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首页> 外文期刊>Plant physiology >Simultaneous suppression of multiple genes by single transgenes. Down-regulation of three unrelated lignin biosynthetic genes in tobacco
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Simultaneous suppression of multiple genes by single transgenes. Down-regulation of three unrelated lignin biosynthetic genes in tobacco

机译:单个转基因同时抑制多个基因。下调烟草中三个不相关的木质素生物合成基因

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摘要

Many reports now describe the manipulation of plant metabolism by suppressing the expression of single genes. The potential of such work could be greatly expanded if multiple genes could be coordinately suppressed, In the work presented here, we test a novel method for achieving this by using single chimeric constructs incorporating partial sense sequences for multiple genes to target suppression of two or three lignin biosynthetic enzymes. We compare this method with a more conventional approach to achieving the same end by crossing plants harboring different antisense transgenes. Our results indicate that crossing antisense plants is less straightforward and predictable in Outcome than anticipated. Most progeny had higher levels of target enzyme activity than predicted and had lost the expected modifications to lignin structure. In comparison, plants transformed with the chimeric partial sense constructs had more consistent high level suppression of target enzymes and had significant changes to lignin content, structure, and composition. It was possible to suppress three target genes coordinately using a single chimeric construct. Our results indicate that chimeric silencing constructs offer great potential for the rapid and coordinate suppression of multiple genes on diverse biochemical pathways and that the technique therefore deserves to be adopted by other researchers.
机译:现在,许多报告描述了通过抑制单个基因的表达来操纵植物代谢。如果可以协调地抑制多个基因,则可以极大地扩大这种工作的潜力。在本文介绍的工作中,我们测试了一种新方法,该方法通过使用单个嵌合构建体并入多个基因的部分有义序列来靶向抑制两个或三个基因来实现。木质素生物合成酶。我们将这种方法与更常规的方法进行比较,以通过杂交带有不同反义转基因的植物来达到相同的目的。我们的结果表明,杂交反义植物的结果比预期的要简单和可预测的。大多数后代的目标酶活性水平高于预期水平,并且失去了预期的木质素结构修饰。相比之下,用嵌合的部分有义构建体转化的植物对目标酶的抑制作用更加一致,并且木质素含量,结构和组成发生了显着变化。使用单个嵌合构建体可以协同抑制三个靶基因。我们的结果表明,嵌合沉默构建体为在多种生化途径中快速且协调地抑制多个基因提供了巨大潜力,因此该技术值得其他研究人员采用。

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