University of Hohenheim, Institute of Crop Science, Quality of Plant Products 340e, Schloss Westflügel, 70599, Stuttgart, Germany.
Max Rubner-Institute, Department of Safety and Quality of Fruit and Vegetables, Haid-und-Neu-Straße 9, 76131, Karlsruhe, Germany.
Plant Physiol Biochem. 2021 Nov;168:423-431. doi: 10.1016/j.plaphy.2021.10.031. Epub 2021 Oct 23.
Onions (Allium cepa L.) are considered a salt-sensitive crop. However, to date, little evidence supports this claim and information about the physiological and metabolomic effects of Na accumulation in onion plants is lacking. The purpose of our research has been to assess changes in onion bulbs of three different cultivars after soil and foliar applications with moderate doses of chloride-free NaSO. The antioxidative defense mechanism in onion and the accumulation of Na within the plant has also been analyzed. Based on Na leaf and bulb concentrations, our findings demonstrate that Na is only transported from bulbs to leaves not vice versa, therefore foliar application does not lead to Na accumulation in the bulbs. Soil application with NaSO results in an accumulation of Na in the leaves and bulbs, but with the exception of one onion variety this accumulation does not alter the metabolite profile of onions significantly. Even the K concentration and organic solute levels are unchanged after accumulation of Na. Nevertheless, after NaSO treatment, the antioxidative defense system moderately increases in onion bulbs. This study demonstrates that onion plants have the ability to exclude Na at moderate NaSO treatment, and that the potential for quality onion production in soils with increased sodium concentration is much higher than previously assumed.
洋葱(Allium cepa L.)被认为是一种对盐敏感的作物。然而,迄今为止,几乎没有证据支持这一说法,并且缺乏关于洋葱植株中 Na 积累的生理和代谢组学影响的信息。我们的研究目的是评估在土壤和叶面应用适量无氯 NaSO 后,三种不同品种洋葱鳞茎的变化。我们还分析了洋葱的抗氧化防御机制和 Na 在植物体内的积累。基于 Na 的叶片和鳞茎浓度,我们的发现表明,Na 仅从鳞茎运输到叶片,而不是相反,因此叶面应用不会导致鳞茎中 Na 的积累。用 NaSO 进行土壤应用会导致 Na 在叶片和鳞茎中的积累,但除了一种洋葱品种外,这种积累不会显著改变洋葱的代谢物谱。即使在积累 Na 后,K 浓度和有机溶质水平也保持不变。尽管如此,在 NaSO 处理后,洋葱鳞茎中的抗氧化防御系统适度增加。这项研究表明,洋葱植物在适度的 NaSO 处理下有能力排除 Na,并且在 Na 浓度增加的土壤中生产优质洋葱的潜力比之前假设的要高得多。