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Genotypic variation in the photosynthetic competence of Sorghum bicolor seedlings subjected to polyethylene glycol-mediated drought stress

机译:聚乙二醇介导的干旱胁迫下高粱双色幼苗光合能力的基因型变化

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摘要

Eleven varieties of Sorghum bicolor, subjected to PEG-mediated drought stress were compared for their photosynthetic performance. The varieties differed in their relative water content over a range of PEG concentrations (0-25%). CO2 assimilation, stomatal conductance and the quantum yield of PSII electron transport decreased with increasing PEG concentrations in all varieties. However the intercellular CO2 concentration showed a nonlinear PEG concentration-dependent change. At lower PEG concentrations there was a decrease in the levels of intercellular CO2 concentration in all varieties that could be attributed to stomatal closure. At higher PEG concentrations, some varieties showed an increase in the intercellular CO2 concentration, indicating an inhibition of photosynthetic activity due to non-stomatal effects, while others did not. It was seen that the varieties differed in the stress thresholds at which stomatal and metabolic limitations to photosynthesis occur. These differences in the photosynthetic adaptation of Sorghum varieties could be useful in identifying genotypes showing large differences in photosynthetic adaptation, which could be useful in mapping photosynthetic traits for drought stress tolerance.
机译:比较了11种受PEG介导的干旱胁迫的高粱品种的光合性能。在PEG浓度范围(0-25%)内,这些品种的相对含水量不同。在所有品种中,随着PEG浓度的增加,CO2同化,气孔导度和PSII电子传递的量子产率均下降。然而,细胞间CO 2浓度显示出非线性的PEG浓度依赖性变化。在较低的PEG浓度下,所有品种的细胞间CO2浓度均下降,这可能归因于气孔关闭。在较高的PEG浓度下,某些品种显示出细胞间CO2浓度增加,这表明由于非气孔作用而抑制了光合活性,而其他品种则没有。可以看出,在光合作用的气孔和代谢限制发生的胁迫阈值方面,这些品种有所不同。高粱品种光合适应性的这些差异可能有助于鉴定在光合适应性方面显示出较大差异的基因型,这可用于绘制光合性状以适应干旱胁迫。

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