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首页> 外文期刊>Biologia Plantarum >High-Temperature Preconditioning and Thermal Shock Imposition Affects Water Relations, Gas Exchange and Root Hydraulic Conductivity in Tomato
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High-Temperature Preconditioning and Thermal Shock Imposition Affects Water Relations, Gas Exchange and Root Hydraulic Conductivity in Tomato

机译:高温预处理和热冲击施加影响番茄中的水分关系,气体交换和根系水力传导率

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Potted tomato plants (Lycopersicon esculentum Mill. cv. Amalia) were submitted to three different treatments: control (C) plants were maintained at dayight temperature of 25/18 °C; preconditioned plants (PS) were submitted to two consecutive periods of 4 d each, of 30/23 and 35/28 °C before being exposed to a heat stress (40/33 °C lasting 4 d) and non-preconditioned (S) plants were maintained in the same conditions as the C plants and exposed to the heat stress. The inhibition of plant growth was observed only in PS plants. Heat stress decreased chlorophyll content, net photosynthetic rate and stomatal conductance in both PS and S plants. However, PS plants showed good osmotic adjustment, which enabled them to maintain leaf pressure potential higher than in S plants. Furthermore, at the end of the recovery period PS plants had higher pressure potential and stomatal conductance than in S plants.
机译:将盆栽番茄植株(Lycopersicon esculentum Mill.cv.Amalia)进行三种不同处理:将对照(C)植株维持在25/18°C的昼夜温度下;预处理植物(PS)分别经受两个连续的4 d周期,分别为30/23和35/28°C,然后再暴露于热应激(40/33°C持续4 d)和非预处理(S)将植物维持在与C植物相同的条件下并暴露于热胁迫下。仅在PS植物中观察到植物生长的抑制。热胁迫降低了PS和S植株的叶绿素含量,净光合速率和气孔导度。然而,PS植物表现出良好的渗透调节作用,这使它们能够保持比S植物更高的叶压潜力。此外,在恢复期结束时,PS植物比S植物具有更高的压力势和气孔导度。

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