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Functional relationship between photosynthetic leaf gas exchange in response to silicon application and water stress mitigation in sugarcane

机译:甘蔗硅应用与水应力减缓光合叶片气体交换的功能关系

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Water stress is one of the serious abiotic stresses that negatively influences the growth, development and production of sugarcane in arid and semi-arid regions. However, silicon (Si) has been applied as an alleviation strategy subjected to environmental stresses. In this experiment, Si was applied as soil irrigation in sugarcane plants to understand the mitigation effect of Si against harmful impact of water stress on photosynthetic leaf gas exchange. In the present study we primarily revealed the consequences of low soil moisture content, which affect overall plant performance of sugarcane significantly. Silicon application reduced the adverse effects of water stress by improving the net photosynthetic assimilation rate (Anet) 1.35–18.75%, stomatal conductance to water vapour (gs) 3.26–21.57% and rate of transpiration (E) 1.16–17.83%. The mathematical models developed from the proposed hypothesis explained the functional relationships between photosynthetic responses of Si application and water stress mitigation. Silicon application showed high ameliorative effects on photosynthetic responses of sugarcane to water stress and could be used for mitigating environmental stresses in other crops, too, in future.
机译:水分胁迫是对干旱和半干旱地区中甘蔗的生长,发育和生产产生负面影响的严重非生物胁迫之一。然而,硅(SI)已被应用为对环境压力进行的缓解策略。在该实验中,Si被用作甘蔗植物中的土壤灌溉,了解Si对水分胁迫对光合叶片气体交换的有害影响的缓解作用。在本研究中,我们主要揭示了低土水分含量的后果,这影响了甘蔗的整体植物性能。硅应用通过改善净光合作用同化速率(ANET)1.35-18.75%,对水蒸气(GS)的气孔电导(GS)3.26-21.57%和蒸腾速率(e)的延灌率为1.16-17.83%。从拟议的假设中开发的数学模型解释了Si应用和水分胁迫的光合反应之间的功能关系。硅应用对甘蔗的光合反应显示出高的改善作用,可用于将来在其他作物中减轻环境胁迫。

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