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首页> 外文期刊>Plant Molecular Biology >Cell Specific, Cross-Species Expression of Myrosinases in Brassica Napus, Arabidopsis Thaliana and Nicotiana Tabacum
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Cell Specific, Cross-Species Expression of Myrosinases in Brassica Napus, Arabidopsis Thaliana and Nicotiana Tabacum

机译:黑芥子酶在甘蓝型油菜,拟南芥和烟草中的细胞特异性,种间表达

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摘要

A prototypical characteristic of the Brassicaceae is the presence of the myrosinase-glucosinolate system. Myrosinase, the only known S-glycosidase in plants, degrades glucosinolates, thereby initiating the formation of isothiocyanates, nitriles and other reactive products with biological activities. We have used myrosinase gene promoters from Brassica napusand Arabidopsis thaliana fused to the β-glucuronidase (GUS) reporter gene and introduced into Arabidopsis thaliana, Brassica napus and/or Nicotiana tabacum plants to compare and determine the cell types expressing the myrosinase genes and the GUS expression regulated by these promoters. The A. thaliana TGG1 promoter directs expression to guard cells and phloem myrosin cell idioblasts of transgenic A. thaliana plants. Expression from the same promoter construct in transgenic tobacco plants lacking the myrosinase enzyme system also directs expression to guard cells. The B. napus Myr1.Bn1 promoter directs a cell specific expression to idioblast myrosin cells of immature and mature seeds and myrosin cells of phloem of B. napus. In A. thaliana the B. napus promoter directs expression to guard cells similar to the expression pattern of TGG1. The Myr1.Bn1 signal peptide targets the gene product to the reticular myrosin grains of myrosin cells. Our results indicate that myrosinase gene promoters from Brassicaceae direct cell, organ and developmental specific expression in B. napus, A. thaliana and N. tabacum.
机译:十字花科的典型特征是黑芥子酶-芥子油苷系统的存在。黑芥子酶是植物中唯一已知的S-糖苷酶,可降解芥子油苷,从而引发异硫氰酸酯,腈和其他具有生物活性的反应产物的形成。我们已经使用来自甘蓝型油菜和拟南芥的黑芥子酶基因启动子与β-葡萄糖醛酸苷酶(GUS)报告基因融合,并引入到拟南芥,甘蓝型油菜和/或烟草中,以比较和确定表达黑芥子酶基因和GUS的细胞类型。这些启动子调节的表达。拟南芥TGG1启动子指导表达转基因拟南芥植物的保卫细胞和韧皮部黑素细胞特异成纤维细胞。在缺乏黑芥子酶酶系统的转基因烟草植物中,来自同一启动子构建体的表达也指导表达保护细胞。甘蓝型芽孢杆菌Myr1.Bn1启动子将细胞特异性表达引导至未成熟和成熟种子的成纤维细胞黑芥子细胞以及甘蓝型芽孢杆菌的韧皮部黑芥子细胞。在拟南芥中,甘蓝型油菜启动子将表达引导到保卫细胞,类似于TGG1的表达模式。 Myr1.Bn1信号肽将基因产物靶向黑芥子细胞的网状黑芥子颗粒。我们的结果表明,来自十字花科的黑芥子酶基因启动子直接指导油菜,拟南芥和烟草中的细胞,器官和发育特异性表达。

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