Jadhav Ashok S, Taylor David C, Giblin Michael, Ferrie Alison M R, Ambrose Stephen J, Ross Andrew R S, Nelson Ken M, Irina Zaharia L, Sharma Nirmala, Anderson Maureen, Fobert Pierre R, Abrams Suzanne R
National Research Council of Canada, Plant Biotechnology Institute, 110 Gymnasium Place, Saskatoon, Saskatchewan, Canada S7N 0W9.
Phytochemistry. 2008 Nov;69(15):2678-88. doi: 10.1016/j.phytochem.2008.08.010. Epub 2008 Sep 26.
Developing seeds of Brassica napus contain significant levels of ABA and products of oxidation at the 7'- and 9'-methyl groups of ABA, 7'- and 9'-hydroxy ABA, as well stable products of oxidation of the 8'-methyl group, phaseic acid and dihydrophaseic acid. To probe the biological roles of the initially formed hydroxylated compounds, we have compared the effects of supplied ABA and the hydroxylated metabolites in regulating oil synthesis in microspore-derived embryos of B. napus, cv Hero that accumulate long chain fatty acids. Uptake into the embryos and metabolism of each of the hormone metabolites was studied by using deuterium labeled analogs. Supplied ABA, which was rapidly metabolized, induced expression of oleosin and fatty acid elongase genes and increased the accumulation of triacylglycerols and very long chain fatty acids. The metabolites 7'- and 9'-hydroxy ABA had similar effects, with the 9'-hydroxy ABA having even greater activity than ABA. The principal catabolite of ABA, 8'-hydroxy ABA, also had hormonal activity and led to increased oil synthesis but induced the genes weakly. These results indicate that all compounds tested could be involved in lipid synthesis in B. napus, and may have hormonal roles in other ABA-regulated processes.
甘蓝型油菜发育中的种子含有大量脱落酸(ABA)及其在7'-和9'-甲基氧化的产物,即7'-和9'-羟基脱落酸,以及8'-甲基氧化的稳定产物,即相酸和二氢相酸。为了探究最初形成的羟基化化合物的生物学作用,我们比较了外源ABA和羟基化代谢产物对积累长链脂肪酸的甘蓝型油菜品种Hero小孢子衍生胚中油脂合成的调控作用。通过使用氘标记类似物研究了每种激素代谢产物进入胚中的摄取和代谢情况。外源ABA迅速代谢,诱导油质蛋白和脂肪酸延长酶基因的表达,并增加三酰甘油和极长链脂肪酸的积累。7'-和9'-羟基脱落酸代谢产物具有类似作用,其中9'-羟基脱落酸的活性甚至高于ABA。ABA的主要分解代谢产物8'-羟基脱落酸也具有激素活性,导致油脂合成增加,但对基因的诱导作用较弱。这些结果表明,所有测试的化合物都可能参与甘蓝型油菜的脂质合成,并且可能在其他ABA调节过程中发挥激素作用。