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钛提高水培条件下盐胁迫处理的番茄幼苗的抗氧化活性和大量营养素浓度。

Titanium Increases the Antioxidant Activity and Macronutrient Concentration in Tomato Seedlings Exposed to Salinity in Hydroponics.

作者信息

Carbajal-Vázquez Víctor Hugo, Gómez-Merino Fernando Carlos, Alcántar-González Ernesto Gabriel, Sánchez-García Prometeo, Trejo-Téllez Libia Iris

机构信息

Laboratory of Plant Nutrition, College of Postgraduates in Agricultural Sciences Campus Montecillo, Texcoco 56230, Mexico.

出版信息

Plants (Basel). 2022 Apr 11;11(8):1036. doi: 10.3390/plants11081036.

Abstract

Global climate change affects agriculture and tends to aggravate the effect of various environmental stress factors including soil salinity. Beneficial elements such as titanium (Ti) may improve the performance of plants facing restrictive environments such as saline soils. This research work evaluated the individual effect of sodium chloride (0, 50, and 100 mM NaCl) in solution, that of leaf-applied Ti (0, 500, and 1000 mg L Ti), and their interactions on physiological, biochemical, and nutritional variables of tomato ( L.) seedlings cv. Rio Grande in a factorial design in greenhouse hydroponics. NaCl reduced seedling height, stem diameter, leaf area, SPAD units, and sugar and K concentrations, and increased antioxidant activity in stems and roots, photosynthetic pigments, sugars. Titanium increased the N, P, K, Ca, Mg, and Ti concentrations in leaves, but the concentration of total sugars in leaves was reduced when applying 500 mg Ti L. Under moderate salinity conditions (50 mM NaCl) the application of Ti increased the antioxidant activity in roots, while, at all salinity levels tested, Ti increased the concentrations of macro-nutrients and Ti in leaves. Titanium is concluded to have a positive effect on the antioxidant activity and nutrition of seedlings under saline stress conditions.

摘要

全球气候变化影响农业,并往往会加剧包括土壤盐度在内的各种环境胁迫因素的影响。钛(Ti)等有益元素可能会改善植物在诸如盐渍土等受限环境中的生长表现。本研究工作在温室水培条件下采用析因设计,评估了溶液中氯化钠(0、50和100 mM NaCl)、叶面喷施钛(0、500和1000 mg L Ti)各自的效应以及它们对番茄(L.)品种Rio Grande幼苗的生理、生化和营养变量的相互作用。氯化钠降低了幼苗高度、茎直径、叶面积、SPAD值、糖分和钾浓度,并增加了茎和根中的抗氧化活性、光合色素、糖分。钛增加了叶片中氮、磷、钾、钙、镁和钛的浓度,但施用500 mg Ti L时叶片中总糖浓度降低。在中度盐度条件(50 mM NaCl)下,施用钛增加了根中的抗氧化活性,而在所有测试的盐度水平下,钛都增加了叶片中大量养分和钛的浓度。得出的结论是,在盐胁迫条件下,钛对幼苗的抗氧化活性和营养有积极影响。

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