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首页> 外文期刊>BMC Genomics >Genome-wide transcriptome profiling of transgenic hop (Humulus lupulus L.) constitutively overexpressing Hl WRKY1 and Hl WDR1 transcription factors
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Genome-wide transcriptome profiling of transgenic hop (Humulus lupulus L.) constitutively overexpressing Hl WRKY1 and Hl WDR1 transcription factors

机译:组成性表达H1 WRKY1和H1 WDR1转录因子的转基因蛇麻草(Humulus lupulus L.)的全基因组转录组分析

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The hop plant (Humulus lupulus L.) is a valuable source of several secondary metabolites, such as flavonoids, bitter acids, and essential oils. These compounds are widely implicated in the beer brewing industry and are having potential biomedical applications. Several independent breeding programs around the world have been initiated to develop new cultivars with enriched lupulin and secondary metabolite contents but met with limited success due to several constraints. In the present work, a pioneering attempt has been made to overexpress master regulator binary transcription factor complex formed by HlWRKY1 and HlWDR1 using a plant expression vector to enhance the level of prenylflavonoid and bitter acid content in the hop. Subsequently, we performed transcriptional profiling using high-throughput RNA-Seq technology in leaves of resultant transformants and wild-type hop to gain in-depth information about the genome-wide functional changes induced by HlWRKY1 and HlWDR1 overexpression. The transgenic WW-lines exhibited an elevated expression of structural and regulatory genes involved in prenylflavonoid and bitter acid biosynthesis pathways. In addition, the comparative transcriptome analysis revealed a total of 522 transcripts involved in 30 pathways, including lipids and amino acids biosynthesis, primary carbon metabolism, phytohormone signaling and stress responses were differentially expressed in WW-transformants. It was apparent from the whole transcriptome sequencing that modulation of primary carbon metabolism and other pathways by HlWRKY1 and HlWDR1 overexpression resulted in enhanced substrate flux towards secondary metabolites pathway. The detailed analyses suggested that none of the pathways or genes, which have a detrimental effect on physiology, growth and development processes, were induced on a genome-wide scale in WW-transgenic lines. Taken together, our results suggest that HlWRKY1 and HlWDR1 simultaneous overexpression positively regulates the prenylflavonoid and bitter acid biosynthesis pathways in the hop and thus these transgenes are presented as prospective candidates for achieving enhanced secondary metabolite content in the hop.
机译:啤酒花植物(Humulus lupulus L.)是几种次生代谢产物的重要来源,例如黄酮类化合物,苦味酸和精油。这些化合物广泛涉及啤酒酿造工业,并具有潜在的生物医学应用。全球已经启动了几个独立的育种计划,以开发富含卢普林和次生代谢产物的新品种,但由于一些限制而获得的成功有限。在当前的工作中,已经进行了开创性的尝试,以使用植物表达载体过表达由啤酒花中的异戊二烯类黄酮和苦味酸含量高表达由H1WRKY1和H1WDR1形成的主调节子二进制转录因子复合物。随后,我们在产生的转化子和野生型啤酒花的叶片中使用高通量RNA-Seq技术进行了转录分析,以获取有关HlWRKY1和HlWDR1过表达诱导的全基因组功能变化的深入信息。转基因WW系显示参与异戊二烯类黄酮和苦酸生物合成途径的结构和调节基因的表达升高。此外,比较转录组分析显示,共有522个转录本涉及30个途径,包括脂质和氨基酸的生物合成,初级碳代谢,植物激素信号传导和应激反应在WW转化子中差异表达。从整个转录组测序中可以明显看出,HlWRKY1和HlWDR1过表达对初级碳代谢和其他途径的调节导致底物通向次级代谢产物途径的通量增加。详细的分析表明,在WW转基因品系的全基因组范围内,均未诱导对生理,生长和发育过程有不利影响的途径或基因。两者合计,我们的结果表明,HlWRKY1和HlWDR1同时过量表达正调控啤酒花中的异戊二烯类黄酮和苦酸生物合成途径,因此,这些转基因被认为是实现啤酒花中次级代谢产物含量提高的潜在候选者。

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