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MiR397b regulates both lignin content and seed number in Arabidopsis via modulating a laccase involved in lignin biosynthesis

机译:MiR397b通过调节参与木质素生物合成的漆酶来调节拟南芥中的木质素含量和种子数量

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Plant laccase (LAC) enzymes belong to the blue copper oxidase family and polymerize monolignols into lignin. Recent studies have established the involvement of microRNAs in this process; however, physiological functions and regulation of plant laccases remain poorly understood. Here, we show that a laccase gene, LAC4 , regulated by a microRNA, miR397b, controls both lignin biosynthesis and seed yield in Arabidopsis. In transgenic plants, overexpression of miR397b (OXmiR397b) reduced lignin deposition. The secondary wall thickness of vessels and the fibres was reduced in the OXmiR397b line, and both syringyl and guaiacyl subunits are decreased, leading to weakening of vascular tissues. In contrast, overexpression of miR397b?¢????resistant laccase mRNA results in an opposite phenotype. Plants overexpressing miR397b develop more than two inflorescence shoots and have an increased silique number and silique length, resulting in higher seed numbers. In addition, enlarged seeds and more seeds are formed in these miR397b overexpression plants. The study suggests that miR397?¢????mediated development via regulating laccase genes might be a common mechanism in flowering plants and that the modulation of laccase by miR397 may be potential for engineering plant biomass production with less lignin.
机译:植物漆酶(LAC)酶属于蓝色铜氧化酶家族,可将单木酚醇合成木质素。最近的研究确定了microRNA在这一过程中的参与。然而,对植物漆酶的生理功能和调控仍然知之甚少。在这里,我们显示了漆酶基因LAC4,由microRNA miR397b调节,既控制木质素的生物合成,又控制拟南芥的种子产量。在转基因植物中,miR397b(OXmiR397b)的过表达减少了木质素的沉积。在OXmiR397b品系中,血管和纤维的次生壁厚减少,而丁香基和愈创木基亚基均减少,从而导致血管组织变弱。相反,抗miR397bΔβαβ的漆酶mRNA的过表达导致相反的表型。过量表达miR397b的植物会发育两个以上的花序芽,并且角果数和角果长度增加,从而导致更高的种子数。此外,在这些miR397b过表达植物中形成了更大的种子和更多的种子。该研究表明,通过调节漆酶基因介导的miR397Δβ介导的发育可能是开花植物中的常见机制,而miR397对漆酶的调节可能对于用较少的木质素工程化植物生物量的生产具有潜力。

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