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首页> 外文期刊>Bioenergy research >Allelic Association, Chemical Characterization and Saccharification Properties of brown midrib Mutants of Sorghum (Sorghum bicolor (L.) Moench)
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Allelic Association, Chemical Characterization and Saccharification Properties of brown midrib Mutants of Sorghum (Sorghum bicolor (L.) Moench)

机译:高粱棕色中脉突变体的等位基因关联,化学表征和糖化特性(高粱)

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摘要

Genetic improvement of biomass crops can significantly reduce the overall cost of biomass-to-ethanol conversion. The conversion of cellulose to monomeric sugar units is affected by lignin content and composition. Sorghum has attracted the attention of the scientific and industrial community as a promising source of biomass for bioenergy due to its great yield potential and tolerance to stresses. The brown midrib (bmr) mutants of sorghum are characterized by brown vascular tissue associated with altered lignin content. Twenty-eight bmr mutants have been identified since the late 1970s, but the allelic relationships have not been fully established, and the function of only one of the Bmr loci has been unequivocally established. In this study, we combined genetic and chemical approaches to establish that there are mutations at least four independent bmr loci, represented by the bmr2, bmr6, bmr12 and bmr19 groups. Since each allelic group presents unique staining characteristics, rapid classification of emerging bmr lines into the existing groups can be achieved using phloroglucinol-HCl as a histochemical stain. In addition, pyrolysis-gas chromatography-mass spectrometry, enabled the characterization of changes in subunit lignin composition in each of the allelic groups, to help predict the genes underlying the mutations. Enzymatic saccharification of stover from plants representing each allelic bmr group demonstrated that lignin changes in lines belonging to the bmr2, bmr6 and bmr12 groups can increase glucose yields, up to 25% compared to wild-type isolines. In order to expedite the selection of the bmr mutant alleles in breeding populations, we have developed molecular markers specific for bmr7 and bmr25, two novel mutant alleles of the gene encoding caffeic acid O-methyl transferase. Based on the results from this study, we propose to rename the bmr mutants in a manner that reflects the number of independent loci.
机译:生物量作物的遗传改良可以显着降低生物量转化为乙醇的总成本。纤维素向单体糖单元的转化受木质素含量和组成的影响。高粱由于其巨大的产量潜力和对压力的承受能力,作为一种有前途的生物能源来源已引起了科学和工业界的关注。高粱的棕色中脉(bmr)突变体的特征是与木质素含量变化相关的棕色维管组织。自1970年代后期以来,已鉴定出28个bmr突变体,但等位基因之间的关系尚未完全确立,并且只有一个Bmr基因座的功能已明确确立。在这项研究中,我们结合了遗传和化学方法,确定至少有四个独立的bmr基因座存在突变,分别由bmr2,bmr6,bmr12和bmr19组代表。由于每个等位基因组均表现出独特的染色特性,因此可以使用间苯三酚-HCl作为组织化学染色剂,将新兴的bmr系快速分类为现有的组。此外,热解-气相色谱-质谱法能够表征每个等位基因组中亚基木质素组成的变化,以帮助预测突变的基础基因。来自代表每个等位基因bmr组的植物的秸秆的酶促糖化表明,属于bmr2,bmr6和bmr12组的品系中木质素的变化可以增加葡萄糖产量,与野生型等价线相比最多可提高25%。为了加快育种种群中bmr突变等位基因的选择,我们开发了对bmr7和bmr25特异的分子标记,这是编码咖啡酸O-甲基转移酶基因的两个新的突变等位基因。根据这项研究的结果,我们建议以反映独立基因座数量的方式重命名bmr突变体。

著录项

  • 来源
    《Bioenergy research》 |2008年第4期|193-204|共12页
  • 作者单位

    1.Department of Agronomy Purdue University West Lafayette IN 47907 USA 2.University of Florida Genetics Institute Cancer and Genetics Research Complex 1376 Mowry Road Gainesville FL 32610-3610 USA;

    2.University of Florida Genetics Institute Cancer and Genetics Research Complex 1376 Mowry Road Gainesville FL 32610-3610 USA 3.Agronomy Department University of Florida Gainesville FL 32610 USA 4.Laboratory of Renewable Resources Engineering Purdue University West Lafayette IN 47907 USA;

    2.University of Florida Genetics Institute Cancer and Genetics Research Complex 1376 Mowry Road Gainesville FL 32610-3610 USA;

    1.Department of Agronomy Purdue University West Lafayette IN 47907 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bmr brown midrib Ethanol Lignin Lignocellulosic Saccharification Sorghum bicolor;

    机译:bmr棕色中脉乙醇木质素木质纤维素糖化高粱双色;

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