Sykes Robert, Yung Matthew, Novaes Evandro, Kirst Matias, Peter Gary, Davis Mark
National Renewable Energy Laboratory, Golden, CO, USA.
Methods Mol Biol. 2009;581:169-83. doi: 10.1007/978-1-60761-214-8_12.
We describe a high-throughput method for estimating cell-wall chemistry traits using analytical pyrolysis. The instrument used to perform the high-throughput cell-wall chemistry analysis consists of a commercially available pyrolysis unit and autosampler coupled to a custom-built molecular beam mass spectrometer. The system is capable of analyzing approximately 42 biomass samples per hour. Lignin content and syringyl to guaiacol (S/G) ratios can be estimated directly from the spectra and differences in cell wall chemistry in large groups of samples can easily be identified using multivariate statistical data analysis methods. The utility of the system is demonstrated on a set of 800 greenhouse-grown poplar trees grown under two contrasting nitrogen treatments. High-throughput analytical pyrolysis was able to determine that the lignin content varied between 13 and 28% and the S/G ratio ranged from 0.5 to 1.5. There was more cell-wall chemistry variation in the plants grown under high nitrogen conditions than trees grown under nitrogen-deficiency conditions. Analytical pyrolysis allows the user to rapidly screen large numbers of samples at low cost, using very little sample material while producing reliable and reproducible results.
我们描述了一种使用分析热解来估算细胞壁化学特征的高通量方法。用于进行高通量细胞壁化学分析的仪器由一台市售热解装置和自动进样器与一台定制的分子束质谱仪组成。该系统每小时能够分析约42个生物质样品。木质素含量以及紫丁香基与愈创木基(S/G)比率可直接从光谱中估算出来,并且使用多元统计数据分析方法能够轻松识别大量样品中细胞壁化学的差异。该系统的实用性在一组800株在两种对比氮处理条件下温室培育的杨树中得到了证明。高通量分析热解能够确定木质素含量在13%至28%之间变化,S/G比率在0.5至1.5范围内。在高氮条件下生长的植株中,细胞壁化学变化比在缺氮条件下生长的树木更多。分析热解允许用户以低成本快速筛选大量样品,使用极少的样品材料,同时产生可靠且可重复的结果。