Mixture of Chloroplasts and Microsomes from Spinach Leaves : Evidence for Two Distinct Pathways of the Biosynthesis of Trienoic Acids
- Cooperative Pathway for Lipid Biosynthesis in Young Pea Leaves : Oleate Exportation from Chloroplasts and Subsequent Integration into Complex Lipids of Added Microsomes
- In Situ and IAA-Induced Cell Elongation is Correlated to the Oleoyl Phosphatidylcholine Content along the Vigna radiata Hypocotyl