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Interactive effects of elevated CO2 and drought stress on leaf water potential and growth in Caragana intermedia

机译:CO2浓度升高和干旱胁迫对柠条锦鸡儿叶片水势和生长的交互影响

摘要

We studied the responses of leaf water potential (psi(w)), morphology, biomass accumulation and allocation, and canopy productivity index (CPI) to the combined effects of elevated CO2 and drought stress in Caragana intermedia seedlings. Seedlings were grown at two CO2 concentrations (350 and 700 mu mol mol(-1)) interacted with three water regimes (60-70%, 45-55%, and 30-40% of field capacity of soil). Elevated CO2 significantly increased psi(w), decreased specific leaf area (SLA) and leaf area ratio (LAR) of drought-stressed seedlings, and increased tree height, basal diameter, shoot biomass, root biomass as well as total biomass under the all the three water regimes. Growth responses to elevated CO2 were greater in well-watered seedlings than in drought-stressed seedlings. CPI was significantly increased by elevated CO2, and the increase in CPI became stronger as the level of drought stress increased. There were significant interactions between elevated CO2 and drought stress on leaf water potential, basal diameter, leaf area, and biomass accumulation. Our results suggest that elevated CO2 may enhance drought avoidance and improved water relations, thus weakening the effect of drought stress on growth of C. intermedia seedings.
机译:我们研究了锦鸡儿中间叶幼苗叶片水势(psi(w)),形态,生物量积累和分配以及冠层生产力指数(CPI)对CO2升高和干旱胁迫的综合影响。幼苗在两种CO2浓度(350和700μmol mol(-1))下与三种水分状况(土壤田间持水量的60-70%,45-55%和30-40%)相互作用而生长。 CO2升高显着提高了干旱胁迫下幼苗的psi(w),降低了比叶面积(SLA)和叶面积比(LAR),并且在所有条件下树高,基础直径,苗生物量,根生物量和总生物量均增加三种水制度。水分充足的幼苗比干旱胁迫的幼苗对二氧化碳升高的生长响应更大。二氧化碳升高使CPI显着提高,并且随着干旱压力的增加,CPI的增长也变得更强。 CO 2浓度升高和干旱胁迫对叶片水势,基础直径,叶片面积和生物量积累具有显着的相互作用。我们的结果表明,升高的CO2可能会增强对干旱的避免,并改善水的关系,从而减弱干旱胁迫对中间种子幼苗生长的影响。

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