Wang C, Avdiushko S, Hildebrand D F
Department of Agronomy, University of Kentucky, Lexington 40546, USA.
Plant Mol Biol. 1999 Jul;40(5):783-93. doi: 10.1023/a:1006253927431.
Jasmonic acid (JA) is involved in regulating the expression of certain plant defense genes and response to various stresses. JA biosynthesis is hypothesized to occur both in chloroplasts and the cytoplasm. In order to test whether or not a cytosol-localized allene oxide synthase (AOS) can promote JA biosynthesis, transgenic tobacco plants containing a flax AOS cDNA without a chloroplast transit sequence under the control of a tetracycline-inducible promoter were generated. Induction of the flax AOS gene in transgenic plants with chlor-tetracycline (Tc) led to the expression of the flax AOS mRNA and protein, which resulted in high level of metabolism of 13(S)-hydroperoxyoctadecatrienoic acid (13(S)-HPOT) and formation of 12-oxo-phytodienoic acid (12-O-PDA). Subcellular fractionation demonstrated that the flax AOS protein and activity were associated with the cytosol. Overexpression of the flax AOS in induced transgenic plants did not increase JA levels in healthy, undamaged leaf tissues. However, in wounded tissues overexpressing a flax AOS, levels of JA and the transcript of a pathogenesis-related gene (PR-1) dramatically increased when compared to those not expressing the flax AOS. Analysis of the release of wound-induced C6 volatiles showed that the level of (Z)-3-hexen-1-ol decreased about 30% due to overexpression of the cytoplasm-localized AOS, while (Z)-3-hexenal and (Z)-3-hexenyl acetate appeared not to be significantly altered. The data indicate that cytoplasmic AOS responds to wounding by increasing the levels of the wound-induced JA which in turn directly or indirectly enhances the expression of plant defense genes.
茉莉酸(JA)参与调控某些植物防御基因的表达以及对各种胁迫的响应。据推测,JA生物合成在叶绿体和细胞质中均会发生。为了测试定位于细胞质的丙二烯氧化物合酶(AOS)是否能促进JA生物合成,构建了在四环素诱导型启动子控制下含有无叶绿体转运序列的亚麻AOS cDNA的转基因烟草植株。用氯四环素(Tc)诱导转基因植物中的亚麻AOS基因,导致亚麻AOS mRNA和蛋白质表达,进而使13(S)-氢过氧化十八碳三烯酸(13(S)-HPOT)高水平代谢并形成12-氧代植物二烯酸(12-O-PDA)。亚细胞分级分离表明,亚麻AOS蛋白及其活性与细胞质相关。在诱导的转基因植物中过表达亚麻AOS,在健康、未受损的叶片组织中并未增加JA水平。然而,在过表达亚麻AOS的受伤组织中,与未表达亚麻AOS的组织相比,JA水平和病程相关基因(PR-1)的转录物显著增加。对伤口诱导的C6挥发性物质释放的分析表明,由于细胞质定位的AOS过表达,(Z)-3-己烯-1-醇水平下降了约30%,而(Z)-3-己烯醛和(Z)-3-己烯基乙酸酯似乎没有明显变化。数据表明,细胞质AOS通过增加伤口诱导的JA水平来响应伤口,这反过来直接或间接增强了植物防御基因的表达。