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首页> 外文期刊>Weed Science >Physiology and Recovery of African Rue (Peganum harmala) Seedlings Under Water-Deficit Stress
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Physiology and Recovery of African Rue (Peganum harmala) Seedlings Under Water-Deficit Stress

机译:水分胁迫下非洲云杉(Peganum harmala)幼苗的生理与恢复

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African rue is an invasive herbaceous perennial that occurs in several states in the western United States. The ability of African rue seedlings to tolerate and recover from progressive drought was examined in greenhouse experiments. Water was withheld for 15 d, and a subset of plants were rewatered after 12 d of water deficit to examine recovery. Conductance rate decreased to 0.1 mol H2O m−2 s−1 and photosynthesis rate decreased to 2 µmol CO2 m−2 s−1 within 6 and 12 d, respectively. Leaf water potential decreased more slowly than gas exchange rates; after 15 d of water deficit plants maintained net carbon gain at −4.8 MPa. Photosynthesis and conductance rates of rewatered plants recovered to levels similar to well-watered controls within 9 and 12 d, respectively. After 9 d of water deficit, seedlings needed only 4 d to recover physiological function similar to well-watered controls. Reduced seedling biomass was observed after 6 d of water deficit, and biomass remained smaller than controls after 15 d of recovery. The rapid change in conductance rate and slower response in leaf water potential indicates that stomatal control is an important component of seedling response to water deficit. The success of African rue in arid environments is due in part to the ability of seedlings to tolerate and recover from water deficit.
机译:非洲云杉是多年生入侵性草本植物,在美国西部的多个州都有发生。在温室实验中检查了非洲云杉幼苗对干旱进行耐受和恢复的能力。停水15天,缺水12天后将一部分植物重新浇水以检查恢复情况。在6 d和12 d内,电导率分别降至0.1 mol H2O m-2 s-1,光合作用速率降至2μmolCO2 m-2 s-1。叶水势的下降速度比气体交换率慢;在缺水15天后,植物的净碳增加量保持在-4.8 MPa。再浇水植物的光合作用和电导率分别在9 d和12 d内恢复到与浇水良好的对照相似的水平。缺水9天后,幼苗仅需4天即可恢复与浇水良好的对照相似的生理功能。缺水6 d后观察到幼苗生物量减少,恢复15 d后生物量仍小于对照。电导率的快速变化和叶水势的响应较慢表明气孔控制是幼苗对缺水响应的重要组成部分。非洲云杉在干旱环境中的成功部分归因于幼苗能够耐受缺水并从缺水中恢复的能力。

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