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A Nonsense Mutation in a Cinnamyl Alcohol Dehydrogenase Gene Is Responsible for the Sorghum brown midrib6 Phenotype

机译:肉桂醇脱氢酶基因的无意义突变是高粱棕色midrib6表型负责。

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摘要

brown midrib6 (bmr6) affects phenylpropanoid metabolism, resulting in reduced lignin concentrations and altered lignin composition in sorghum (Sorghum bicolor). Recently, bmr6 plants were shown to have limited cinnamyl alcohol dehydrogenase activity (CAD; EC 1.1.1.195), the enzyme that catalyzes the conversion of hydroxycinnamoyl aldehydes (monolignals) to monolignols. A candidate gene approach was taken to identify Bmr6. Two CAD genes (Sb02g024190 and Sb04g005950) were identified in the sorghum genome based on similarity to known CAD genes and through DNA sequencing a nonsense mutation was discovered in Sb04g005950 that results in a truncated protein lacking the NADPH-binding and C-terminal catalytic domains. Immunoblotting confirmed that the Bmr6 protein was absent in protein extracts from bmr6 plants. Phylogenetic analysis indicated that Bmr6 is a member of an evolutionarily conserved group of CAD proteins, which function in lignin biosynthesis. In addition, Bmr6 is distinct from the other CAD-like proteins in sorghum, including SbCAD4 (Sb02g024190). Although both Bmr6 and SbCAD4 are expressed in sorghum internodes, an examination of enzymatic activity of recombinant Bmr6 and SbCAD4 showed that Bmr6 had 1 to 2 orders of magnitude greater activity for monolignol substrates. Modeling of Bmr6 and SbCAD4 protein structures showed differences in the amino acid composition of the active site that could explain the difference in enzyme activity. These differences include His-57, which is unique to Bmr6 and other grass CADs. In summary, Bmr6 encodes the major CAD protein involved in lignin synthesis in sorghum, and the bmr6 mutant is a null allele.
机译:棕色Midrib6(bmr6)影响苯基丙烷的代谢,导致高粱(Sorghum bicolor)中木质素浓度降低和木质素组成改变。最近,显示出bmr6植物具有有限的肉桂醇脱氢酶活性(CAD; EC 1.1.1.195),该酶催化羟基肉桂酰基醛(单酚)转化为单酚。采用了候选基因方法来鉴定Bmr6。根据与已知CAD基因的相似性,在高粱基因组中鉴定了两个CAD基因(Sb02g024190和Sb04g005950),并通过DNA测序在Sb04g005950中发现了无意义的突变,导致无NADPH结合和C端催化结构域的蛋白被截短。免疫印迹证实,bmr6植物的蛋白质提取物中不存在Bmr6蛋白。系统发育分析表明,Bmr6是进化上保守的一组CAD蛋白的成员,这些蛋白在木质素的生物合成中起作用。另外,Bmr6与高粱中的其他CAD类蛋白(包括SbCAD4(Sb02g024190))不同。尽管Bmr6和SbCAD4均在高粱节间表达,但对重组Bmr6和SbCAD4的酶活性的检查表明,Bmr6对单木香醇底物的活性高1至2个数量级。 Bmr6和SbCAD4蛋白结构的建模显示了活性位点氨基酸组成的差异,这可以解释酶活性的差异。这些差异包括His-57,这是Bmr6和其他草CAD特有的。总之,Bmr6编码高粱中木质素合成所涉及的主要CAD蛋白,而bmr6突变体是无效等位基因。

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  • 来源
    《Plant Physiology》 |2009年第2期|p.584-595|共12页
  • 作者单位

    Grain, Forage, and Bioenergy Research Unit, United States Department of Agriculture-Agricultural Research Service (S.E.S., A.J.S., N.A.P., D.L.F.-H., G.S., J.F.P.), Department of Agronomy and Horticulture (S.E.S., A.J.S., N.A.P., G.S., J.F.P.), and Department of Plant Pathology (D.L.F.-H.), University of Nebraska, Lincoln, Nebraska 68583–0739;

    and Department of Chemistry, Creighton University, Omaha, Nebraska 68178 (E.J.H.);

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  • 入库时间 2022-08-17 23:31:58

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