Laboratory of Plant Genetic Improvement and Biotechnology, College of Life Science, Jiangxi Normal University, Nanchang 330000, China.
Institute of Nuclear Agricultural Sciences, Key Laboratory of Nuclear Agricultural Sciences of Ministry of Agriculture and Zhejiang Province, College of Agriculture and Biotechnology, Zhejiang University, Zijingang Campus, Hangzhou 310058, China.
J Agric Food Chem. 2022 Aug 10;70(31):9802-9816. doi: 10.1021/acs.jafc.2c03737. Epub 2022 Jul 28.
The mutant (2) in rice significantly increases the resistant starch (RS) content and leads to reduced seed weight. However, the underlying metabolic mechanisms remain unclear. Proteomic analysis indicated that upregulation of starch synthase IIa (SSIIa) and SSIIIa and downregulation of BEI and SSI were possibly responsible for the decreased short amylopectin chains (DP 6-15) and increased longer chains (DP > 16) of 2 starch. The upregulation of granule-bound starch synthase led to increased amylose content (AC). These changes in the amylopectin structure and AC accounted for the increased RS content. α-Amylase 2A showed the strongest upregulation (up to 8.45-fold), indicating that the loss of BEIIb activity enhanced starch degradation. Upregulation of glycolysis-related proteins stimulated carbohydrate repartitioning through glycerate-3-phosphate and promoted the accumulation of tricarboxylic acid cycle intermediates, amino acids, and fatty acids. The unexpected carbohydrate partitioning and enhanced starch degradation resulted in the reduced seed weight in the 2 mutant.
突变体(2)在水稻中显著增加抗性淀粉(RS)含量,并导致种子重量减轻。然而,其潜在的代谢机制仍不清楚。蛋白质组学分析表明,淀粉合酶 IIa(SSIIa)和 SSIIIa 的上调以及 BEI 和 SSI 的下调可能是导致 2 淀粉中短直链淀粉(DP 6-15)减少和长链(DP > 16)增加的原因。颗粒结合型淀粉合酶的上调导致直链淀粉含量(AC)增加。这些支链淀粉结构和 AC 的变化导致 RS 含量增加。α-淀粉酶 2A 表现出最强的上调(高达 8.45 倍),表明 BEIIb 活性的丧失增强了淀粉的降解。糖酵解相关蛋白的上调通过甘油-3-磷酸刺激碳水化合物的再分配,并促进三羧酸循环中间产物、氨基酸和脂肪酸的积累。意想不到的碳水化合物分配和增强的淀粉降解导致 2 突变体种子重量减轻。