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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Direct and indirect effects of shoot- and/or root-chilling stress on growth, photosynthesis, and osmotic root water uptake in Kalanchoe blossfeldiana Poelln. 'Molly'.
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Direct and indirect effects of shoot- and/or root-chilling stress on growth, photosynthesis, and osmotic root water uptake in Kalanchoe blossfeldiana Poelln. 'Molly'.

机译:芽和/或根冷胁迫对Kalanchoe blossfeldiana Poelln生长,光合作用和渗透性根系水分吸收的直接和间接影响。 “莫莉”。

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Kalanchoe blossfeldiana is the most extensively cultivated flowering potted plant for indoor use in Europe, and it is also used outdoors as a patio and bedding plant. Increased chilling tolerance in K. blossfeldiana is desirable, as it would enhance the marketing potential for outdoor use and allow more energy-efficient greenhouse production. In this study, the effects of shoot-chilling, root-chilling, or whole plant-chilling (4 degrees C/20 degrees C, 20 degrees C/4 degrees C, or 4 degrees C/4 degrees C air temperature/root-zone temperature, respectively) on K. blossfeldiana Poelln. 'Molly' were compared in order to identify the most sensitive physiological processes related to the impairment of growth under low temperatures. As controls, plants were grown at 20 degrees C/20 degrees C. All three chilling treatments severely inhibited plant growth and decreased the net photosynthetic rate (Pn). Inhibition of Pn in root-chilled plants was due to stomatal closure, while in shoot-chilled plants it was related both to stomatal and non-stomatal effects. A low air temperature also caused the accumulation of soluble carbohydrates and cellular membrane damage in the leaves. Root- or whole plant-chilling significantly reduced the composite root hydraulic conductance (CRHC), whereas the decrease in osmotic root water uptake of shoot-chilled plants was unrelated to changes in CRHC. Impaired water uptake led to partial leaf wilting of root-chilled plants at 20 degrees C/4 degrees C. We conclude that the sensitivity of Kalanchoe to low temperatures is linked to both direct and indirect effects of shoot- and/or root-chilling on photosynthetic carbon metabolism and osmotic water uptake by the roots.
机译:Kalanchoe blossfeldiana是欧洲种植最广泛的开花盆栽植物,在室内用于室内使用,也可以在户外用作露台和被褥植物。希望增加桔梗K.的耐寒性,因为它将增强户外使用的市场潜力并允许更节能的温室生产。在这项研究中,芽冷,根冷或整株冷(4摄氏度/ 20摄氏度,20摄氏度/ 4摄氏度或4摄氏度/ 4摄氏度的空气温度/根-区温度分别)在K. blossfeldiana Poelln上。比较“茉莉”以鉴定与低温下生长受损有关的最敏感的生理过程。作为对照,植物在20摄氏度/ 20摄氏度下生长。所有三种冷藏处理均严重抑制了植物的生长并降低了净光合速率(P n )。 P n 在根冷植物中的抑制作用是由于气孔关闭而引起的,而在芽冷植物中,P n 的抑制与气孔作用和非气孔作用有关。较低的气温还导致叶片中可溶性碳水化合物的积累和细胞膜受损。根系或整株低温处理显着降低了复合根系水力传导率(CRHC),而枝干冷却植物的渗透压根系吸水量的降低与CRHC的变化无关。水分吸收受损导致20°C / 4°C的根冷植物部分萎。我们得出结论,Kalanchoe对低温的敏感性与芽和/或根冷对玉米的直接和间接影响有关。根系的光合作用碳代谢和渗透水吸收。

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