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Isolation and characterization of Ulva prolifera actin1 gene and function verification of the 5′ flanking region as a strong promoter

机译:Ulva prolifera actin1基因的分离和鉴定及5'侧翼区作为强启动子的功能验证

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Ulva prolifera is a green macroalgae with an extremely high growth rate that can accumulate biomass with considerable protein content. To set up an available seaweed expression system, a prior step is to isolate endogenous and strong constitutive promoters. For this reason, the full-length genomic actin1 gene from U. prolifera (Upactin1 ) was cloned and its 5′ flanking sequence was obtained by genome walking. The Upactin1 open reading frame consisted of 1134 nucleotides encoding 377 amino acid residues. Besides 4 exons and 3 introns in the coding region, an extra leader intron was identified in the 5′ untranslated region. According to quantitative GUS assays based on transient expression, the promoter activity of the Upactin1 5′ flanking region was found to be several times higher than that of the widely-used cauliflower mosaic virus 35S (CaMV35S) in all tested species of Ulva . In addition, precise deletion of the leader intron led to a significant decrease of promoter strength in U. prolifera , and almost entire loss of strength in U. linza and U. pertusa . To our knowledge, this is the first report to prove function of a leader intron in algae. The 5′ flanking region of Upactin1 was shown to be a much stronger promoter than the foreign CaMV35S, and its activity was highly dependent on the presence of the leader intron. We propose that the Upactin1 promoter could serve as an endogenous and strong constitutive element for genetic engineering of U. prolifera .
机译:ulva prolifera是一种绿色的大型藻类,具有极高的生长速率,可以积聚具有大量蛋白质含量的生物质。要建立可用的海藻表达系统,先前的步骤是分离内源性强组成型启动子。由于这个原因,来自 U的全长基因组 actin1基因。克隆了prolifera(Upactin1),并通过基因组步移获得了其5'侧翼序列。 Upactin1开放阅读框由1134个核苷酸组成,编码377个氨基酸残基。除了编码区中的4个外显子和3个内含子外,在5'非翻译区中还发现了一个额外的前导内含子。根据基于瞬时表达的定量GUS分析,发现在所有受试物种中, Upactin1 5'侧翼区域的启动子活性比广泛使用的花椰菜花叶病毒35S(CaMV35S)的启动子活性高几倍。 i>乌尔瓦。另外,前导内含子的精确缺失导致i U中启动子强度的显着降低。增生,并几乎完全失去i的力量。 linza和 U。百日草据我们所知,这是第一份证明藻类内含子内含子功能的报告。已显示,Upactin1的5'侧翼区比外源CaMV35S具有更强的启动子,其活性高度依赖于前导内含子的存在。我们建议 Upactin1启动子可以作为 U基因工程的内源性强组成成分。增殖

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