Assessment of vitality Berberis thunbergii DC. in Kyiv: Photosynthesis and Phytopathology

Q4 Agricultural and Biological Sciences
Oleksandra Strashok, M. Ziemiańska, Olena A. Kolesnichenko, Anna D. Salnikova, Kytaev Oleg
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Abstract

The process of functioning of the photosynthetic apparatus is one of the most vulnerable to stress factors. The information about the functional state of plants and the prospects for their use in urban greening can provide methods of fluorescence analysis. The objective of this research was to develop the state of plants Berberis thunbergii DC. which grow in the Mariinskyi Park (Kyiv) by the content of photosynthetic pigments and fluorescence induction chlorophyll (FIC). The article presents the results of the evaluation of fluorescence induction (FI) indicators and the content of photosynthetic pigments B. thunbergii according to the degree of damage by powdery mildew. Experimental plants were planted in the chernozem layer of 50 cm (humus content 4 %). The plants grow in a group planting of Picea glauca ‘Conica’ and Chlorophytum comosum ‘Variegatum’ directly 1.5–5 m from the highway under the canopy of Tilia cordata Mill. Moreover, the variability of FI curves in the absence/presence of plant lesions. The authors investigated the relationship between the content of photosynthetic pigments and FI. The degree of damage to experimental plants by powdery mildew affects the total chlorophyll content (a+b) and decreases by approximately 16 %, 7 %, and 5 % compared to the control. Recorded gradually disappear FI curves in plants with the highest degree of damage which affect photochemical reactions due to the slowing down of the outflow of Calvin cycle enzymes.
小檗活力评价。在基辅:光合作用和植物病理学
光合作用机制的运作过程是最容易受到胁迫因素影响的过程之一。植物的功能状态及其在城市绿化中的应用前景为荧光分析提供了方法。本研究的目的是开发植物小檗的状态。它们生长在马林斯基公园(基辅)的光合色素和荧光诱导叶绿素(FIC)的含量。本文介绍了根据白粉病危害程度,荧光诱导(FI)指标和光合色素含量的评价结果。试验植株种植在黑钙土层50 cm处(腐殖质含量4%)。这些植物生长在离高速公路1.5-5米远的蓝杉(Picea glauca)“Conica”和吊兰(吊兰)“Variegatum”的树荫下。此外,在没有/存在植物病变的情况下,FI曲线的变异性。研究了光合色素含量与FI的关系。白粉病对试验植株的危害程度影响叶绿素总含量(a+b),与对照相比分别降低约16%、7%和5%。在受损程度最高的植物中,记录到的FI曲线逐渐消失,这是由于卡尔文循环酶的流出减慢而影响光化学反应。
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来源期刊
Journal of Phytology
Journal of Phytology Agricultural and Biological Sciences-Plant Science
CiteScore
1.40
自引率
0.00%
发文量
17
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