Vardar Gökay, Altıkatoğlu Melda, Ortaç Deniz, Cemek Mustafa, Işıldak İbrahim
Department of Chemistry, Biochemistry Division, Faculty of Sciences and Arts, Yıldız Technical University, Istanbul, Turkey.
Department of Bioengineering, Faculty of Chemical and Metallurgical Engineering, Yıldız Technical University, Istanbul, Turkey.
Biotechnol Appl Biochem. 2015 Sep-Oct;62(5):663-8. doi: 10.1002/bab.1317. Epub 2015 Aug 4.
Generally, the life cycle of plants depends on the uptake of essential nutrients in a balanced manner and on toxic elements being under a certain concentration. Lack of control of nutrient levels in nutrient solution can result in reduced plant growth and undesired conditions such as blossom-end rot. In this study, sensitivity and selectivity tests for various polyvinylchloride (PVC)-based ion-selective membranes were conducted to identify those suitable for measuring typical concentration ranges of macronutrients, that is, NO(3-), K(+), and Ca(2+), in hydroponic solutions. The sensitivity and selectivity of PVC-membrane-based ion-selective sensors prepared with tetradodecylammoniumnitrate for NO(3-), valinomycin for K(+), and Ca ionophore IV for Ca(2+) were found to be satisfactory for measuring NO(3-), K(+), and Ca(2+) ions in nutrient solutions over typical ranges of hydroponic concentrations. Potassium, calcium, and nitrate levels that were utilized by cucumber and tomato seedlings in the greenhouse were different. The findings show that tomato plants consumed less amounts of nitrate than cucumber plants over the first 2 months of their growth. We also found that the potassium intake was higher than other nutritional elements tested for all plants.
一般来说,植物的生命周期取决于以平衡的方式吸收必需养分以及使有毒元素处于一定浓度之下。营养液中养分水平控制不当会导致植物生长减缓以及出现诸如脐腐病等不良状况。在本研究中,对各种基于聚氯乙烯(PVC)的离子选择性膜进行了灵敏度和选择性测试,以确定那些适用于测量水培溶液中大量元素(即NO₃⁻、K⁺和Ca²⁺)典型浓度范围的离子选择性膜。用硝酸十四烷基铵制备的用于NO₃⁻的基于PVC膜的离子选择性传感器、用缬氨霉素制备的用于K⁺的离子选择性传感器以及用钙离子载体IV制备的用于Ca²⁺的离子选择性传感器,其灵敏度和选择性对于测量水培浓度典型范围内营养液中的NO₃⁻、K⁺和Ca²⁺离子而言是令人满意的。温室中黄瓜和番茄幼苗所利用的钾、钙和硝酸盐水平有所不同。研究结果表明,在生长的前两个月里,番茄植株消耗的硝酸盐量比黄瓜植株少。我们还发现,所有植物对钾的吸收量高于所测试的其他营养元素。