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Effect of water stress on leaf photosynthesis, chlorophyll content, and growth of oriental lily

机译:水分胁迫对东方百合叶片光合作用,叶绿素含量和生长的影响

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The photosynthetic characterization of the oriental lily (Lilium) cv. Sorbonne and its response to increasing water stress were analyzed based on the net photosynthetic rate (P (n)), stomatal conductance (g (s)), intercellular CO2 concentration (C-i), transpiration rate (E), water use efficiency (WUE), and stomatal limitation (Ls) in the Horqin Sandy Land of western China. A photosynthesis-PAR response curve was constructed to obtain light-compensation and light-saturation points (LCP and LSP), the maximum photosynthetic rates (P (max)) and dark respiration rates (R (D)). The growth of lilies in the pots was analyzed after anthesis. Various intensities of water stress (5, 10, and 20 days without water, and an unstressed control) were applied. The results indicated that drought stress not only significantly decreased P (n), E, g (s), photosynthetic pigment content (Chl a, Chl b, and Chl (a + b)) and increased intrinsic water use efficiency (WUE), but also altered the diurnal pattern of gas exchange. Drought stress also affected the photosynthesis (P (n))-PAR response curve. Drought stress increased LCP and R (D) and decreased LSP and P (max). There were both stomatal and nonstomatal limitations to photosynthesis. Stomatal limitation dominated in the morning, whereas nonstomatal limitation dominated in the afternoon. Thus, drought stress decreased potential photosynthetic capacity and affected the diurnal pattern of gas exchange and P (n)-PAR response curves, thereby reducing plant quality (lower plant height, flower length, flower diameter, and leaf area). Water stress is likely the main limitation to primary photosynthetic process in the lily. Appropriate watering is recommended to improve photosynthetic efficiency and alleviate photodamage, which will increase the commercial value of the lily in the Horqin Sandy Land.
机译:东方百合(Lilium)的光合特性。根据净光合速率(P(n)),气孔导度(g(s)),细胞间CO2浓度(Ci),蒸腾速率(E),水分利用效率(WUE)分析了索邦及其对水分胁迫的响应)和中国西部科尔沁沙地的气孔限制(Ls)。构建光合作用-PAR响应曲线以获得光补偿点和光饱和点(LCP和LSP),最大光合速率(P(max))和暗呼吸速率(R(D))。花后分析盆中百合的生长情况。施加各种强度的水分胁迫(无水5天,10天和20天,以及无压力的对照)。结果表明,干旱胁迫不仅显着降低了P(n),E,g(s),光合色素含量(Chl a,Chl b和Chl(a + b))并提高了内在水分利用效率(WUE),但也改变了气体交换的日间模式。干旱胁迫也影响光合作用(P(n))-PAR反应曲线。干旱胁迫增加了LCP和R(D),降低了LSP和P(max)。光合作用同时存在气孔和非气孔限制。气孔限制在早晨占主导地位,而非气孔限制在下午占主导地位。因此,干旱胁迫降低了潜在的光合作用能力,并影响了气体交换和P(n)-PAR响应曲线的日变化,从而降低了植物的品质(降低植物的高度,花的长度,花的直径和叶的面积)。水分胁迫可能是百合初级光合过程的主要限制因素。建议适当浇水以提高光合作用效率并减轻光害,这将增加科尔沁沙地百合的商业价值。

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