Department of Chemistry, University of California-Riverside, California, United States.
J Proteome Res. 2012 Jan 1;11(1):320-30. doi: 10.1021/pr200919b. Epub 2011 Nov 11.
Although the genetic mechanism of submergence survival for rice varieties containing the SUB1A gene has been elucidated, the downstream metabolic effects have not yet been evaluated. In this study, the metabolomes of Oryza sativa ssp. japonica cv. M202 and cv. M202(Sub1) were profiled using (1)H NMR spectroscopy to compare the metabolic effect of submergence stress and recovery on rice in the presence or absence of SUB1A. Significant changes were observed in the NMR resonances of compounds in pathways important for carbohydrate metabolism. The presence of SUB1A in M202(Sub1) was correlated with suppression of carbohydrate metabolism in shoot tissue, consistent with the role of SUB1A in limiting starch catabolism to fuel elongation growth. The absence of SUB1A in M202 was correlated with greater consumption of sucrose stores and accumulation of amino acids that are synthesized from glycolysis intermediates and pyruvate. Under submergence conditions, alanine, a product of pyruvate metabolism, showed the largest difference between the two varieties, but elevated levels of glutamine, glutamate, leucine, isoleucine, threonine, and valine were also higher in M202 compared with the M202(Sub1) variety. The identification and characterization of alanylglycine (AlaGly) in rice is also reported. After 3 days of submergence stress, AlaGly levels decreased significantly in both genotypes but did not recover within 1 day of desubmergence with the other metabolites evaluated. The influence of SUB1A on dynamic changes in the metabolome during complete submergence provides new insights into the functional roles of a single gene in invoking a quiescence strategy that helps stabilize crop production in submergence-prone fields.
尽管含有 SUB1A 基因的水稻品种的淹水生存的遗传机制已经阐明,但下游代谢效应尚未得到评估。在这项研究中,使用(1)H NMR 光谱法对 Oryza sativa ssp. japonica cv. M202 和 cv. M202(Sub1)的代谢组进行了分析,以比较 SUB1A 存在或不存在时淹水胁迫和恢复对水稻的代谢影响。在碳水化合物代谢重要途径的化合物的 NMR 共振中观察到显著变化。在 M202(Sub1)中存在 SUB1A 与地上组织碳水化合物代谢的抑制有关,这与 SUB1A 在限制淀粉分解以促进伸长生长中的作用一致。在 M202 中不存在 SUB1A 与蔗糖库的消耗增加以及从糖酵解中间产物和丙酮酸合成的氨基酸的积累有关。在淹水条件下,丙氨酸,丙酮酸代谢的产物,在两个品种之间表现出最大的差异,但在 M202 中,谷氨酸、谷氨酸、亮氨酸、异亮氨酸、苏氨酸和缬氨酸的水平也高于 M202(Sub1)品种。还报道了水稻中亚氨二乙酸(AlaGly)的鉴定和表征。在淹水胁迫 3 天后,两种基因型的 AlaGly 水平均显著下降,但在评估的其他代谢物中,淹水后 1 天内未恢复。SUB1A 对完全淹水过程中代谢组动态变化的影响为单个基因在引发休眠策略中的功能作用提供了新的见解,该策略有助于稳定易淹水农田的作物产量。