Role of Raffinose Family Oligosaccharides in Respiratory Metabolism During Soybean Seed Germination

D. Syukri, M. Thammawong, Hushna Ara Naznin, K. Nakano
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引用次数: 10

Abstract

metabolism during soybean seed germination were investigated to determine appropriate method for producing soybean sprouts containing high amount of RFOs. Soybean seed were soaked into 50 m M 1-deoxygalactonojirimycin (DGJ), which is a specific a -galactose inhibitor, for 90 minutes before and after germination preparation phase (GPP). Soybean seed without DGJ treatment was used as control. The growth rate, respiration rate, respiratory quotient, fatty acids and saccharides contents were measured during cultivation at 20 ℃ . When DGJ was applied before GPP, the degradation of RFOs was significantly reduced, moreover the growth rate and respiration rate were suppressed due to the alternation of respiratory substrate from glucose to lipid in GPP. However, in the DGJ application after GPP, no difference was found from control although RFOs breakdown was functionally inhibited in subsequent radicle elongation phase (REP). These results suggest that RFOs are essential only in GPP as a source of respiratory substrate and lipids play the main role in respiration during REP. Therefore, prevention of RFOs degradation after GPP could be useful to maintain high amount of RFOs in soybean sprouts.
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棉子糖家族寡糖在大豆种子萌发呼吸代谢中的作用
研究了大豆种子萌发过程中的代谢过程,以确定生产高含量RFOs大豆芽的合适方法。大豆种子在萌发准备阶段(GPP)前后分别浸泡于50 m的1-半乳糖特异性抑制剂m1 -deoxygalactonojirimycin (DGJ)中90分钟。以未经DGJ处理的大豆种子为对照。在20℃培养条件下,测定其生长速率、呼吸速率、呼吸商、脂肪酸和糖类含量。在GPP前施用DGJ可显著降低RFOs的降解,且GPP中呼吸底物由葡萄糖变为脂质,抑制了RFOs的生长速率和呼吸速率。然而,在GPP后的DGJ应用中,尽管rfo的分解在随后的根伸长阶段(REP)被功能性抑制,但与对照组没有差异。这些结果表明,rfo仅在GPP中作为呼吸底物的来源是必需的,而脂质在rep期间的呼吸中起主要作用。因此,预防GPP后rfo的降解可能有助于维持豆芽中高含量的rfo。
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