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Effect of Gamma Irradiation on 2-Acetyl-1-pyrroline Content GABA Content and Volatile Compounds of Germinated Rice (Thai Upland Rice)

机译:伽玛射线辐照对发芽水稻(泰国陆稻)的2-乙酰基-1-吡咯啉含量GABA含量和挥发性化合物的影响

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摘要

Aroma intensity in rice is related to the level of 2-acetyl-1-pyrroline (2AP). The accumulation of 2AP in rice has been synthesized via l-proline metabolism by inactive betaine aldehyde dehydrogenase enzyme (BADH2), which activates 2AP accumulation. Meanwhile, active BADH2 inhibits 2AP accumulation but activates γ-aminobutyric acid (GABA) accumulation. The improvement of 2AP content in rice has been reported under certain conditions, such as high salinity, water treatment, and reduction of high intensity solar exposure. In this study, we conducted the effects of gamma irradiation on 2AP content, GABA content and volatile compounds of germinated rice (Thai upland rice). Our results showed that the GABA content was highest when rice seeds germinated within a 24-h. The 2AP content of irradiated rice (germinated within a 24-h duration) was higher than non-irradiated rice for all gamma doses, particularly at 20 Gy, which showed a 23-fold higher level of 2AP than non-irradiated rice. On the other hand, the reduction of the GABA content of irradiated rice was caused by an increase in the gamma dose. At 300 Gy, irradiated rice had a GABA content approximately 2.6-fold lower than non-irradiated rice. Moreover, we observed that a reduction of volatile compounds occurred when increasing gamma dose. However, some volatile compounds appeared in the irradiated rice at gamma doses of 60 Gy, 80 Gy, 100 Gy and 300 Gy. Furthermore, we observed that the level of Octanal, which is the compound most related to aroma intensity, of irradiated rice was stronger than that of non-irradiated rice. Our results demonstrate for the first time that 2AP and GABA contents are sensitive to gamma irradiation conditions. Moreover, the results indicate that the gamma irradiation technique can be used to improve the aroma intensity of rice.
机译:水稻的香气强度与2-乙酰基-1-吡咯啉(2AP)的水平有关。水稻中2AP的积累是通过非脯氨酸甜菜碱醛脱氢酶(BADH2)通过l脯氨酸代谢合成的,该酶激活2AP的积累。同时,活性BADH2抑制2AP积累,但激活γ-氨基丁酸(GABA)积累。据报导,在某些条件下,例如高盐度,水处理和减少高强度阳光照射,水稻中2AP含量会有所提高。在这项研究中,我们进行了γ射线辐照对发芽水稻(泰国陆稻)2AP含量,GABA含量和挥发性化合物的影响。我们的结果表明,当水稻种子在24小时内发芽时,GABA含量最高。在所有伽玛剂量下,辐照稻(在24小时内发芽)的2AP含量均高于未辐照稻,特别是在20 Gy时,其2AP含量比未辐照稻高23倍。另一方面,辐照米的GABA含量降低是由于γ剂量增加所致。在300 Gy时,受辐照的大米的GABA含量比未辐照的大米低2.6倍。此外,我们观察到当增加伽马剂量时,挥发性化合物减少。但是,在辐照的大米中,伽马剂量为60 Gy,80 Gy,100 Gy和300 Gy时会出现一些挥发性化合物。此外,我们观察到辐照米的八度醛水平(与香气强度最相关的化合物)比未辐照米强。我们的结果首次证明2AP和GABA的含量对伽马辐照条件敏感。此外,结果表明伽马辐照技术可用于提高稻米的香气强度。

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