首页> 外文期刊>BMC Plant Biology >Combinatorial analysis of lupulin gland transcription factors from R2R3Myb, bHLH and WDR families indicates a complex regulation of chs_H1 genes essential for prenylflavonoid biosynthesis in hop (Humulus Lupulus L.)
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Combinatorial analysis of lupulin gland transcription factors from R2R3Myb, bHLH and WDR families indicates a complex regulation of chs_H1 genes essential for prenylflavonoid biosynthesis in hop (Humulus Lupulus L.)

机译:对来自R2R3Myb,bHLH和WDR家族的lupulin腺转录因子的组合分析表明,蛇麻草中异戊二烯类黄酮生物合成所必需的chs_H1基因具有复杂的调控。

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Background Lupulin glands of hop produce a specific metabolome including hop bitter acids valuable for the brewing process and prenylflavonoids with promising health-beneficial activities. The detailed analysis of the transcription factor (TF)-mediated regulation of the oligofamily of one of the key enzymes, i.e., chalcone synthase CHS_H1 that efficiently catalyzes the production of naringenin chalcone, a direct precursor of prenylflavonoids in hop, constitutes an important part of the dissection of the biosynthetic pathways leading to the accumulation of these compounds. Results Homologues of flavonoid-regulating TFs HlMyb2 (M2), HlbHLH2 (B2) and HlWDR1 (W1) from hop were cloned using a lupulin gland-specific cDNA library from the hop variety Osvald's 72. Using a "combinatorial" transient GUS expression system it was shown that these unique lupulin-gland-associated TFs significantly activated the promoter (P) of chs_H1 in ternary combinations of B2, W1 and either M2 or the previously characterized HlMyb3 (M3). The promoter activation was strongly dependent on the Myb-P binding box TCCTACC having a core sequence CCWACC positioned on its 5' end region and it seems that the complexity of the promoter plays an important role. M2B2W1-mediated activation significantly exceeded the strength of expression of native chs_H1 gene driven by the 35S promoter of CaMV, while M3B2W1 resulted in 30% of the 35S:chs_H1 expression level, as quantified by real-time PCR. Another newly cloned hop TF, HlMyb7, containing a transcriptional repressor-like motif pdLNLD/ELxiG/S (PDLNLELRIS), was identified as an efficient inhibitor of chs_H1-activating TFs. Comparative analyses of hop and A. thaliana TFs revealed a complex activation of Pchs_H1 and Pchs4 in combinatorial or independent manners. Conclusions This study on the sequences and functions of various lupulin gland-specific transcription factors provides insight into the complex character of the regulation of the chs_H1 gene that depends on variable activation by combinations of R2R3Myb, bHLH and WDR TF homologues and inhibition by a Myb repressor.
机译:背景啤酒花的卢普林腺产生特殊的代谢组,包括对啤酒酿造过程有价值的啤酒花苦味酸和异戊二烯类黄酮类化合物,它们具有有益健康的作用。转录因子(TF)介导的一种关键酶寡聚体调控的详细分析,即查尔酮合酶CHS_H1有效地催化了啤酒花中异戊二烯类黄酮的直接前体柚皮素查尔酮的产生,这是该酶的重要组成部分。解剖导致这些化合物积聚的生物合成途径。结果使用啤酒花变种Osvald's 72的lupulin腺体特异cDNA文库,克隆了啤酒花中调节类黄酮的TFs H1Myb2(M2),HlbHLH2(B2)和HlWDR1(W1)的同源物。使用“组合”瞬时GUS表达系统结果表明,这些独特的与卢普林腺相关的TFs在B2,W1和M2或先前鉴定的HlMyb3(M3)的三元组合中显着激活了chs_H1的启动子(P)。启动子的激活强烈依赖于Myb-P结合盒TCCTACC,其核心序列CCWACC位于其5'末端区域,看来启动子的复杂性起着重要的作用。 M2B2W1介导的激活作用大大超过了CaMV 35S启动子驱动的天然chs_H1基因的表达强度,而M3B2W1导致35S:chs_H1表达水平的30%(通过实时PCR定量)。另一个新克隆的蛇麻草TF HlMyb7,含有类似转录阻遏物的基序pdLNLD / ELxiG / S(PDLNLELRIS),被鉴定为激活chs_H1的TF的有效抑制剂。蛇麻草和拟南芥TFs的比较分析显示,Pchs_H1和Pchs4以组合或独立方式被复杂激活。结论这项对各种卢普林腺特异转录因子的序列和功能的研究为深入了解chs_H1基因调控的复杂特征提供了依据,该调控依赖于R2R3Myb,bHLH和WDR TF同源物组合的可变激活以及Myb阻遏物的抑制。

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