首页> 外文期刊>Turkish journal of biology >Defense enzyme activities and biochemical variations of Pelargonium zonale in response to nanosilver application and dark storage
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Defense enzyme activities and biochemical variations of Pelargonium zonale in response to nanosilver application and dark storage

机译:天竺葵的防御酶活性和生化变化响应纳米银的应用和黑暗存储

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摘要

Pelargonium petal abscission and ethylene-induced leaf senescence are major problems that reduce the longevity of plants. This study was carried out to determine the poststorage influence of nanosilver (NS) particle (0, 20, 40, 60, and 80 mg L~(-1)) application during dark storage period on chlorophyll and carotenoid pigments, malondialdehyde (MDA) content, leaf protein and ethylene concentration, petal abscission, membrane stability index (MSI), and enzyme activity including ascorbate peroxidase (APX), peroxidase (POD), superoxide dismutase (SOD), catalase (CAT), and β-glucosidase (β-GLU) in two Pelargonium pot plants of the cultivars Flowerfairy and Foxi. Enhanced photosynthetic pigment contents were recorded in leaves of both NS-treated cultivars when compared to the control. In both cultivars, MDA content decreased significantly with the increase of NS concentration up to 60 mg L~(-1), and then a rapid increase followed at 80 mg L~(-1). NS treatments markedly decreased petal abscission compared to the control. Enzymes activities were affected differently by various NS concentrations. The highest APX activity was observed at 40 mg L~(-1) NS concentration, but specific activities of SOD and POD increased to a maximum level at 60 mg L~(-1) in both cultivars. CAT activity was pronounced at 20 mg L~(-1) and 40 mg L~(-1) NS treatments in Flowerfairy and Foxi, respectively. Both under control conditions and at the highest NS concentration, β-GLU showed lower activity than other NS levels. It was suggested for the first time that NS extended petal longevity and improved defense enzyme activities of Pelargonium pot plants under dark storage conditions.
机译:天竺葵花瓣的脱落和乙烯诱导的叶片衰老是降低植物寿命的主要问题。这项研究旨在确定纳米银(NS)颗粒(0、20、40、60和80 mg L〜(-1))在黑暗存储期间的施用对叶绿素和类胡萝卜素色素,丙二醛(MDA)的后存储影响含量,叶片蛋白质和乙烯浓度,花瓣脱落,膜稳定性指数(MSI)和酶活性,包括抗坏血酸过氧化物酶(APX),过氧化物酶(POD),超氧化物歧化酶(SOD),过氧化氢酶(CAT)和β-葡萄糖苷酶(β -GLU)在两个品种的天竺葵盆栽植物Flowerfairy和Foxi中。当与对照相比时,在两个NS处理的品种的叶片中记录到增强的光合色素含量。在两个品种中,MDA含量均随着NS浓度的增加而显着降低,直至60 mg L〜(-1),然后迅速增加,随后为80 mg L〜(-1)。与对照相比,NS处理显着降低了花瓣脱落。各种NS浓度对酶活性的影响不同。在40 mg L〜(-1)NS浓度下观察到最高的APX活性,但两个品种中SOD和POD的比活性在60 mg L〜(-1)时均增加到最大水平。在Flowerfairy和Foxi中,分别在20 mg L〜(-1)和40 mg L〜(-1)NS处理下,CAT活性显着。在对照条件和最高NS浓度下,β-GLU的活性均低于其他NS水平。首次提出在黑暗条件下,NS可延长天竺葵盆栽植物的花瓣寿命并改善其防御酶活性。

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