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首页> 外文期刊>Journal of Agronomy >Differential Sensitivity of Pisum sativum L. Cultivars to Water-deficit Stress: Changes in Growth, Water Status, Chlorophyll Fluorescence and Gas Exchange Attributes
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Differential Sensitivity of Pisum sativum L. Cultivars to Water-deficit Stress: Changes in Growth, Water Status, Chlorophyll Fluorescence and Gas Exchange Attributes

机译:豌豆(Pisum sativum L.)品种对水分亏缺胁迫的差异敏感性:生长,水分状况,叶绿素荧光和气体交换属性的变化

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摘要

In recent years, drought has been a serious problem in Ethiopia and elsewhere which has adversely affected plant productivity. This study aimed to investigate the effects of water stress on growth, biomass and foliar characteristics in three cultivars(Brukitu, Tegegnech and Adi) of Pisum sativum. The control plant pots were uniformly irrigated at 3 day intervals to maintain 100% field capacity. Water-stress conditions were imposed by subjecting plants to a gradual decrease of soil water availabilitysuch as watering at 6 day intervals (slight-stress condition), 9 day intervals (mild-stress condition) and 12 day intervals (severe-stress condition). Results revealed significant differences among the cultivars, water-stress treatments and their interaction, indicating the cultivars variability and differential response to water stress. Water stress adversely affected growth, biomass production, leaf water status and other leaf characteristics such as pigment concentration (chlorophyll a, b and totalchlorophyll), maximum quantum yield of photosystem II (PS II) (Fv/Fm), net photosynthetic rate, stomatal conductance and transpiration rate in all cultivars, as stress level was increased in comparison to control plants. The relatively less decline in the studied parameters of Tegegnech exhibited a reasonable tolerance ability of this cultivar, whereas Brukitu and Adi proved to be sensitive to water-deficit condition.
机译:近年来,干旱一直是埃塞俄比亚和其他地方的严重问题,严重影响了植物的生产力。这项研究旨在研究水分胁迫对三个欧洲豌豆(Pisum sativum)生长,生物量和叶片特性的影响。对照植物盆以3天的间隔均匀灌溉,以保持100%的田间生产能力。通过使植物逐渐减少土壤水分供应来施加水分胁迫条件,例如每隔6天(轻度胁迫条件),9天(轻度胁迫条件)和12天(重度胁迫条件)浇水。结果表明,品种之间,水分胁迫处理及其相互作用之间存在显着差异,表明品种对水分胁迫的变异性和差异响应。水分胁迫对生长,生物量生产,叶片水分状况和其他叶片特性(例如色素浓度(叶绿素a,b和总叶绿素),光系统II(PS II)的最大量子产率(Fv / Fm),净光合速率,气孔)产生不利影响与对照植物相比,随着胁迫水平的提高,所有品种的电导和蒸腾速率均增加。 Tegegnech的研究参数相对较小的下降显示了该品种的合理耐受能力,而Brukitu和Adi被证明对缺水条件敏感。

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