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The effect of bulb weight on salinity tolerance of three common Narcissus cultivars

机译:灯泡重量对三种常见水仙栽培品种盐度耐受的影响

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Daffodils [Narcissus sp. (L.) Amaryllidaceae] are popular landscaping plants and cut flowers. The daffodil cultivars 'Dutch Master', 'Ice Follies', and 'Tete-a-Tete' are considered highly tolerant to salinity by maintaining visual quality at NaCl induced electrical conductivity (EC) greater than 6 dS.m(-1). In geophytes, the bulb can act as a buffer for stress, and in this study we wanted to determine how the bulb contributes to salinity tolerance in these three daffodil cultivars. Bulbs were divided into three weight categories and exposed to irrigation salinities of 0, 50 and 100 mM NaCl during chilling, active growth and flowering. Regardless of the level of salinity exposure, plants (regardless of salinity or cultivar) with large bulbs grew at least twice the rate as plants from small bulbs grown at the same salinity. Flowers lasted on average 2 days longer in large bulb plants compared to small bulb plants. The ability to flower was impacted by cultivar and bulb size, with the least flowering occurring in small bulb 'Dutch Master' plants. In contrast, salinity was the main factor affecting leaf osmotic potential and relative water content (both decreased by 13%), antioxidant capacity (increased by 11%), gas exchange (reduced 50-75%), and cation uptake (5 fold increase in NaCl treatments). Although increasing bulb size did not improve all plant factors impacted by salinity, increases in initial bulb size improved overall growth at all levels of salinity and allowed the plants to maintain flower production and visual quality.
机译:水仙花[Narcissus sp。 (L.)Amaryllidaceae]是流行的园林绿化植物和切花。通过在NaCl诱导的电导率(EC)大于6 ds.m(-1)的NaCl诱导的电导率(EC),将水仙花园品种'荷兰大师'和'TETE-A-TETE'和'TETE-A-TETE'被认为是高度耐受性的盐度。在地理瘤中,灯泡可以作为压力的缓冲器,并且在这项研究中,我们希望确定灯泡在这三种水仙花种类中的盐度耐受性。将灯泡分为三个重量类别,并在冷却,主动生长和开花期间暴露于0,50和100mM NaCl的灌溉盐度。无论盐度暴露的水平如何,植物(无论盐度或品种如何),大灯泡的速率至少是来自相同盐度的小灯泡的速率。与小灯泡植物相比,鲜花平均持续2天。花的能力受到品种和灯泡大小的影响,在小灯泡'荷兰大师的植物中发生了最少的开花。相比之下,盐度是影响叶片渗透势和相对含水量(两者均下降13%)的主要因素,抗氧化能力(增加11%),气体交换(减少50-75%)和阳离子摄取(5倍增加在NaCl治疗中)。虽然增加灯泡尺寸没有改善所有受盐度影响的植物因素,但初始灯泡大小的增加提高了各种盐度的总体增长,并允许植物保持花卉生产和视觉质量。

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