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首页> 外文期刊>Plant Biotechnology Journal >Highly interactive nature of flower-specific enhancers and promoters, and its potential impact on tissue-specific expression and engineering of multiple genes or agronomic traits
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Highly interactive nature of flower-specific enhancers and promoters, and its potential impact on tissue-specific expression and engineering of multiple genes or agronomic traits

机译:花卉特异性增强剂和启动子的高度互动性质,其对组织特异性表达和多种基因或农艺性状的潜在影响

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Molecular stacking enables multiple traits to be effectively engineered in crops using a single vector. However, the co-existence of distinct plant promoters in the same transgenic unit might, like their mammalian counterparts, interfere with one another. In this study, we devised a novel approach to investigate enhancer-promoter and promoter-promoter interactions in transgenic plants and demonstrated that three of four flower-specific enhancer/promoters were capable of distantly activating a pollen-and stigma-specific Pps promoter (fused to the cytotoxic DT-A gene) in other tissues, as revealed by novel tissue ablation phenotypes in transgenic plants. The NtAGI1 enhancer exclusively activated stamen-and carpel-specific DT-A expression, thus resulting in tissue ablation in an orientation-independent manner; this activation was completely abolished by the insertion of an enhancer-blocking insulator (EXOB) between the NtAGI1 enhancer and Pps promoter. Similarly, AGL8 and AP1Lb1, but not AP1La, promoters also activated distinct tissue-specific DT-A expression and ablation, with the former causing global growth retardation and the latter ablating apical inflorescences. While the tissue specificity of the enhancer/promoters generally defined their activation specificities, the strength of their activity in particular tissues or developmental stages appeared to determine whether activation actually occurred. Our findings provide the first evidence that plant-derived enhancer/promoters can distantly interact/interfere with one another, which could pose potential problems for the tissue-specific engineering of multiple traits using a single-vector stacking approach. Therefore, our work highlights the importance of adopting enhancer-blocking insulators in transformation vectors to minimize promoter-promoter interactions. The practical and fundamental significance of these findings will be discussed.
机译:分子堆叠使得能够使用单个载体在作物中有效地改造多种性状。然而,同一转基因单元中的不同植物启动子的共存可能与哺乳动物同行一样,彼此干扰。在这项研究中,我们设计了一种研究转基因植物中增强剂 - 启动子和启动子 - 启动子相互作用的新方法,并证明了四种特异性增强剂/启动子中的三种能够远处激活花粉和耻辱的PPS启动子(融合在其他组织中的细胞毒性DT-A基因,如转基因植物中的新型组织消融表型所揭示的。 NTAGI1增强剂专门激活雄蕊和特异性DT-A表达,从而导致依赖于定向的方式的组织消融;通过插入NTAGI1增强剂和PPS启动子之间的增强子阻断绝缘体(Exob)完全废除该活化。类似地,AGL8和AP1LB1,但不是AP1LA,启动子也活化了不同的组织特异性DT-A表达和消融,前者导致全局生长延迟和后者消融的顶端花序。虽然增强剂/启动子的组织特异性通常定义其活化特异性,但是在特定组织或发育阶段的活性的强度似乎确定了是否实际发生的激活。我们的研究结果提供了植物衍生的增强剂/启动子能够远处地相互作用/干扰的第一种证据,这可能使用单载堆叠方法对多种性状的组织特异性工程构成潜在问题。因此,我们的作品突出了采用增强剂阻断绝缘剂在转化载体中的重要性,以最大限度地减少启动子 - 启动子相互作用。将讨论这些调查结果的实际和基本意义。

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