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Discrimination of genetically modified poplar clones by analytical pyrolysis-gas chromatography and principal component analysis

机译:解析热解-气相色谱法和主成分分析法对转基因杨树无性系的鉴别

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Analytical pyrolysis combined with gas chromatography and mass spectrometry (Py-GC-MS) is a relatively rapid (1-3 h) method for the investigation of polymers. Various wood tissues from transgenic poplar clones and from control samples have been subjected to a screening test by Py-GC-MS. Pyrolysis products from lignin- and carbohydrate-derived pyrolysis products were subjected to multivariate principal component analysis (PCA). The first three PC accounting for 39-72% of the total variance in the original data set could be attributed to vinyl products from lignin and levoglucosan from cellulose. Samples with gene construct rbcs-rol C were only discriminated by plotting PC1 versus PC3 using the whole data set. However, the wood from trees containing gene construct 35 S-rol C were discriminated in all examined models indicating significant impacts during biosynthesis of the wood. One sample within the data set was further clustered because it turned out that this tree died off after two vegetation periods.
机译:分析热解结合气相色谱和质谱分析(Py-GC-MS)是研究聚合物的相对较快的方法(1-3 h)。来自转基因杨树克隆和对照样品的各种木材组织已通过Py-GC-MS进行了筛选测试。对来自木质素和碳水化合物的热解产物的热解产物进行多元主成分分析(PCA)。前三个PC占原始数据集中总差异的39-72%,这可能归因于木质素的乙烯基产品和纤维素的左旋葡聚糖。仅通过使用整个数据集绘制PC1对PC3的图来区分具有基因构建体rbcs-rol C的样品。然而,在所有检验的模型中都区分了含有基因构建体35 S-rol C的树木中的木材,表明在木材的生物合成过程中产生了重大影响。数据集中的一个样本被进一步聚类,因为事实证明这棵树在两个植被期后死亡。

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