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Leaf Photosynthesis and Conductance of Selected Triticum Species at Different Water Potentials

机译:不同水势条件下小麦叶片的光合作用和电导

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摘要

Leaf gas exchange characteristics of a desert annual (Triticum kotschyi [Boiss.] Bowden) and the wheat cultivar TAM W-101 (Triticum aestivum L. em Thell) were compared over a range of leaf water potentials from −0.50 to −2.9 megapascals. At an ambient [CO2] of 330 microliters per liter, T. kotschyi had higher conductance and CO2 assimilation (A) at a given water potential than T. aestivum. Under well watered conditions, A versus internal CO2 concentration (Ci) response curves for both species were similar in shape and magnitude, and the higher A of T. kotschyi at an ambient [CO2] of 330 microliters per liter was mostly related to the higher stomatal conductance of T. kotschyi. The higher conductance of T. kotschyi than T. aestivum under well watered conditions was associated with higher Ci and lower water use efficiency. Under water deficits, however, Ci at 330 microliters per liter ambient [CO2] did not differ significantly between species. T. kotschyi had higher A under water deficits than T. aestivum primarily because its A versus Ci response curves had higher A at Ci values above about 150 microliters per liter. The results show that conductance played an important role in the high A of T. kotschyi under well watered conditions, but under water deficits the high A of T. kotschyi was related more to the maintenance of a higher capacity for mesophyll photosynthesis.
机译:在-0.50至-2.9兆帕的一系列叶片水势中,比较了沙漠一年生(Triticum kotschyi [Boiss。] Bowden)和小麦品种TAM W-101(Triticum aestivum L. em Thell)的叶片气体交换特性。在给定的水势下,科氏锥虫在每公升330微升的环境[CO2]下具有比普通小麦更高的电导率和CO2同化度(A)。在浇水条件良好的情况下,两种物种的A对内部CO2浓度(Ci)响应曲线在形状和大小上都相似,并且在环境[CO2]为330微升/升的情况下科氏梭菌的较高A值与较高T. kotschyi的气孔导度。在灌溉条件良好的条件下,比普通小麦的电导率更高,这与较高的Ci和较低的水分利用效率有关。但是,在缺水情况下,物种之间每升环境中的Ci浓度为330微升[CO2]并没有显着差异。在水分亏缺下,T。kotschyi的A高于小麦,因为其A对Ci的响应曲线在Ci值高于每升150微升时具有较高的A。结果表明,在水分充足的条件下,电导率对科氏T的高A起重要作用,但在缺水条件下,科氏T的高A与维持较高的叶肉光合作用能力有关。

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