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首页> 外文期刊>Phytochemistry >Coniferyl alcohol metabolism in conifers - II. Coniferyl alcohol anddihydroconiferyl alcohol biosynthesis
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Coniferyl alcohol metabolism in conifers - II. Coniferyl alcohol anddihydroconiferyl alcohol biosynthesis

机译:针叶树中的针叶树醇代谢-II。松柏醇和二氢松柏醇的生物合成

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Coniferaldehyde and NADPH when incubated with microsomes isolated from developing xylem of Pinus strobus yielded coniferyl alcohol and dihydroconiferyl alcohol in vitro. D-(+)-Pinitol was also found to be a microsomal constituent. Endogenous E-coniferyl alcohol content, quantified in dormant buds, cambium, bark and needles of Pinus resinosa and P. strobus by isotope-dilution combined gas chromatography mass spectrometry (GC/MS) using ring-C-13(6)-coniferyl alcohol, was at a level similar to that of endogenous indol 3-ylacetic acid (IAA). Wounding (branch girdling) induced more than a 10-fold increase in content of endogenous E-coniferyl alcohol in dormant non-lignifying cambium, a clear indication that monolignol biosynthesis is not coupled to lignification.
机译:松柏醛和NADPH与从松属植物茎中木质部分离的微粒体一起孵育时,在体外产生了松柏醇和二氢松柏醇。还发现D-(+)-松醇是微粒体成分。使用环-C-13(6)-松柏油醇的同位素稀释-联合气相色谱质谱法(GC / MS)定量测定松树油松和P. strobus的休眠芽,形成层,树皮和针中的内源松柏油的水平与内源吲哚3-基乙酸(IAA)的水平相似。受伤(分支环剥)导致休眠的非木质化形成层中内源性E-松柏醇的含量增加了10倍以上,这清楚地表明,单木质酚的生物合成与木质化不相关。

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