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首页> 外文期刊>Wood Science and Technology >Near-infrared-based models for lignin syringyl/guaiacyl ratio of Eucalyptus benthamii and E. pellita using a streamlined thioacidolysis procedure as the reference method
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Near-infrared-based models for lignin syringyl/guaiacyl ratio of Eucalyptus benthamii and E. pellita using a streamlined thioacidolysis procedure as the reference method

机译:基于近红外线的木质素霉菌/ GuaiaIaIaCyl的近红外模型,桉树植物和E.Pellita使用流线型的硫代酰基分解方法作为参考方法

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摘要

Lignin syringyl/guaiacyl (S/G) ratio is a key trait in the cellulose pulping industry. Near-infrared (NIR) spectroscopy data collected with a bench and a portable instrument were used to develop prediction models for S/G ratio from sawdust samples of 1220 trees of two contrasting Eucalyptus species, namely E. benthamii (n=484), which is a temperate, cold-resistant species, and E. pellita (n=736), which is a heat- and disease-resistant tropical species. For each species, samples were selected based on maximal NIR spectral variation and analyzed for S/G using a streamlined thioacidolysis method with minimal sample input. NIR models were developed for each species separately and jointly. Instead of just using the coefficient of determination (R-2) and the ratio of performance to deviation (RPD), the Spearman's rank correlation (r(s)) and the average of the coefficient of correlation between the references and predicted values (CVRP) were taken into account to evaluate the models. The bench spectrometer had a better performance than the portable instrument (R-2 from 0.77 to 0.86 versus 0.31 to 0.47). Species-specific NIR models were better for E. benthamii (r(s)=0.89, CVRP=2.75%, R-2=0.86 and RPD=1.8), while the joint-species model was better for E. pellita (r(s)=0.97, CVRP=3.98%, R-2=0.82 and RPD=2.1). These NIR models should prove useful for high-throughput wood phenotyping in advanced breeding programs.
机译:木质素霉素/愈桂基(S / g)比例是纤维素制浆工业的关键特征。用板凳和便携式仪器收集的近红外(NIR)光谱数据用于从锯末样品的锯末样本的S / G比的预测模型与两棵对比桉树种类的1220棵树的样品,即E. Benthamii(n = 484)是一种温带,抗寒物种和E.Pellita(n = 736),这是一种耐热性的热带物种。对于每种物种,基于最大的NIR光谱变化选择样品,并使用具有最小样品输入的流线型硫化物解水解方法分析S / G。 NIR模型分别和共同开发了每个物种。而不是仅使用确定系数(R-2)和偏差的性能与偏差(RPD)的比率,Spearman的秩相关(R(S))和参考值和预测值之间的相关系数的平均值(CVRP )考虑到评估模型。台面光谱仪比便携式仪器具有更好的性能(R-2从0.77到0.86,而不是0.31至0.47)。特异性的NIR模型对于E. Benthamii(R(S)= 0.89,CVRP = 2.75%,R-2 = 0.86和RPD = 1.8),而联合物种模型对E.Pellita(R( s)= 0.97,CVRP = 3.98%,R-2 = 0.82和RPD = 2.1)。这些NIR模型应该对高级育种计划中的高通量木质表型有用。

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    《Wood Science and Technology》 |2019年第3期|521-533|共13页
  • 作者单位

    Univ Brasilia Biol Inst Bot Dept CP 04457 BR-70910900 Brasilia DF Brazil;

    EMBRAPA Genet Resources & Biotechnol Plant Genet Lab BR-70770910 Brasilia DF Brazil|Univ Catolica Brasilia Grad Program Genom Sci & Biotechnol SGAN 916 Modulo B BR-70790160 Brasilia DF Brazil;

    Univ British Columbia Dept Wood Sci 4030-2424 Main Mall Vancouver BC V6T 1Z4 Canada;

    Univ Brasilia Biol Inst Bot Dept CP 04457 BR-70910900 Brasilia DF Brazil;

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