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Effect of soil moisture stress on photosynthesis and other physiological characteristics of seven sorghum cytoplasms

机译:土壤水分胁迫对7种高粱细胞质光合作用及其他生理特性的影响

摘要

The experiment was conducted at the University of Arizona Campus Agricultural Center to evaluate the effect of soil moisture stress on photosynthesis, transpiration, diffusive resistance, temperature differential, leaf temperature, and specific leaf weight of seven sorghum Sorghum bicolor (L.) Moench cytoplasms represented by nine lines. As soil moisture stress increased, diffusive resistance and leaf temperature increased whereas photosynthesis and transpiration decreased. Temperature differential was highest under high soil moisture stress and lowest under medium soil moisture stress. Specific leaf weight was highest under medium soil moisture stress. Three lines, AKS37, AKS38, and A2Tx398, representing two different germplasms under high soil moisture stress exhibited high photosynthesis and transpiration rates, high specific leaf weights, and low diffusive resistance. Differences in photosynthesis rates under non-soil moisture stress between A1 and A2 cytoplasmic sterility systems were significant.
机译:该实验在亚利桑那大学校园农业中心进行,以评估土壤水分胁迫对代表的七个高粱高粱双色(L.)Moench细胞质的光合作用,蒸腾作用,扩散阻力,温差,叶温度和比叶重的影响。九行。随着土壤水分胁迫的增加,扩散阻力和叶片温度升高,而光合作用和蒸腾作用降低。在高土壤水分胁迫下温差最高,在中等土壤水分胁迫下温差最低。在中等土壤水分胁迫下,比叶重最高。在高土壤湿度胁迫下,代表两种不同种质的三行AKS37,AKS38和A2Tx398表现出高的光合作用和蒸腾速率,高的比叶重和低的扩散阻力。 A1和A2细胞质不育系统在非土壤水分胁迫下的光合作用速率差异显着。

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