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首页> 外文期刊>Korean Journal of Horticultural Science & Technology >Effects of Low-temperature Water in Vase on the Hydraulic Physiological Characteristics and Senescence of Cut Roses (Rosa spp. 6Red Sandra')
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Effects of Low-temperature Water in Vase on the Hydraulic Physiological Characteristics and Senescence of Cut Roses (Rosa spp. 6Red Sandra')

机译:花瓶中的低温水对切花玫瑰(Rosa spp.6Red Sandra')的水分生理特性和衰老的影响

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摘要

This study was investigated the effect of low-temperature water in a vase on the hydraulic physiological characteristics and senescence of cut roses. Freshly harvested 'Red Sandra' roses (Rosa spp.) were held in low-temperature (7deg C) or ambient-temperature (22.8deg C) water and kept in an environment-controlled room (23deg C, 60% RH and 12-h photoperiod at 20 mu mol.m~(-1). sec~(-1) PPF) during the vase period. To closely investigate water flow patterns during vase life, stem flux rate, stem diameter, leaf temperature, and leaf boundary layer resistance (BLR) were continuously measured using phyto-monitormg system. Cut roses held in low-temperature water showed a higher rate of water uptake and a higher stem flux rate than those held in ambient-temperature water, which led to the effective maintenance of fresh weight and water balance, and consequently a longer vase life. Placing roses in low-temperature water also resulted in decrease in leaf temperature and BLR and rhythmic changes in stem flux in accordance with water flow. As found in this study, placing roses in low-temperature water speed up water flow by reducing the hydraulic resistance of cut rose stems. This may be resulted from dissolving the air, increasing the cohesion-tension, andthe transpiration rate.
机译:本研究调查了花瓶中的低温水对切玫瑰的水硬生理特性和衰老的影响。将新鲜收获的“红桑德拉”玫瑰(Rosa spp。)放在低温(7℃)或环境温度(22.8℃)的水中,并保存在环境控制的房间(23℃,60%RH和12- h在花瓶期以20μmol.m〜(-1).sec〜(-1)PPF的光周期进行。为了密切研究花瓶寿命期间的水流模式,使用植物监测系统连续测量茎通量率,茎直径,叶片温度和叶片边界层电阻(BLR)。与在室温下的水相比,在低温水中保存的切玫瑰表现出更高的吸水率和更高的茎通量率,从而有效地维持了鲜重和水的平衡,从而延长了花瓶的使用寿命。将玫瑰放在低温水中还导致叶片温度和BLR降低,并且茎通量根据水流量而有规律地变化。正如在这项研究中发现的那样,将玫瑰放在低温水中可以降低切玫瑰花梗的水力阻力,从而加快水的流动。这可能是由于溶解空气,增加内聚力和蒸腾速率导致的。

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