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Characterizing standard genetic parts and establishing common principles for engineering legume and cereal roots

机译:表征标准遗传零件,建立工程豆科植物和谷物根的共同原则

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Plant synthetic biology and cereal engineering depend on the controlled expression of transgenes of interest. Most engineering in plant species to date has relied heavily on the use of a few, well‐established constitutive promoters to achieve high levels of expression; however, the levels of transgene expression can also be influenced by the use of codon optimization, intron‐mediated enhancement and varying terminator sequences. Most of these alternative approaches for regulating transgene expression have only been tested in small‐scale experiments, typically testing a single gene of interest. It is therefore difficult to interpret the relative importance of these approaches and to design engineering strategies that are likely to succeed in different plant species, particularly if engineering multigenic traits where the expression of each transgene needs to be precisely regulated. Here, we present data on the characterization of 46 promoters and 10 terminators in Medicago truncatula, Lotus japonicus, Nicotiana benthamiana and Hordeum vulgare, as well as the effects of codon optimization and intron‐mediated enhancement on the expression of two transgenes in H.?vulgare. We have identified a core set of promoters and terminators of relevance to researchers engineering novel traits in plant roots. In addition, we have shown that combining codon optimization and intron‐mediated enhancement increases transgene expression and protein levels in barley. Based on our study, we recommend a core set of promoters and terminators for broad use and also propose a general set of principles and guidelines for those engineering cereal species.
机译:植物合成生物学和谷物工程取决于感兴趣的转基因的对照表达。迄今为止迄今为止迄今为止的大多数工程均依赖于使用少数良好的组成型启动子来实现高水平的表达;然而,转基因表达的水平也可以通过使用密码子优化,内含子介导的增强和改变终止子序列来影响。大多数用于调节转基因表达的替代方法仅在小规模的实验中进行了测试,通常测试一个感兴趣的单一基因。因此,难以解释这些方法的相对重要性以及设计可能在不同植物物种中成功的工程策略,特别是如果需要精确地调节每个转基因的化学性质的工程多键性。在这里,我们提出了关于Medicago Truncatula,Lotus Japonicus,Nicotiana Benthamiana和Hordeum Vulgare的46个启动子和10个终止剂的数据,以及密码子优化和内介介质增强对H中的两个转基因表达的影响。 vulgare。我们已经确定了一套核心推动者和终结者与研究人员在植物根系中的工程新特征有关。此外,我们表明,组合密码子优化和内介介导的增强增加了大麦中的转基因表达和蛋白质水平。根据我们的研究,我们建议广泛使用的核心促销员和终结者一套,并提出了一系列工程谷物物种的原则和指导方针。

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