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首页> 外文期刊>Acta Agriculturae Slovenica >The effects of silicon and titanium on safflower (Carthamus tinctorius L.) growth under moisture deficit condition
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The effects of silicon and titanium on safflower (Carthamus tinctorius L.) growth under moisture deficit condition

机译:水分缺陷条件下硅和钛对红花(Carthamus Tinctorius L.)生长的影响

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摘要

Safflower is one of important crop in semi-arid regions of the world, where the precipitations are limited. In order to investigate the effect of foliar spray of nano-silicon dioxide (10 and 20 mM) and nano titanium dioxide (25 and 50 mM) and water-deficit stress (irrigation after 110 mm evaporation) on growth parameters and yield components of spring safflower a field experiment was carried out at the highland semi-arid region, in, North West of Iran. Water deficit stress significantly reduced morpho-physiological traits such as ground cover, canopy width, leaf fresh mass, leaf are and plant height) as well as yield components (e.g. capitulum diameter, seed mass and seed number per capitulum). However, the plants grown under water deficit conditionshowed the higher harvest index than well irrigated plants. Comparison of the foliar treatments showed that the both nano-particles (silicon and titanium) improved the plant growth and yield components over the control. However, the effect of nano-silicon was more prominent than titanium. The highest amount of seed oil was recorded under well irrigated condition (irrigation after 60 mm evaporation) with foliar application of nano-titanium. The percentage of palmitic acid, arachidic acid and myristic acid in seed increased by nano-titanium application. Altogether, principal component analysis indicated that spray of 10 mM nano silicon dioxide was best foliar treatments under all moisture regimes.
机译:红花是世界上半干旱地区的重要作物之一,沉淀有限。为了研究叶片喷雾二氧化硅(10和20mm)和纳米二氧化钛(25和50mm)和水 - 缺陷应力(110mm蒸发后灌溉)对弹簧的生长参数和产量组分的影响红花在伊朗西北部的高地半干旱地区进行了一个田间实验。水缺陷应力显着降低了地面覆盖,冠层宽度,叶新鲜质量,叶子和植物高度的情况下,以及产量组分(例如,Capitulum直径,种子质量和种子编号)。然而,植物在水赤字下种植的病情,比灌溉植物更高的收获指数。叶面处理的比较表明,纳米颗粒(硅和钛)在对照中改善了植物生长和产量组分。然而,纳米硅的效果比钛更突出。在植物灌溉条件下记录最高量的种子油(蒸发后灌溉),含有镶嵌纳米钛。纳米钛施用增加了种子中棕榈酸,花生酸和肉豆蔻酸的百分比。总共,主成分分析表明,在所有水分制度下,10mm纳米二氧化硅的喷射是最佳的叶面治疗。

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