Niemann Gerard J, Pureveen Jos B M, Eijkel Gert B, Poorter Hendrik, Boon Jaap J
Department of Plant Ecology and Evolutionary Biology, University of Utrecht, P.O. Box 800.84, 3508. TB, Utrecht, The Netherlands.
FOM Institute for Atomic and Molecular Physics, Kruislaan 407, 1098 SJ, Amsterdam, The Netherlands.
Oecologia. 1992 Apr;89(4):567-573. doi: 10.1007/BF00317165.
Eleven grass species varying in potential relative growth rate (RGR) were investigated for differences in chemical composition by pyrolysis mass spectrometry. The spectral data revealed correlations between RGR and the relative composition of several biopolymers. Species with a low potential RGR contained relatively more cell wall material such as lignin, hemicellulose, cellulose, polysaccharide-bound ferulic acid and hydroxyproline-rich protein, whereas species with a high potential RGR showed relatively more cytoplasmic elements such as protein (other than those incorporated in cell walls) and sterols.
通过热解质谱法研究了11种潜在相对生长速率(RGR)不同的禾本科物种的化学成分差异。光谱数据揭示了RGR与几种生物聚合物相对组成之间的相关性。潜在RGR较低的物种含有相对较多的细胞壁物质,如木质素、半纤维素、纤维素、多糖结合阿魏酸和富含羟脯氨酸的蛋白质,而潜在RGR较高的物种则含有相对较多的细胞质成分,如蛋白质(除了那些结合在细胞壁中的蛋白质)和甾醇。