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首页> 外文期刊>Sugar Tech >Response of Pre-sprouted Sugarcane Seedlings to Foliar Spraying of Potassium Silicate, Sodium and Potassium Silicate, Nanosilica and Monosilicic Acid
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Response of Pre-sprouted Sugarcane Seedlings to Foliar Spraying of Potassium Silicate, Sodium and Potassium Silicate, Nanosilica and Monosilicic Acid

机译:预先发芽的甘蔗幼苗对硅酸钾,硅酸钠和硅酸钾的叶面喷涂的反应,纳米硅和单硅酸

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Silicon (Si) applied via foliar on pre-sprouted sugarcane seedlings is a practical alternative for supplying Si, however, it is necessary to use an adequate Si source and optimal concentration, but this information is unknown. This study evaluates the effect of alternative Si sources applied via foliar spraying at lower concentrations in relation to potassium silicate, on Si accumulation and the beneficial effects on pre-sprouted sugarcane seedlings and initial growth. Two experiments were carried out in a greenhouse, one in the production phase of pre-sprouted seedlings and the other in the initial growth phase of sugarcane grown in pots. Both experimental designs were randomized blocks with treatments arranged in a 4 x 5 factorial scheme, with four Si sources: nanosilica (Si-nano), monosilicic acid stabilized with PEG-400 (Si-acid), sodium and potassium silicate stabilized with sorbitol (Si-alkali) and potassium silicate (Si-K) in five concentrations (0, 0.25, 0.5, 0.75 and 1.0 mmol L-1), and 4 repetitions. The Si syrup pH was adjusted to 5.5 +/- 0.2. The foliar spraying of Si on pre-sprouted sugarcane seedlings is feasible since it increased Si accumulation, and benefited seedling production and plant initial growth. Soluble Si sources with stabilizers increased Si accumulation more efficiently compared to potassium silicate (Si-K) and nanosilica (Si-nano). Plants that have been sprayed with the PEG-400-stabilized monosilicic acid (Si-acid) and the sorbitol-stabilized sodium and potassium silicate (Si-alkali) at 0.5 and 0.6 mmol L-1 concentrations, respectively, promote had greater Si accumulation and beneficial effects in the growth of pre-sprouted sugarcane seedlings in production phase. In the initial growth of sugarcane, the sources Si-acid and S-alkali also increase the buildup and beneficial effects, but both sources at 0.6 mmol L-1 concentrations.
机译:硅(Si)通过叶面涂抹于预先发芽的甘蔗幼苗是提供Si的实用替代方案,但是,必须使用足够的Si源和最佳浓度,但这些信息是未知的。本研究评估通过叶酸较低浓度的叶片喷射施加的替代Si源的效果,对硅酸钾的较低浓度,对Si积累和对预先发芽甘蔗幼苗的有益作用和初始生长。在温室中进行了两次实验,其中一个在预先发芽的幼苗的生产阶段,另一个在甘蔗种植的甘蔗初始生长阶段。两种实验设计都是随机嵌段,治疗以4×5因子方案排列,用四个Si来源:纳米硅(Si-Nano),用山梨糖醇稳定用PEG-400(Si-acid),钠和硅酸钠稳定的单硅酸( Si-alkali)和硅酸钾(Si-k)为5个浓度(0,0.25,0.5,0.75和1.0mmol L-1)和4个重复。将Si Syrup pH调节至5.5 +/- 0.2。由于它增加了Si积累,并且受益于幼苗生产和植物初始增长,因此叶面喷洒Si在预先发芽的甘蔗幼苗中是可行的。与稳定剂的可溶性Si来源与硅酸钾(Si-K)和纳米硅(Si-Nano)相比,更有效地增加Si积累。已经用PEG-400稳定的单硅酸(Si-酸)和山梨糖醇稳定的钠和硅酸盐(Si-alkali)喷洒的植物,分别在0.5和0.6mmol L-1浓度下促进了更大的Si积聚在生产阶段甘蔗籽幼苗生长的效果和有益效果。在甘蔗的初始生长中,Si-acid和S-碱的来源也增加了累积和有益的效果,而是均为0.6mmol L-1浓度的源。

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