Gördes Dirk, Koch Grit, Thurow Kerstin, Kolukisaoglu Uner
Institute of Automation, University of Rostock, Richard-Wagner-Str. 31, D-18119 Rostock, Germany ; WESSLING GmbH, Haynauer Straβe 60, 12249 Berlin, Germany.
Springerplus. 2013 Oct 24;2:559. doi: 10.1186/2193-1801-2-559. eCollection 2013.
For a long time D-enantiomers of proteinogenic L-amino acids were assumed to be physiologically irrelevant for plants. But there is growing evidence that D-amino acids (D-AAs) also fulfil important physiological functions in these organisms. However, the knowledge about the metabolic fate of D-AAs in plants is still scarce and more information about it is needed. To close this gap we established an optimized protocol for the processing and analysis of D- and L-AAs from large numbers of Arabidopsis lines. This included the application of 18 different D-AAs to seedlings, the extraction of free amino acids from the samples and the determination of 16 L-AAs and their corresponding D-enantiomers. To validate our approach we searched for genetic accessions with aberrant amino acid metabolism. Therefore we applied D-AAs on 17 ecotypes of Arabidopsis thaliana and analysed their free amino acid contents. These analyses confirmed the suitability of the system for the analysis of large sets of plant samples with enhanced velocity and improved accuracy. Furthermore, the resulting data led to the definition of standard amino acid profiles in response to D-AAs of Arabidopsis seedlings. Within these analyses the ecotype Landsberg erecta was found with aberrant metabolic patterns like drastically reduced capabilities to convert different D-AAs to D-alanine and D-glutamate. The presented experimental setup and results of this study offer starting points to dissect the metabolic pathway of D-AAs in plants.
长期以来,人们认为蛋白质原性L-氨基酸的D-对映体对植物没有生理相关性。但越来越多的证据表明,D-氨基酸(D-AAs)在这些生物体中也发挥着重要的生理功能。然而,关于植物中D-AAs代谢命运的知识仍然匮乏,需要更多相关信息。为了填补这一空白,我们建立了一个优化方案,用于处理和分析来自大量拟南芥品系的D-和L-氨基酸。这包括将18种不同的D-氨基酸应用于幼苗,从样品中提取游离氨基酸,并测定16种L-氨基酸及其相应的D-对映体。为了验证我们的方法,我们寻找了氨基酸代谢异常的遗传材料。因此,我们将D-氨基酸应用于17个拟南芥生态型,并分析了它们的游离氨基酸含量。这些分析证实了该系统适用于以更高的速度和更高的准确性分析大量植物样品。此外,所得数据确定了拟南芥幼苗对D-氨基酸响应的标准氨基酸谱。在这些分析中,发现生态型Landsberg erecta具有异常的代谢模式,如将不同D-氨基酸转化为D-丙氨酸和D-谷氨酸的能力大幅降低。本研究提出的实验设置和结果为剖析植物中D-氨基酸的代谢途径提供了起点。