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首页> 外文期刊>Nature Communications >Synergy between the anthocyanin and RDR6/SGS3/DCL4 siRNA pathways expose hidden features of Arabidopsis carbon metabolism
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Synergy between the anthocyanin and RDR6/SGS3/DCL4 siRNA pathways expose hidden features of Arabidopsis carbon metabolism

机译:花青素和RDR6 / SGS3 / DCL4 siRNA途径之间的协同作用暴露拟南芥碳代谢的隐藏特征

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Anthocyanin pigments furnish a powerful visual output of the stress and metabolic status of Arabidopsis thaliana plants. Essential for pigment accumulation is TRANSPARENT TESTA19 (TT19), a glutathione S -transferase proposed to bind and stabilize anthocyanins, participating in their vacuolar sequestration, a function conserved across the flowering plants. Here, we report the identification of genetic suppressors that result in anthocyanin accumulation in the absence of TT19. We show that mutations in RDR6 , SGS3 , or DCL4 suppress the anthocyanin defect of tt19 by pushing carbon towards flavonoid biosynthesis. This effect is not unique to tt19 and extends to at least one other anthocyanin pathway gene mutant. This synergy between mutations in components of the RDR6-SGS3-DCL4 siRNA system and the flavonoid pathway reveals genetic/epigenetic mechanisms regulating metabolic fluxes.
机译:花青素颜料提供强大的视觉输出的拟南芥植物的应力和代谢状态。颜料积累的必需品是透明的Testa19(TT19),提出的谷胱甘肽S-转移酶结合和稳定花青素,参与其真空封存,该功能在开花植物上保守。在这里,我们报告了在没有TT19的情况下导致花青素积累的遗传抑制剂的鉴定。我们表明RDR6,SGS3或DCL4中的突变通过推向类黄酮生物合成来抑制TT19的花青素缺陷。这种效果不是TT19的独特,并且延伸到至少一种其他沙孔素途径基因突变体。 RDR6-SGS3-DCL4 siRNA系统和类黄酮途径的组分中突变之间的这种协同作用揭示了调节代谢助熔剂的遗传/表观遗传机制。

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