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首页> 外文期刊>Scientific reports. >Dual mechanisms regulating glutamate decarboxylases and accumulation of gamma-aminobutyric acid in tea (Camellia sinensis) leaves exposed to multiple stresses
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Dual mechanisms regulating glutamate decarboxylases and accumulation of gamma-aminobutyric acid in tea (Camellia sinensis) leaves exposed to multiple stresses

机译:调节谷氨酸脱羧酶的双重机制和茶(Camellia Sinensis)叶片暴露于多重应力的叶片(Camellia Sinensis)叶片

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γ-Aminobutyric acid (GABA) is one of the major inhibitory neurotransmitters in the central nervous system. It has multiple positive effects on mammalian physiology and is an important bioactive component of tea (Camellia sinensis). GABA generally occurs at a very low level in plants but GABA content increases substantially after exposure to a range of stresses, especially oxygen-deficiency. During processing of tea leaves, a combination of anoxic stress and mechanical damage are essential for the high accumulation of GABA. This is believed to be initiated by a change in glutamate decarboxylase activity, but the underlying mechanisms are unclear. In the present study we characterized factors regulating the expression and activity of three tea glutamate decarboxylase genes (CsGAD1, 2, and 3), and their encoded enzymes. The results suggests that, unlike the model plant Arabidopsis thaliana, there are dual mechanisms regulating the accumulation of GABA in tea leaves exposed to multiple stresses, including activation of CsGAD1 enzymatic activity by calmodulin upon the onset of the stress and accumulation of high levels of CsGAD2 mRNA induced by a combination of anoxic stress and mechanical damage.
机译:γ-氨基丁酸(GABA)是中枢神经系统的主要抑制性神经递质之一。它对哺乳动物生理学具有多种积极影响,是茶(山茶花)的重要生物活性成分。 GABA通常发生在植物中非常低的水平,但是在暴露于一系列压力之后,GABA含量显着增加,尤其是缺氧。在加工茶叶期间,缺氧应力和机械损伤的组合对于加巴的高积累是必不可少的。据信这被谷氨酸脱羧酶活性的变化引发,但下面的机制尚不清楚。在本研究中,我们表征了调节三种茶谷氨酸脱羧酶基因(Csgad1,2和3)的表达和活性的因素及其编码酶。结果表明,与模型植物拟南芥拟南芥不同,有双重机制调节暴露于多种应力的茶叶中GABA的积累,包括通过钙调蛋白的CSGAD1酶活性激活高水平CSGAD2的应力和积累后的CSGAD1酶活性通过缺氧应力和机械损伤的组合诱导mRNA。

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