首页> 外文期刊>Acta Horticulturae >Silver thiosulfate maintains floret quality of cut mini-gladiolus spikes by affecting sink-source relationships and modulating the sugar transport within the spike organs.
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Silver thiosulfate maintains floret quality of cut mini-gladiolus spikes by affecting sink-source relationships and modulating the sugar transport within the spike organs.

机译:硫代硫酸银可通过影响汇源关系并调节尖峰器官内的糖转运来维持小唐gla蒲穗的小花质量。

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摘要

Although insensitive to ethylene, pulsing of cut mini-gladiolus (Gladiolus hybrid 'Adi') spikes with the ethylene action inhibitor, silver thiosulfate (STS), offers potential advantages, similar to their pulsing with 10% sucrose, in extending their vase life and maintaining florets quality. The improved flower quality was manifested in increased fresh weight (FW) of the spikes, increased FW and dry weight (DW) of the third and fifth florets, and opening of an additional floret during 10 days of vase life. STS-treated spikes had extended longevity than sucrose-treated ones. Similar to the sucrose pulsing, STS pulsing resulted in elevated levels of glucose and fructose in petals of the third and fifth florets during flower opening, which were further elevated by the combined treatment of STS and sucrose. The STS-induced increase in levels of reducing sugars of the third and fifth florets was accompanied by a concomitant decrease in total carbohydrate concentrations, mainly glucose and fructose, in the green vegetative organs. Thus, STS enhanced the reduction of carbohydrate concentrations in leaves, bracts and stems by 40, 50 and 75%, respectively, as compared with control. Indeed, removing the bracts and/or the lower stem part reduced floret opening, as well as floret FW, DW and color intensity. Pulsing the spikes, after removal of the bracts and lower stem, with 10% sucrose and 0.4 mM STS, or adding 2% sucrose to the vase solution, compensated for the removal of these green parts, and retained the full spike quality. The results suggest that the green vegetative tissues of the mini-gladiolus spike serve as possible sources for assimilate import to the floret sink, which is necessary for maintaining appropriate floret opening during vase life. It seems, therefore, that besides being an ethylene action inhibitor, STS may have also a possible role in modulating sugar transport within the organs of the mini-gladiolus spike.
机译:尽管对乙烯不敏感,但用乙烯作用抑制剂硫代硫酸银(STS)对切碎的小唐gla蒲(唐hybrid蒲杂种'Adi')的脉冲作用具有延长花瓶寿命的潜在优势,类似于用10%蔗糖的脉冲作用。保持小花的质量。花质量的改善表现为穗的鲜重增加(FW),第三和第五小花的增加FW和干重(DW),以及在花瓶寿命10天内增加了另一朵小花。 STS处理的穗状花序比蔗糖处理的穗长寿。与蔗糖冲动相似,STS冲动导致开花过程中第三小花和第五小花的花瓣中葡萄糖和果糖的含量升高,通过联合处理STS和蔗糖进一步提高了葡萄糖和果糖的含量。 STS诱导的第三小花和第五小花的还原糖水平增加,伴随绿色植物器官中总碳水化合物浓度(主要是葡萄糖和果糖)的下降。因此,与对照相比,STS分别使叶片,片和茎中的碳水化合物浓度降低了40%,50%和75%。实际上,去除the片和/或下部茎部分减少了小花的开放,以及小花的FW,DW和颜色强度。在去除the片和下部茎后,用10%的蔗糖和0.4 mM STS或在花瓶溶液中添加2%的蔗糖对穗进行脉冲处理,以补偿这些绿色部分的去除,并保持穗的完整质量。结果表明,小唐gla蒲穗的绿色营养组织可作为同化物进口到小花水槽的可能来源,这对于在花瓶寿命中维持适当的小花开口是必要的。因此,似乎STS除了是乙烯作用抑制剂外,还可能在调节小唐diol蒲刺突器官内的糖运输中发挥可能的作用。

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