首页> 外文期刊>Journal of Horticultural Research >EFFECT OF NANOSILVER ON PHYSIOLOGICAL PERFORMANCE OF Pelargonium PLANTS EXPOSED TO DARK STORAGE
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EFFECT OF NANOSILVER ON PHYSIOLOGICAL PERFORMANCE OF Pelargonium PLANTS EXPOSED TO DARK STORAGE

机译:纳米银对暴露于暗藏的天竺葵植物生理性能的影响

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摘要

This investigation was conducted to evaluate the effects of post-harvest application of silver nanoparticles (N-Ag) and dark storage on plastid pigments, petal abscission, lipid peroxidation and activities of ascorbate peroxidase (APX) and guaiacol peroxidase (POD) in pelargonium cultivars 'Blue Wonder' and 'Anthony'. N-Ag was applied as foliar spray in concentrations 0, 20, 40, 60 and 80 mg-cm~(-3) and then the plants were stored for 5 days in a growth chamber in darkness at temperature 20±2 °C and relative humidity 65%. The results revealed that after dark storage the petal abscission of cv. 'Blue Wonder' increased up to 40% but significantly decreased in plants treated with 60 mg-cm~(-3) of N-Ag. Cultivar 'Anthony' showed lesser petal abscission than 'Blue Wonder', namely 25% in control and 4% after treatment with 60 mg-cm~(-3) N-Ag. In both cultivars, treatment with N-Ag resulted in higher contents of leaf chlorophylls and carotenoids in comparison to untreated control. In response to treatments with 20-60 mg-cm~(-3) N-Ag, the activity of APX and POD was higher at the end of 5 days storage period than in the control plants, which coincided with improved post-harvest performance of both pelargonium cultivars. The enhancement of enzyme activities indicated possible beneficial effect of the applied treatment on alleviation of dark storage-induced oxidative stress. Also, in both cultivars, MDA content decreased significantly with the increase of N-Ag concentration up to 60 mg-cm~(-3) and then arapid increase at 80 mg-cm~(-3) followed. It is concluded that treatment with silver nanoparticles is effective for preventing dark storage-induced petal abscission of pelargonium.
机译:进行这项研究以评估收获后施用银纳米颗粒(N-Ag)和黑暗储存对天竺葵品种中质体色素,花瓣脱落,脂质过氧化以及抗坏血酸过氧化物酶(APX)和愈创木酚过氧化物酶(POD)活性的影响。 “蓝色奇迹”和“安东尼”。以浓度为0、20、40、60和80 mg-cm〜(-3)的叶面喷施N-Ag,然后将植物在温度为20±2°C的黑暗中于生长室中存放5天。相对湿度65%。结果表明,黑暗贮藏后花瓣脱落。在用60 mg-cm〜(-3)的N-Ag处理的植物中,“蓝色奇迹”的含量最多可增加40%,但显着下降。品种“安东尼”的花瓣脱落率低于“蓝色奇迹”,即对照组为25%,用60 mg-cm〜(-3)N-Ag处理后为4%。与未处理的对照相比,在两个品种中,N-Ag处理均导致较高的叶绿素和类胡萝卜素含量。响应20-60 mg-cm〜(-3)N-Ag处理,在储存5天后,APX和POD的活性高于对照植物,这与采后性能的提高相吻合的两个天竺葵品种。酶活性的增强表明所施加的处理对减轻黑暗贮存引起的氧化应激的可能的有益作用。同样,在两个品种中,MDA含量均随着N-Ag浓度的增加而显着下降,直至60 mg-cm〜(-3),然后在80 mg-cm〜(-3)时迅速增加。结论是,用银纳米颗粒处理可有效防止天竺葵暗贮引起的花瓣脱落。

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