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Effects of salt stress on water status, photosynthesis and chlorophyll fluorescence of rocket

机译:盐胁迫对火箭水状态,光合作用和叶绿素荧光的影响

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Salinity is a significant environmental factor affecting physiological processes in plants. This study monitors the effect of salt stress induced by the NaCl solution (0 - deionized water; 50, 100, 200, 300 mmol/L) in rocket (Eruca sativa (L.) Mill.) cv. Astro over the course of 50 days. Salt stress significantly affected the monitored parameters. The osmotic potential decreased with increasing NaCl concentrations, while relative water content decrease did not take place until 200 mmol/L NaCl. Compared to the control group, transpiration (E) decreased at the concentration of 50 mmol/L NaCl and stomatal conductance (g(s)) and net photosynthetic rate (P-n) decreased at 100 mmol/L NaCl. Further increase of salt concentrations did not affect Pn and no significant differences gs, E and substomatal concentration CO2 were measured between the concentrations of 200 and 300 mmol/L NaCl. A decrease of F-v/F-m took place from the concentration of 100 mmol/L NaCl, while differences between 200 and 300 mmol/L NaCl were also not significant. The obtained results therefore prove the tolerance of the E. sativa cv. Astro to salt stress.
机译:盐度是影响植物生理过程的重要环境因素。该研究监测火箭(0-脱硫水; 50,100,00,300mmol / L)诱导的盐应激的影响(Eruca sativa(L.)磨。)Cv。 astro在50天的过程中。盐胁迫显着影响受监测的参数。随着NaCl浓度的增加而降低渗透电位,而相对含水量降低不会发生,直至200mmol / L NaCl。与对照组相比,蒸腾(e)在50mmol / L NaCl的浓度下降低,气孔导率(g(s))和净光合速​​率(p-n)在100mmol / l NaCl下降。盐浓度的进一步增加不影响Pn,并且在200和300mmol / L NaCl的浓度之间测量Gs,E和重组浓度CO 2没有显着差异。 F-V / F-M的减少从100mmol / L NaCl的浓度发生,而200至300mmol / L NaCl的差异也不显着。因此,所得结果证明了E.Sativa CV的耐受性。 astro盐胁迫。

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