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首页> 外文期刊>Theoretical and Applied Genetics >Identification of QTLs influencing wood property traits in loblolly pine (Pinus taeda L.). II. Chemical wood properties
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Identification of QTLs influencing wood property traits in loblolly pine (Pinus taeda L.). II. Chemical wood properties

机译:鉴定影响火炬松(Pinus taeda L.)木材特性的QTL。二。化学木材性能

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摘要

Chemical wood property traits were analyzed for the presence of quantitative trait loci (QTLs) in a three-generation outbred pedigree of loblolly pine (Pinus taeda L.). These traits were assayed using pyrolysis molecular beam mass spectrometry and include mass spectrum peak intensities associated with carbohydrates, α-cellulose and hemicellulose sugars, and lignin. Models for projection to latent structures (PLS) were used to also estimate the chemical composition of cell walls (i.e., α-cellulose, galactan and lignin) from mass spectrum data using multivariate regression. Both earlywood and latewood fractions from the fifth annual ring were analyzed for each trait. An interval mapping approach designed for an outbred pedigree was used to estimate the number of QTLs, the magnitude of QTL effects, and their genomic position. Eight unique QTLs influencing cell wall chemistry were detected from multiple peak intensities and/or PLS estimates using the one- and two-QTL models. Significant differences in chemical contents were observed among the populations from North Carolina vs Oklahoma, and results from QTL×environment analyses suggest that QTLs interact with environmental location. QTLs should be verified in larger experiments and in different genetic and environmental backgrounds. QTL mapping will help towards eventually identifying genes having a major effect on chemical wood properties.
机译:分析了化学木材的性状特征,分析了三代火炬松(Pinus taeda L.)的近交系谱中是否存在数量性状位点(QTL)。使用热解分子束质谱法分析了这些性状,包括与碳水化合物,α-纤维素和半纤维素糖以及木质素相关的质谱峰强度。投影到潜在结构(PLS)的模型还用于使用多元回归从质谱数据中估算细胞壁(即α-纤维素,半乳聚糖和木质素)的化学成分。对第五个年轮的早材和晚材成分进行了分析。为近亲谱系设计的区间作图方法用于估计QTL的数量,QTL影响的大小及其基因组位置。使用一个和两个QTL模型,从多个峰强度和/或PLS估计值中检测到八个影响细胞壁化学的独特QTL。在北卡罗莱纳州与俄克拉荷马州的人群中观察到化学成分的显着差异,并且QTLx环境分析的结果表明QTL与环境位置相互作用。应该在更大的实验中以及在不同的遗传和环境背景下验证QTL。 QTL作图将有助于最终鉴定对木材化学性质有重大影响的基因。

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  • 来源
    《Theoretical and Applied Genetics》 |2002年第3期|214-222|共9页
  • 作者单位

    Environmental Sciences Division Oak Ridge National Laboratory P.O. Box 2088 MS-6422 Bldg 1059 Rm 103 Oak Ridge TN 37831-2008 USA;

    National Renewable Energy Laboratory 1617 Cole Boulevard Golden CO 80401 USA;

    Environmental Sciences Division Oak Ridge National Laboratory P.O. Box 2088 MS-6422 Bldg 1059 Rm 103 Oak Ridge TN 37831-2008 USA;

    George Staebler Research Center Weyerhaeuser Company PO Box 420 Centralia WA 98531 USA;

    National Renewable Energy Laboratory 1617 Cole Boulevard Golden CO 80401 USA;

    Institute of Forest Genetics USDA Forest Service Department of Environmental Horticulture University of California One Shields Avenue Davis CA 95616 USA;

    Institute of Forest Genetics USDA Forest Service Department of Environmental Horticulture University of California One Shields Avenue Davis CA 95616 USA;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Keywords Pinus taeda L.; QTL mapping; Wood chemistry; α-Cellulose; Hemicellulose; Lignin;

    机译:QTL作图;木材化学;α-纤维素;半纤维素;木质素;

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