Frank Thomas, Meuleye Bertrand Seumo, Miller Andreas, Shu Qing-Yao, Engel Karl-Heinz
Lehrstuhl für Allgemeine Lebensmitteltechnologie, Technische Universität München, Freising-Weihenstephan, Germany.
J Agric Food Chem. 2007 Dec 26;55(26):11011-9. doi: 10.1021/jf0723559. Epub 2007 Dec 4.
Two low phytic acid (lpa) rice mutant lines, Os-lpa-XS110-1 and Os-lpa-XS110-2, were grown together with their parent wild-type variety Xiushui 110 in four field trials. HPLC analysis of inositol phosphates in the seeds produced demonstrated that compared to the wild-type, the reduction in phytic acid content in Os-lpa-XS110-1 (-46%) was more pronounced than that in Os-lpa-XS110-2 (-23%). Lower inositol phosphates (InsP 3, InsP 4, InsP 5) were not detected in the mutants. The lpa mutants and the wild-type rice were subjected to comparative metabolite profiling by capillary gas chromatography. On average, 34% (Os-lpa-XS110-1) and 42% (Os-lpa-XS110-2) of the detected peaks were statistically significantly different between wild-type and mutants. However, only a few of these differences could be consistently observed for all field trials. Identification and quantification of the consistently different metabolites revealed that contents of myo-inositol and raffinose were increased in Os-lpa-XS110-1 but decreased in Os-lpa-XS110-2 compared to the wild-type. In addition, Os-lpa-XS110-1 exhibited increased levels of galactose and galactinol. Consideration of these metabolic changes in light of the routes involved in the biosynthesis of phytic acid indicated a disturbance in the early biosynthetic pathway of phytic acid in Os-lpa-XS110-2 (similar to the lpa-1 type mutation in maize) and a mutation event affecting phosphorylation of myo-inositol in Os-lpa-XS110-1 (similar to the lpa-3-type mutation).
两个低植酸(lpa)水稻突变系,Os-lpa-XS110-1和Os-lpa-XS110-2,与其亲本野生型品种秀水110一起在四个田间试验中种植。对所产种子中的肌醇磷酸进行高效液相色谱分析表明,与野生型相比,Os-lpa-XS110-1中植酸含量的降低(-46%)比Os-lpa-XS110-2(-23%)更明显。在突变体中未检测到较低的肌醇磷酸(InsP 3、InsP 4、InsP 5)。通过毛细管气相色谱对lpa突变体和野生型水稻进行了比较代谢物谱分析。平均而言,野生型和突变体之间检测到的峰中有34%(Os-lpa-XS110-1)和42%(Os-lpa-XS110-2)在统计学上有显著差异。然而,所有田间试验中只能一致观察到其中少数差异。对始终存在差异的代谢物进行鉴定和定量显示,与野生型相比,Os-lpa-XS110-1中肌醇和棉子糖的含量增加,而Os-lpa-XS110-2中则降低。根据植酸生物合成所涉及的途径来考虑这些代谢变化,表明Os-lpa-XS110-2中植酸的早期生物合成途径受到干扰(类似于玉米中的lpa-1型突变),而Os-lpa-XS110-1中存在影响肌醇磷酸化的突变事件(类似于lpa-3型突变)。