Greger Maria, Landberg Tommy, Vaculík Marek
Department of Ecology, Environment and Plant Sciences, Stockholm University, SE 106 91 Stockholm, Sweden.
Department of Plant Physiology, Faculty of Natural Sciences, Comenius University in Bratislava, Mlynska Dolina B2, SK 842 15 Bratislava, Slovakia.
Plants (Basel). 2018 May 19;7(2):41. doi: 10.3390/plants7020041.
Silicon (Si) effects on mineral nutrient status in plants are not well investigated. It is known that Si has a beneficial effect on plants under stressed conditions. The aim was to make a state of the art investigation of the Si influence: (1) on nutrient availability in four different soil types, namely clayish, sandy, alum shale and submerged soil; and (2) on accumulation of various nutrients in maize, lettuce, pea, carrot and wheat growing in hydroponics. Soil was treated with K₂SiO₃ corresponding to 80 and 1000 kg Si ha and the nutrient medium with 100, 500, 1000 and 5000 μM Si. In general, Si effects were similar in all analyzed plant species and in all soil types tested. Results showed that, in soil, Si increased the availability of Ca, P, S, Mn, Zn, Cu and Mo and that of Cl and Fe tended to increase. The availability of K and Mg was not much affected by Si. Uptake from solution of S, Mg, Ca, B, Fe, and Mn increased; N, Cu, Zn and K decreased; P decreased/increased; and Cl and Mo was not influenced. Translocation to shoot of Mg, Ca, S, Mn, and Mo increased; Fe, Cu and Zn decreased; and K, P, N, Cl and B was not affected. It was concluded that, if plants had been cultivated in soil, Si-maintained increased availability of nutrients in the soil solution would probably compensate for the decrease in tissue concentration of those nutrient elements. The study shows that Si also influences the nutrient uptake in non-stressed plants.
硅(Si)对植物矿质营养状况的影响尚未得到充分研究。已知硅在胁迫条件下对植物有有益作用。目的是对硅的影响进行一项前沿研究:(1)在四种不同土壤类型(即黏质土、砂土、明矾页岩土和淹水土)中对养分有效性的影响;(2)在水培条件下生长的玉米、生菜、豌豆、胡萝卜和小麦中对各种养分积累的影响。土壤用相当于80和1000 kg Si/ha的K₂SiO₃处理,营养培养基用100、500、1000和5000 μM的硅处理。总体而言,在所有分析的植物物种和所有测试的土壤类型中,硅的影响相似。结果表明,在土壤中,硅提高了钙、磷、硫、锰、锌、铜和钼的有效性,氯和铁的有效性也有增加的趋势。钾和镁的有效性受硅的影响不大。从溶液中吸收的硫、镁、钙、硼、铁和锰增加;氮、铜、锌和钾减少;磷减少/增加;氯和钼不受影响。镁、钙、硫、锰和钼向地上部的转运增加;铁、铜和锌减少;钾、磷、氮、氯和硼不受影响。得出的结论是,如果植物在土壤中种植,硅维持的土壤溶液中养分有效性的增加可能会弥补这些养分元素组织浓度的降低。该研究表明,硅也会影响非胁迫植物对养分的吸收。