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Genetic Analysis of Cell Wall Traits Relevant to Cellulosic Ethanol Production in Maize (Zea mays L.)

机译:玉米纤维素乙醇生产相关细胞壁性状的遗传分析

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摘要

Maize hybrids with improved stover yield and quality are needed to support the emerging cellulosic biofuels industry. Knowledge of the genetic variation, covariation, and genetic architecture of agronomic and cell wall traits will help maize breeders improve relevant traits through selective breeding and genetic engineering. We utilized the maize intermated B73 x Mo17 (IBM) recombinant inbred line (RIL) population to map quantitative trait loci (QTL) and to evaluate the genetic relationships among traits relevant for cellulosic biofuel production, including grain yield, stover yield, neutral detergent fiber digestibility (NDFD), and glucan, xylan, and lignin concentration. Intermated B73 x Mo17 RIL were evaluated per se and as testcrosses to W604S to assess how well performance and QTL effects correspond between inbreds and hybrids. There were no unfavorable correlations between agronomic and cell wall traits within the testcross progeny. Polysaccharide content was either positively correlated to, or not correlated to, NDFD, indicating that increasing both carbohydrate content and convertibility is feasible. Quantitative trait loci were identified for all traits evaluated, but few QTL were in common between inbred per se and testcross evaluations despite moderate to high genotypic correlations between progeny types. This study provides information that will support the development of dual-purpose maize hybrids that are high in grain yield and also high in yield of digestible cellulosic feedstock.
机译:需要具有更高秸秆产量和品质的玉米杂交种 来支持新兴的纤维素生物燃料产业。农艺和细胞壁性状的遗传变异,协变和遗传结构的知识 将帮助玉米育种者通过选择性育种和遗传改良 相关性状 我们利用玉米B73 x Mo17(IBM)重组 自交系(RIL)群体绘制了数量性状基因座 (QTL)和评价与纤维素生物燃料生产相关的性状之间的遗传关系,包括谷物产量,秸秆产量,中性洗涤剂纤维消化率(NDFD),农作物中性纤维的消化率葡聚糖,木聚糖和木质素的浓度。分别评估了确定的B73 x Mo17 RIL,并将其作为与W604S 的测试杂交,以评估 近交和杂种之间的性能和QTL效果如何。在testcross 子代中,农艺性状与细胞壁性状之间没有不利的相关性 。多糖含量与NDFD正相关或不相关,表明增加碳水化合物含量和可转换性都是可行的。对于所有评估的性状,都确定了定量的 性状基因座,但近交本身和测试交叉评价之间的 QTL很少,尽管具有中等到高的基因型相关性后代 类型之间。该研究提供的信息将支持 玉米高产且可消化纤维素原料高产的两用玉米杂交种。 上>

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  • 来源
    《Crop Science》 |2010年第3期|1-11|共11页
  • 作者单位

    Dep. of Agronomy, Plant Breeding and Plant Genetics Program. Univ. of Wisconsin, Madison, WI 53706;

    Dep. of Agronomy, Plant Breeding and Plant Genetics Program. Univ. of Wisconsin, Madison, WI 53706;

    Dep. of Agronomy, Plant Breeding and Plant Genetics Program. Univ. of Wisconsin, Madison, WI 53706;

    Dep. of Agronomy, Plant Breeding and Plant Genetics Program. Univ. of Wisconsin, Madison, WI 53706;

    Dep. of Agronomy, Plant Breeding and Plant Genetics Program. Univ. of Wisconsin, Madison, WI 53706;

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