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首页> 外文期刊>Scientia horticulturae >Contribution of GABA shunt to chilling tolerance in anthurium cut flowers in response to postharvest salicylic acid treatment
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Contribution of GABA shunt to chilling tolerance in anthurium cut flowers in response to postharvest salicylic acid treatment

机译:采后水杨酸处理对GABA分流对红掌切花耐寒性的贡献

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Due to the sensitivity of anthurium flowers to chilling injury (CI), its favorable temperature storage is 12.5-20 degrees C. There is evidence that maintaining the functional gamma-aminobutyric acid (GABA) shunt pathway is crucial for tolerance to postharvest chilling stress by providing energy (ATP) and reducing molecule (NADH) and minimizing reactive oxygen species (ROS) accumulation. In this experiment, the impact of salicylic acid (SA) treatment applied by postharvest stem -end dipping (2 mM, 15 min at 20 degrees C) on GABA shunt pathway activity of anthurium cut flowers (cv. Sirion) storage at 4 degrees C for 21 days were investigated. The anthurium cut flowers in response to 2 mM SA treatment displayed significantly higher GABA transaminase (GABA-T) activity during storage at 4 degrees C for 21 days, which coincided with lower GABA content, leading to flowers with lower spathe browning. SA treatment enhanced GABA shunt pathway activity, by enhancing GABA-T activity, during storage at 4 degrees C, lead to consumption of GABA for providing sufficient ATP content associated with the lower H2O2 content. Also, anthurium cut flowers in response to SA treatment displayed significantly higher unsaturated/saturated fatty acids (unSFA/SFA) ratio, which can be results not only from higher energy content but also from lower phospholipase D (PLD) and lipoxygenase (LOX) activities. These findings showed that SA treatment at 2 mM maintained functional GABA shunt pathway activity which leads to providing higher ATP, lower H2O2 accumulation, higher unSFA/SFA ratio, proposed that the SA can be applied as an effective procedure for improving anthurium cut flowers tolerance to postharvest chilling stress, by enhancing membrane fluidity. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于红掌花对冷害(CI)的敏感性,其有利的温度存储为12.5-20摄氏度。有证据表明,保持功能性的γ-氨基丁酸(GABA)分流途径对于耐受采收后的冷胁迫至关重要。提供能量(ATP)和还原分子(NADH)并最大程度减少活性氧(ROS)的积累。在该实验中,收获后茎端浸蘸(2 mM,在20摄氏度下15分钟)应用水杨酸(SA)处理对4摄氏度红掌切花(cv。Sirion)储存的GABA分流途径活性的影响调查21天。响应2 mM SA处理的红掌切花在4摄氏度下储存21天期间显示出显着更高的GABA转氨酶(GABA-T)活性,这与更低的GABA含量相吻合,从而导致花朵的Spathes褐变程度降低。 SA处理通过在4℃下储存期间增强GABA-T活性来增强GABA分流途径活性,导致消耗GABA以提供与较低的H 2 O 2含量相关的足够的ATP含量。此外,响应SA处理的红掌切花显示出明显更高的不饱和/饱和脂肪酸(unSFA / SFA)比,这不仅可能是由于能量含量较高,而且还由于磷脂酶D(PLD)和脂氧合酶(LOX)活性降低。这些发现表明,SA处理在2 mM时保持了功能性GABA分流途径的活性,从而导致提供更高的ATP,更低的H2O2积累,更高的unSFA / SFA比值,建议将SA作为提高红掌切花耐性的有效方法。通过增强膜的流动性来收获后的低温胁迫。 (C)2016 Elsevier B.V.保留所有权利。

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