Chair of General Food Technology , Technical University of Munich , Maximus-von-Imhof-Forum 2 , D-85354 Freising-Weihenstephan , Germany.
State Key Laboratory of Rice Biology and Zhejiang Provincial Key Laboratory of Plant Germplasm, Institute of Crop Sciences , Zhejiang University , Hangzhou 310058 , P. R. China.
J Agric Food Chem. 2019 Feb 27;67(8):2396-2407. doi: 10.1021/acs.jafc.8b06696. Epub 2019 Feb 15.
The low phytic acid ( lpa) rice mutant Os-lpa-MH86-1, exhibiting a mutation-induced metabolite signature (i.e., increased levels of sugars, sugar alcohols, amino acids, phytosterols, and biogenic amines), was crossed with two commercial wild-type cultivars. The resulting progenies of generation F harvested at three independent field trials were subjected to a GC/MS-based metabolite profiling approach. Statistical assessments via multivariate and univariate analyses demonstrated that the environment had a strong impact on the metabolite profiles of the resulting progenies. In addition, the metabolites of homozygous lpa progenies were significantly influenced by the lipid profiles of the wild-type cultivars employed as the crossing parents. However, for each individual field trial, both the lpa trait and the mutation-specific metabolite signature were consistently expressed in the homozygous lpa mutant progenies of the two crosses. The data underline that cross-breeding can be employed as a tool to generate lpa progeny rice seeds stably exhibiting the mutation-induced metabolic traits.
低植酸(lpa)水稻突变体 Os-lpa-MH86-1 表现出突变诱导的代谢物特征(即增加的糖、糖醇、氨基酸、植物固醇和生物胺水平),与两个商业野生型品种进行杂交。在三个独立的田间试验中收获的 F1 代后代进行了基于 GC/MS 的代谢物分析。通过多元和单变量分析的统计评估表明,环境对后代的代谢物图谱有很强的影响。此外,杂合 lpa 后代的代谢物受到用作杂交亲本的野生型品种的脂质图谱的显著影响。然而,对于每个单独的田间试验,两个杂交的 lpa 纯合突变体后代都一致地表现出 lpa 特性和突变特异性的代谢物特征。这些数据强调了杂交可以作为一种工具,用于稳定地产生表现出突变诱导的代谢特征的 lpa 后代水稻种子。