首页> 美国卫生研究院文献>International Journal of Molecular Sciences >The γ-Aminobutyric Acid (GABA) Alleviates Salt Stress Damage during Seeds Germination of White Clover Associated with Na+/K+ Transportation Dehydrins Accumulation and Stress-Related Genes Expression in White Clover
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The γ-Aminobutyric Acid (GABA) Alleviates Salt Stress Damage during Seeds Germination of White Clover Associated with Na+/K+ Transportation Dehydrins Accumulation and Stress-Related Genes Expression in White Clover

机译:γ-氨基丁酸(GABA)缓解了白三叶草种子萌发过程中与Na + / K +转运脱水素积累以及白三叶草中与胁迫相关的基因表达相关的盐胁迫损害

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摘要

The objective of this study was to determine the effect of soaking with γ-aminobutyric acid (GABA) on white clover (Trifolium repens cv. Haifa) seed germination under salt stress induced by 100 mM NaCl. Seeds soaking with GABA (1 μM) significantly alleviated salt-induced decreases in endogenous GABA content, germination percentage, germination vigor, germination index, shoot and root length, fresh and dry weight, and root activity of seedling during seven days of germination. Exogenous application of GABA accelerated starch catabolism via the activation of amylase and also significantly reduced water-soluble carbohydrate, free amino acid, and free proline content in seedlings under salt stress. In addition, improved antioxidant enzyme activities (SOD, GPOX, CAT, APX, DHAR, GR and MDHR) and gene transcript levels (Cu/ZnSOD, FeSOD, MnSOD, CAT, GPOX, APX, MDHR, GPX and GST) was induced by seeds soaking with GABA, followed by decreases in O2∙−, H2O2, and MDA accumulation during germination under salt stress. Seeds soaking with GABA could also significantly improve Na+/K+ content and transcript levels of genes encoding Na+/K+ transportation (HKT1, HKT8, HAL2, H+-ATPase and SOS1) in seedlings of white clover. Moreover, exogenous GABA significantly induced the accumulation of dehydrins and expression of genes encoding dehydrins (SK2, Y2K, Y2SK, and dehydrin b) in seedlings under salt stress. These results indicate that GABA mitigates the salt damage during seeds germination through enhancing starch catabolism and the utilization of sugar and amino acids for the maintenance of growth, improving the antioxidant defense for the alleviation of oxidative damage, increasing Na+/K+ transportation for the osmotic adjustment, and promoting dehydrins accumulation for antioxidant and osmotic adjustment under salt stress.
机译:这项研究的目的是确定在100 mM NaCl诱导的盐胁迫下,γ-氨基丁酸(GABA)浸泡对白三叶草(Trifolium repens cv。Haifa)种子萌发的影响。用GABA(1μM)浸泡的种子可显着缓解盐诱导的7天发芽期间内源GABA含量,发芽率,发芽势,发芽指数,枝条和根长,鲜重和干重以及幼苗根系活力的下降。 GABA的外源施用通过激活淀粉酶来促进淀粉分解代谢,并且还显着降低了盐胁迫下幼苗中的水溶性碳水化合物,游离氨基酸和游离脯氨酸含量。此外,诱导抗氧化酶活性(SOD,GPOX,CAT,APX,DHAR,GR和MDHR)和基因转录水平(Cu / ZnSOD,FeSOD,MnSOD,CAT,GPOX,APX,MDHR,GPX和GST)的活性提高。 GABA浸种后,盐胁迫下发芽过程中O2 ∙− ,H2O2和MDA积累减少。用GABA浸种还可以显着提高Na + / K + 的含量和Na + / K + < / sup>在三叶草幼苗中的运输(HKT1,HKT8,HAL2,H + -ATPase和SOS1)。此外,外源GABA显着诱导了盐胁迫下幼苗中脱水素的积累和编码脱水素的基因(SK2,Y2K,Y2SK和脱水素b)的表达。这些结果表明,GABA通过增强淀粉分解代谢以及利用糖和氨基酸来维持生长,改善抗氧化防御能力以减轻氧化损伤,增加Na + / K + 转运用于渗透调节,并促进脱水盐积累,以抗盐胁迫下的抗氧化剂和渗透调节。

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