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首页> 外文期刊>Journal of Microbiology, Biotechnology and Food Sciences >EFFECT OF DROUGHT STRESS INDUCED BY MANNITOL ON PHYSIOLOGICAL PARAMETERS OF MAIZE (ZEA MAYS L.) SEEDLINGS AND PLANTS
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EFFECT OF DROUGHT STRESS INDUCED BY MANNITOL ON PHYSIOLOGICAL PARAMETERS OF MAIZE (ZEA MAYS L.) SEEDLINGS AND PLANTS

机译:甘露醇诱导的干旱胁迫对玉米(ZEA MAYS L.)幼苗和植物生理参数的影响

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Plants are exposed to various stress factors which might lead to structural damage and physiological function abnormalities. Drought is one of the environmental stress factors that reduce the productivity of plants. The aim of our study was to determine the influence of drought stress induced by mannitol (-0.5 and -1.5MPa) on selected physiological processes in Z. mays L. In the first stage we studied the effect of mannitol on the germination. In the second stage the effect of mannitol on the growth of plants germinated on distilled water and watered with mannitol in growth phase were measured. Mannitol, which decreased the water content in a concentration-dependent manner, had an inhibitory effect on germination and growth of seedlings and adult plants. Electrolyte leakage of cell membranes of the Z. mays seedlings showed high disturbances in the functioning of the membrane structures in the osmotic drought conditions. Similar results were obtained for maize roots, shoots and leaves in both treatment studies. Chlorophyll content showed only significant differences in plants from treated during the growth phase. Drought stress caused a decrease in chlorophyll content by almost a half compared to the control plants. Measurements of chlorophyll fluorescence of plant leaves from the second stage of experiments showed changes in fluorescence activity parameters Fv/Fm, NPQ, Rfd, qP, ect.; gas exchange measurements also showed changes in activity in each of the two phases.
机译:植物暴露于各种胁迫因素下,可能导致结构破坏和生理功能异常。干旱是降低植物生产力的环境压力因素之一。我们的研究目的是确定甘露醇引起的干旱胁迫(-0.5和-1.5MPa)对玉米Z选择生理过程的影响。在第一阶段,我们研究了甘露醇对发芽的影响。在第二阶段中,测量了甘露醇对在蒸馏水上萌发并在生长阶段用甘露醇浇水的植物的生长的影响。甘露醇以浓度依赖的方式降低水分含量,对幼苗和成年植物的发芽和生长具有抑制作用。在渗透干旱条件下,玉米Z幼苗细胞膜的电解质泄漏显示出膜结构功能的高度干扰。在两个处理研究中,玉米根,芽和叶均获得了相似的结果。在生长期中,叶绿素含量仅显示与处理植物相比有显着差异。与对照植物相比,干旱胁迫导致叶绿素含量降低了近一半。实验第二阶段对植物叶片叶绿素荧光的测量表明,荧光活性参数Fv / Fm,NPQ,Rfd,qP等发生了变化。气体交换测量还显示了两个阶段中每个阶段的活度变化。

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