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首页> 外文期刊>Biological trace element research >The effect of titanium amendment in N-withholding nutrient solution on physiological and photosynthesis attributes and micronutrient uptake of tomato
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The effect of titanium amendment in N-withholding nutrient solution on physiological and photosynthesis attributes and micronutrient uptake of tomato

机译:固氮营养液中钛改良剂对番茄生理和光合作用特性及微量元素吸收的影响

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摘要

Titanium (Ti) is a beneficial element that promotes growth and biomass production although the mechanism by which this improvement takes place is still unclear, as are other effects on plants, although it is believed that Ti can compensate for N deficiency. To prove this hypothesis, a hydroponic experiment was designed to investigate the effect of adding Ti to a nutrient solution on the nutrient uptake of tomato (Lycopersicon esculentum L.) by withholding N within the nutrient solution (NS) by 25 % (NS2) and by 50 % (NS1). Ti was added at 1 and 2 mg L-1. When Ti was added to nutrient solution, the elemental concentration in tomato changed significantly: K, Ca, Fe, and Zn decreased while Ti increased. As the concentration of N in nutrient solution decreased, the Ca and Ti concentration of tomato leaves decreased and the K, Mn, Fe, Cu, and Zn concentration increased. As the N concentration in nutrient solution increased, the Ca concentration decreased although the application of Ti compensated for Ca concentration in NS1. All the photosynthetic attributes and physiological characteristics, including flower induction, decreased when the N concentration of NS decreased by 50 %, although this decrease could be compensated by applying 1 mg L-1 Ti. This has valuable and practical applications and implications for tomato hydroponic culture.
机译:钛(Ti)是促进生长和生物量生产的有益元素,尽管这种改善的机理尚不清楚,对植物的其他影响也尚不清楚,尽管人们认为Ti可以弥补N的缺乏。为了证明这一假设,设计了一项水培试验,通过向营养液中添加25%(NS2)的N并保持营养液中的N来研究向营养液中添加Ti对番茄(Lycopersicon esculentum L.)的营养吸收的影响。减少50%(NS1)。以1和2mg L-1添加Ti。当向营养液中添加Ti时,番茄中的元素浓度发生显着变化:K,Ca,Fe和Zn降低,而Ti增加。随着营养液中氮的含量降低,番茄叶片的钙和钛含量降低,钾,锰,铁,铜和锌的含量增加。随着营养液中氮含量的增加,尽管Ti的使用补偿了NS1中的Ca浓度,但Ca浓度却降低了。当NS的N浓度降低50%时,所有的光合属性和生理特性(包括花诱导)都会降低,尽管可以通过施用1 mg L-1 Ti来弥补这种降低。这对番茄水培培养具有重要的实际应用和意义。

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