Zhao Guo-Chao, Xie Mi-Xue, Wang Ying-Cun, Li Jian-Yue
Development Center of Plant Germplasm Resources, College of Life and Environmental Sciences, Shanghai Normal University , Shanghai, 200234, People's Republic of China.
J Agric Food Chem. 2017 Jun 21;65(24):4883-4889. doi: 10.1021/acs.jafc.7b00013. Epub 2017 Jun 13.
To uncover the molecular mechanisms underlying GABA accumulation in giant embryo rice seeds, we analyzed the expression levels of GABA metabolism genes and contents of GABA and GABA metabolic intermediates in developing grains and germinated brown rice of giant embryo rice 'Shangshida No. 5' and normal embryo rice 'Chao2-10' respectively. In developing grains, the higher GABA contents in 'Shangshida No. 5' were accompanied with upregulation of gene transcripts and intermediate contents in the polyamine pathway and downregulation of GABA catabolic gene transcripts, as compared with those in 'Chao2-10'. In germinated brown rice, the higher GABA contents in 'Shangshida No. 5' were parallel with upregulation of OsGAD and polyamine pathway gene transcripts and Glu and polyamine pathway intermediate contents and downregulation of GABA catabolic gene transcripts. These results are the first to indicate that polyamine pathway and GABA catabolic genes play a crucial role in GABA accumulation in giant embryo rice seeds.
为揭示巨胚稻种子中γ-氨基丁酸(GABA)积累的分子机制,我们分别分析了巨胚稻‘上世达5号’和正常胚稻‘超2-10’发育籽粒及发芽糙米中GABA代谢基因的表达水平、GABA及GABA代谢中间产物的含量。在发育籽粒中,与‘超2-10’相比,‘上世达5号’中较高的GABA含量伴随着多胺途径中基因转录本和中间产物含量的上调以及GABA分解代谢基因转录本的下调。在发芽糙米中,‘上世达5号’中较高的GABA含量与OsGAD和多胺途径基因转录本的上调、谷氨酸和多胺途径中间产物含量的上调以及GABA分解代谢基因转录本的下调相一致。这些结果首次表明多胺途径和GABA分解代谢基因在巨胚稻种子的GABA积累中起关键作用。