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豌豆中12-氧代植物二烯酸还原酶(I亚组)基因的结构与表达及其重组产物氧化还原酶活性的表征

Structure and expression of 12-oxophytodienoate reductase (subgroup I) genes in pea, and characterization of the oxidoreductase activities of their recombinant products.

作者信息

Matsui H, Nakamura G, Ishiga Y, Toshima H, Inagaki Y, Toyoda K, Shiraishi T, Ichinose Y

机构信息

Laboratory of Plant Pathology and Genetic Engineering, Faculty of Agriculture, Okayama University, Tsushima-naka 1-1-1, 700-8530 Okayama, Japan.

出版信息

Mol Genet Genomics. 2004 Feb;271(1):1-10. doi: 10.1007/s00438-003-0948-6. Epub 2004 Jan 15.

Abstract

Recently, we observed that expression of a pea gene (S64) encoding an oxophytodienoic acid reductase (OPR) was induced by a suppressor of pea defense responses, secreted by the pea pathogen Mycosphaerella pinodes. Because it is known that OPRs are usually encoded by families of homologous genes, we screened for genomic and cDNA clones encoding members of this putative OPR family in pea. We isolated five members of the OPR gene family from a pea genomic DNA library, and amplified six cDNA clones, including S64, by RT-PCR (reverse transcriptase-PCR). Sequencing analysis revealed that S64 corresponds to PsOPR2, and the amino acid sequences of the predicted products of the six OPR-like genes shared more than 80% identity with each other. Based on their sequence similarity, all these OPR-like genes code for OPRs of subgroup I, i.e., enzymes which are not required for jasmonic acid biosynthesis. However, the genes varied in their exon/intron organization and in their promoter sequences. To investigate the expression of each individual OPR-like gene, RT-PCR was performed using gene-specific primers. The results indicated that the OPR-like gene most strongly induced by the inoculation of pea plants with a compatible pathogen and by treatment with the suppressor from M. pinodes was PsOPR2. Furthermore, the ability of the six recombinant OPR-like proteins to reduce a model substrate, 2-cyclohexen-1-one (2-CyHE), was investigated. The results indicated that PsOPR1, 4 and 6 display robust activity, and PsOPR2 has a most remarkable ability to reduce 2-CyHE, whereas PsOPR3 has little and PsOPR5 does not reduce this compound. Thus, the six OPR-like proteins can be classified into four types. Interestingly, the gene structures, expression profiles, and enzymatic activities used to classify each member of the pea OPR-like gene family are clearly correlated, indicating that each member of this OPR-like family has a distinct function.

摘要

最近,我们观察到,豌豆病原体豌豆球腔菌分泌的一种豌豆防御反应抑制因子可诱导一个编码氧植物二烯酸还原酶(OPR)的豌豆基因(S64)的表达。由于已知OPR通常由同源基因家族编码,我们在豌豆中筛选了编码这个假定OPR家族成员的基因组和cDNA克隆。我们从豌豆基因组DNA文库中分离出了OPR基因家族的五个成员,并通过逆转录聚合酶链反应(RT-PCR)扩增出了六个cDNA克隆,包括S64。序列分析表明,S64对应于PsOPR2,六个类OPR基因预测产物的氨基酸序列彼此间的同一性超过80%。基于它们的序列相似性,所有这些类OPR基因编码I亚组的OPR,即茉莉酸生物合成不需要的酶。然而,这些基因在其外显子/内含子组织和启动子序列方面存在差异。为了研究每个类OPR基因的表达情况,使用基因特异性引物进行了RT-PCR。结果表明,在用兼容病原体接种豌豆植株以及用豌豆球腔菌的抑制因子处理时,诱导最强的类OPR基因是PsOPR2。此外,还研究了六种重组类OPR蛋白还原模型底物2-环己烯-1-酮(2-CyHE)的能力。结果表明,PsOPR1、4和6表现出较强的活性,PsOPR2还原2-CyHE的能力最为显著,而PsOPR3的活性较弱,PsOPR5则不能还原该化合物。因此,这六种类OPR蛋白可分为四种类型。有趣的是,用于对豌豆类OPR基因家族每个成员进行分类的基因结构、表达谱和酶活性明显相关,表明这个类OPR家族的每个成员都具有独特的功能。

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