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Effects of Water Stress on Leaf Temperature and Chlorophyll Fluorescence Parameters in Cotton and Peanut

机译:水分胁迫对棉花和花生叶片温度和叶绿素荧光参数的影响

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摘要

A greenhouse experiment was conducted to study the adaptive mechanism of cotton and peanut under water stress conditions. Five cultivars of cotton and six cultivars of peanut were grown in pots under two water levels; the control and water stress condition, where irrigation water equal to 100% and 50% of the daily transpiration, respectively, was daily applied. Peanut showed a greater increase than cotton in leaf temperature (TL) and non-photochemical quenching (NPQ) and a greater decrease in water content per unit leaf area (WCLA), chlorophyll content and maximum quantum yield of photosystem II (PSII) (Fv/Fm) in the water stress condition. On the other hand, the water stress lowered the transpiration rate, actual quantum yield of PSII (ΔF/F’m) and leaf area (LA) more in cotton than in peanut. Cotton showed greater reduction in LA along with little reduction in the root dry weight (RDW) leading to high WCLA, while peanut showed increased RDW with little reduction in LA under the water stress condition. It was concluded that photodamage and down regulation in PSII were induced by water stress, coinciding with increases in leaf temperature regulated mainly by transpiration. Peanut showed more severe photodamage in PSII than cotton under the water stress condition.
机译:通过温室试验研究了水分胁迫条件下棉花和花生的适应机制。在两个水位下,在盆中种植了五个棉花品种和六个花生品种。每天施用控制量和水分胁迫条件下的灌溉水分别相当于每日蒸腾量的100%和50%。花生的叶温(TL)和非光化学猝灭(NPQ)的增幅大于棉花,单位叶面积的水分(WCLA),叶绿素含量和光系统II(PSII)(Fv)的最大量子产率的下降幅度更大。 / Fm)。另一方面,与花生相比,水分胁迫降低了棉花的蒸腾速率,PSII的实际量子产率(ΔF/ F’m)和叶面积(LA)。棉花在水分胁迫条件下显示出更大的LA减少量,而根干重(RDW)几乎没有减少,从而导致WCLA高,而花生显示出RDW增加,而LA在水分胁迫条件下几乎没有减少。结论是,水分胁迫引起PSII的光损伤和下调,这与主要由蒸腾作用调节的叶片温度升高相吻合。在水分胁迫条件下,花生对PSII的光损伤比棉花严重。

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