Does excess boron affect the malondialdehyde levels of potato cultivars

Q3 Agricultural and Biological Sciences
M. Ayvaz, M. Avci, Ç. Yamaner, M. Koyuncu, Avni Guven, K. Fagerstedt
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引用次数: 11

Abstract

Background: Malondialdehyde (MDA) is a product of lipid peroxidation and a sign of oxidative stress in plants. Therefore, determining the responses of plants to a particular type of stress at a particular time will shed a light on clarifying the stress status of the plants. In this study, we report how the MDA levels in potato cultivars changed with toxic concentrations of boron, an essential plant micronutrient. Material and Methods: Eight different potato {Solarium tuberosum) cultivars (cv. Konsul, cv. Morene, cv. Slaney, cv. Mona Lisa, cv. Jaerla, cv. Poroventa, cv. Yayla Kizi, and cv. Armada) were used as study material. Excess boron was applied for seven weeks in three concentrations (0.5, 2.5 and 5 mM) to plants that were grown from tubers. Plants were harvested and a malondialdehyde content analyses was carried out using leaf tissues. Results: The MDA levels in cv. Mona Lisa and Yayla Kizi with excess boron steadily increased with increasing concentrations in all the groups, compared to the control group. In cv. Morene, the MDA decreased in the 0.5 mM boron application and increased in the 2.5 and 5 mM boron applications. In cv. Armada, cv. Slaney, cv. Konsul, and cv. Poroventa, the MDA levels fluctuated in the different groups of each cultivar. In cv. Jaerla, the MDA decreased in all groups with an increase in boron, compared to the control group. Conclusions: The MDA levels with excess boron showed an increase, fluctuation, and decrease in each group of the cultivars, compared to the control group. Therefore, the MDA levels in potato plants with excess boron might not be a clear sign to determine the level of stress. This is the first report of MDA levels in eight different potato cultivars subjected to three different excess boron concentrations.
过量硼会影响马铃薯品种的丙二醛水平吗
背景:丙二醛(MDA)是脂质过氧化的产物,是植物氧化应激的标志。因此,确定植物在特定时间对特定类型的胁迫的反应将有助于阐明植物的胁迫状态。在本研究中,我们报告了马铃薯品种的丙二醛水平如何随着硼(一种必需的植物微量营养素)的毒性浓度而变化。材料和方法:8个不同的马铃薯栽培品种(cv。Konsul,简历。Morene,简历。斯兰尼简历。蒙娜丽莎,简历。Jaerla,简历。Poroventa,简历。Yayla Kizi和cv。无敌舰队)作为研究材料。将三种浓度(0.5、2.5和5毫米)的过量硼施用于从块茎生长的植物上,持续7周。收获植株,利用叶片组织进行丙二醛含量分析。结果:血清丙二醛水平。与对照组相比,摄入过量硼的蒙娜丽莎和亚伊拉·基兹在所有组中的含量都随着浓度的增加而稳步增加。在简历。钼烯的MDA在0.5 mM硼处理下降低,在2.5和5 mM硼处理下增加。在简历。无敌舰队,简历。斯兰尼简历。康苏尔,和cv。在porovventa中,各品种不同组的MDA水平波动较大。在简历。与对照组相比,随着硼含量的增加,所有组的MDA都降低了。结论:与对照组相比,过量硼处理下各品种MDA水平呈现上升、波动和下降的趋势。因此,过量硼的马铃薯植株的丙二醛水平可能不是确定胁迫水平的明确信号。这是8个不同马铃薯品种在3种不同硼过量浓度下丙二醛水平的首次报告。
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来源期刊
Eurasian Journal of Biosciences
Eurasian Journal of Biosciences Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.20
自引率
0.00%
发文量
0
期刊介绍: EurAsian Journal of BioSciences (Abbrev. Eurasia J Biosci or EJOBIOS) is an international, refereed electronic journal. It publishes the results of original research in the field of biological sciences restricted tomorphology, physiology, genetics, taxonomy, ecology and biogeography of both prokaryotic and eucaryotic organisms. The journal encourages submission of manuscripts dealing with plant biology, animal biology, plant physiology, microbiology, hydrobiology, ecology and environmental science, ethnobiology, biodiversity and conservation biology. EurAsian Journal of BioSciences publishes original articles in the following areas: -Agriculture, Fisheries & Food -Anatomy & Morphology -Behavioural Sciences -Biology, Biochemistry and Biotechnology -Biophysics -Biology Education -Cellular Biology and Anatomical Sciences -Ecology, Evolution & Environment -Entomology -Forestry -General Biology -Genetics & Heredity -Life Sciences - Other topics -Microbiology and Immunology -Molecular Biology -Mycology -Palaeontology -Parasitology -Pharmacology & Pharmacy -Physiology and Related Sciences -Plant Sciences -Toxicology -Veterinary Sciences -Virology -Zoology
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