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Influence of short-term macronutrient deprivation in maize on photosynthetic characteristics, transpiration and pigment content

机译:短期Macronurient剥夺在玉米对光合特性,蒸腾和颜料含量的影响

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The aim of the research was to compare the impact of short-term deprivation of selected macronutrients (Ca, K, Mg and P) on the photosynthetic characteristics, transpiration and pigment content in maize. The strongest inhibition of photosynthesis was caused by a deprivation of Mg, which was visible as a decrease in the photosynthetic and transpiration rates, stomatal conductance, photosystem II (PSII) performance, chlorophyll and flavonol content with a simultaneously increased content of anthocyanins. In the K-deprived plants, a decrease in the photosynthetic rate was observed. However, the transpiration rate and stomatal conductance did not differ significantly compared with the control. In the K-deprived plants, a decrease in chlorophyll and an increase in the anthocyanin content were also observed. We showed that Ca starvation resulted in a decrease in the photosynthetic and transpiration rates, stomatal conductance and PSII performance, while the pigment content was not significantly different compared with the control. In the case of P-deprived plants, we observed a decrease in the photosynthetic and transpiration rates. Interestingly, the inhibition of stomatal conductance was the strongest in the P-deprived plants compared with all of the investigated elements. However, the performance of PSII was not significantly affected by P starvation compared with the control. Our results present for the first time a comprehensive analysis of the effect of short-term macronutrient deprivation on photosynthesis and transpiration in maize plants.
机译:该研究的目的是比较短期剥夺所选MACRORINRES(CA,K,MG和P)对玉米的光合特性,蒸腾和颜料含量的影响。光合作用的最强抑制是由剥夺Mg引起的,其作为光合作用和蒸腾率的降低,气孔导度,光学系统II(PSII)性能,叶绿素和黄酮醇含量的同时增加的花青素的含量可见。在K贫地的植物中,观察到光合速率的降低。然而,与对照相比,蒸腾率和气孔电导没有显着差异。在K贫地的植物中,还观察到叶绿素的降低和增加的花青素含量。我们展示CA饥饿导致光合作用和蒸腾率下降,气孔导电和PSII性能下降,而颜料含量与对照相比没有显着差异。在剥夺植物的情况下,我们观察到光合作用和蒸腾率的降低。有趣的是,与所有研究的元素相比,对剥夺植物中的气孔导度的抑制是最强的。然而,与对照相比,PSII的性能没有受到P饥饿的显着影响。我们的结果首次出现了综合分析短期Macronurient剥夺对玉米植物光合作用和蒸腾的影响。

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