首页> 美国卫生研究院文献>Physiology and Molecular Biology of Plants >Cinnamic acid induced changes in reactive oxygen species scavenging enzymes and protein profile in maize (Zea mays L.) plants grown under salt stress
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Cinnamic acid induced changes in reactive oxygen species scavenging enzymes and protein profile in maize (Zea mays L.) plants grown under salt stress

机译:肉桂酸诱导盐胁迫下玉米植株中活性氧清除酶和蛋白质谱的变化

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摘要

Plant growth and development are greatly affected due to changes in environmental conditions and become a serious challenge to scientific people. Therefore, present study was conducted to determine the role of secondary metabolites on the growth and development of maize under abiotic stress conditions. Cinnamic acid (CA) is one of the basic phenylpropanoid with antioxidant activity, produced by plants in response to stressful conditions. Response of maize seeds to the presoaking treatment with 0.5 mM CA was studied under different concentrations of NaCl stress. Exogenous CA increased growth characteristics in saline and non-saline conditions, while effects of CA were more significant under saline conditions in comparison to non-saline conditions in maize plants. CA also reduced oxidative damage through the induction of ROS scavenging enzymes such as supperoxide dismutase (SOD) (EC 1.15.1.1), peroxidase (POD) (EC 1.11.1.7), while the activity of enzyme catalase (CAT) (EC 1.11.1.6) was decreased. The content of malondialdehyde (MDA) was reduced significantly in maize leaf under CA treatment. Changes in protein banding patterns in the maize leaves showed a wide variation in response to NaCl-stress, while in the presence of CA salt-induced expression of polypeptides was reduced significantly. Present study clearly reports the alleviative effects of CA in response to salinity stress on growth, metabolic activity and changes in protein profile of 21 days old maize plants.
机译:由于环境条件的变化,植物的生长发育受到很大影响,并成为科学界人士的严峻挑战。因此,本研究旨在确定次生代谢产物在非生物胁迫条件下对玉米生长发育的作用。肉桂酸(CA)是具有抗氧化活性的碱性苯基丙烷之一,是植物在逆境条件下产生的。研究了NaCl胁迫下玉米种子对0.5mM CA浸种处理的响应。外源CA增加了在盐和非盐条件下的生长特性,而CA的影响在盐条件下比在玉米植物中的非盐条件下更为显着。 CA还通过诱导ROS清除酶(例如超氧化物歧化酶(SOD)(EC 1.15.1.1),过氧化物酶(POD)(EC 1.11.1.7))而减少了氧化损伤,而过氧化氢酶(CAT)(EC 1.11。 1.6)减少了。 CA处理后玉米叶片中丙二醛(MDA)含量明显降低。玉米叶片中蛋白质条带模式的变化显示出对NaCl胁迫的响应变化很大,而在存在CA盐的条件下,多肽诱导的多肽表达显着降低。本研究清楚地报道了盐胁迫对21日龄玉米植株生长,代谢活性和蛋白质谱变化的缓解作用。

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