Strassner Jochen, Schaller Florian, Frick Ursula B, Howe Gregg A, Weiler Elmar W, Amrhein Nikolaus, Macheroux Peter, Schaller Andreas
Plant Biochemistry and Physiology Group, Institute of Plant Sciences, ETH-Zürich, Universitätstrasse 2, CH-8092 Zürich, Switzerland.
Plant J. 2002 Nov;32(4):585-601. doi: 10.1046/j.1365-313x.2002.01449.x.
12-Oxophytodienoate reductases (OPRs) belong to a family of flavin-dependent oxidoreductases. With two new tomato isoforms reported here, three OPRs have now been characterized in both tomato and Arabidopsis. Only one of these isoforms (OPR3) participates directly in the octadecanoid pathway for jasmonic acid biosynthesis, as only OPR3 reduces the 9S,13S-stereoisomer of 12-oxophytodienoic acid, the biological precursor of jasmonic acid. The subcellular localization of OPRs was analyzed in tomato and Arabidopsis. The OPR3 protein and activity were consistently found in peroxisomes where they co-localize with the enzymes of beta-oxidation which catalyze the final steps in the formation of jasmonic acid. The octadecanoid pathway is thus confined to plastids and peroxisomes and, in contrast to previous assumptions, does not involve the cytosolic compartment. The expression of tomato (Lycopersicon esculentum,Le) OPR3 was analyzed in the context of defense-related genes using a microarray comprising 233 cDNA probes. LeOPR3 was found to be up-regulated after wounding with induction kinetics resembling those of other octadecanoid pathway enzymes. In contrast to the induction of genes for wound response proteins (e.g. proteinase inhibitors), the accumulation of octadecanoid pathway transcripts was found to be more rapid and transient in wounded leaves, but hardly detectable in unwounded, systemic leaves. Consistent with the expression data, OPDA and JA were found to accumulate locally but not systemically in the leaves of wounded tomato plants. The transcriptional activation of the octadecanoid pathway and the accumulation of JA to high levels are, thus not required for the activation of defense gene expression in systemic tissues.
12-氧代植物二烯酸还原酶(OPRs)属于黄素依赖性氧化还原酶家族。随着本文报道了两种新的番茄异构体,目前在番茄和拟南芥中已鉴定出三种OPRs。这些异构体中只有一种(OPR3)直接参与茉莉酸生物合成的十八碳途径,因为只有OPR3能还原茉莉酸的生物前体12-氧代植物二烯酸的9S,13S-立体异构体。对番茄和拟南芥中OPRs的亚细胞定位进行了分析。OPR3蛋白和活性始终存在于过氧化物酶体中,它们与催化茉莉酸形成最后步骤的β-氧化酶共定位。因此,十八碳途径局限于质体和过氧化物酶体,与之前的假设相反,不涉及细胞质区室。使用包含233个cDNA探针的微阵列,在防御相关基因的背景下分析了番茄(Lycopersicon esculentum,Le)OPR3的表达。发现LeOPR3在受伤后上调,其诱导动力学与其他十八碳途径酶相似。与伤口反应蛋白(如蛋白酶抑制剂)基因的诱导不同,发现十八碳途径转录本在受伤叶片中的积累更快且更短暂,但在未受伤的系统叶片中几乎检测不到。与表达数据一致,在受伤番茄植株的叶片中,OPDA和JA在局部积累但不在系统中积累。因此,十八碳途径的转录激活和JA的高水平积累对于系统组织中防御基因表达的激活不是必需的。