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The ectopic overexpression of a citrus gibberellin 20-oxidase enhances the non-13-hydroxylation pathway of gibberellin biosynthesis and induces an extremely elongated phenotype in tobacco

机译:柑橘赤霉素20氧化酶的异位过表达增强赤霉素生物合成的非13-羟基化途径,并诱导烟草的极度延长表型

摘要

Transgenic plants of Nicotiana tabacum overexpressing a gibberellin (GA) 20-oxidase cDNA (CeGA20ox1) from citrus, under the control of the 35S promoter, mere taller (up to twice) and had larger inflorescences and longer flower peduncles than those of control plants, Hypocotyls of transgenic seedlings were also longer (up to 4 times), and neither the seedlings nor the growing plants elongated further after application of GA(3), Hypocotyl and stem lengths were reduced by application of paclobutrazol, and this inhibition was reversed by exogenous GA(3). The ectopic overexpression of CcGA20ox1 enhanced the non-13-hydroxylation pathway of GA biosynthesis leading to GA(4), apparently at the expense of the early-13-hydroxylation pathway, The level of GA, (the active GA from the non-13-hydroxylation pathway) in the shoot of transgenic plants was 3-4 times higher than in control plants, whereas that of GA(1), formed via the early-13-hydroxylation pathway (the main GA biosynthesis pathway in tobacco), decreased or was not affected. GA, applied to the culture medium or to the expanding leaves was found to be at least equally active as GA(1) on stimulating hypocotyl and stem elongation of tobacco plants. The results suggest that the tap phenotype of tobacco transgenic plants was due to their higher content of GA(4), and that the GA response was saturated by the presence of the transgene.
机译:烟草的转基因植物在35S启动子的控制下过表达来自柑橘的赤霉素(GA)20-氧化酶cDNA(CeGA20ox1),比对照植物高(最多两倍),并且具有更大的花序和更长的花序梗,转基因幼苗的下胚轴也更长(高达4倍),施用GA(3)后幼苗和生长中的植物均未进一步伸长,通过应用多效唑降低了下胚轴和茎的长度,这种抑制作用被外源逆转GA(3)。 CcGA20ox1的异位过表达增强了导致GA(4)的GA生物合成的非13-羟基化途径,显然是以早期13-羟基化途径,GA的水平为代价(非13的活性GA -羟基化途径)在转基因植物的芽中比对照植物高3-4倍,而通过早期13-羟基化途径(烟草中的主要GA生物合成途径)形成的GA(1)则降低或降低。没有受到影响。已发现,应用于培养基或膨胀叶片的GA在刺激烟草植物的下胚轴和茎伸长方面至少具有与GA(1)相同的活性。结果表明,烟草转基因植物的敲击表型是由于其较高的GA(4)含量,并且由于转基因的存在,GA反应已饱和。

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