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首页> 外文期刊>Journal of the American Society for Horticultural Science >Iron Efficiency in Different Cucumber Cultivars: The Importance of Optimizing the Use of Foliar Iron.
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Iron Efficiency in Different Cucumber Cultivars: The Importance of Optimizing the Use of Foliar Iron.

机译:不同黄瓜品种的铁效率:优化使用叶铁的重要性。

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The ability of plant cultivars to deal with iron (Fe) deficiency (plant Fe efficiency capabilities) has a significant influence on crop yield and fruit quality. This study investigates Fe efficiency in four cucumber (Cucumis sativus L.) cultivars (Ashley, Anico, Trcdpico, and Serena) using a complementary approach. The ability to express the main Fe-stress root responses (rhizosphere acidification, Fe reduction, and specific morphological changes) and grow (dry matter production, nutrient acquisition, and efficiency of photosystem II) under Fe starvation were assessed. Results show that while the four cultivars were able to activate the main Fe-stress root responses, only Ashley presented a significant capacity to grow and acquire nutrients under Fe deficiency. This ability to develop under Fe starvation was also reflected in the efficiency of photosystem II. Results suggest the existence of two different but probably inter-regulated mechanisms to deal with Fe deficiency in these plants. One would be related to the control of the expression of Fe-stress responses in the root and the other would be involved in optimizing the use of Fe present in the shoot, which is reflected in the plant's ability to develop under Fe deficiency. Among the cucumber cultivars studied, only Ashley presented complete Fe efficiency, expressed in the development of Fe-stress root responses and in the ability to optimize Fe metabolic efficiency in the shoot. Likewise, this study evidences the need to consider Fe-stress root responses and the capacity to optimize the metabolic use of Fe in the shoot in studying plant Fe efficiency.
机译:植物品种应对铁(Fe)缺乏症的能力(植物铁效率能力)对作物产量和果实品质有重大影响。本研究使用互补方法研究了四个黄瓜(Cucumis sativus L.)品种(Ashley,Anico,Trcdpico和Serena)的铁效率。评估了在饥饿状态下表达主要铁胁迫根响应(根际酸化,铁还原和特定形态变化)和生长(干物质生产,养分获取和光系统II效率)的能力。结果表明,虽然这四个品种能够激活主要的铁胁迫根系反应,但只有阿什利在铁缺乏时表现出显着的生长和获取养分的能力。在铁饥饿状态下的这种发展能力也反映在光系统II的效率上。结果表明,存在两种不同但可能相互调节的机制来应对这些植物中的铁缺乏症。一种可能与控制根中Fe胁迫响应的表达有关,另一种可能涉及优化枝条中存在的Fe的使用,这反映在植物在缺铁条件下的发育能力。在所研究的黄瓜品种中,只有阿什利(Ashley)表现出完全的铁效率,表现为铁胁迫根响应的发展以及枝条中铁代谢效率的优化能力。同样,该研究证明在研究植物铁效率时,需要考虑铁胁迫根反应以及优化芽中铁代谢利用的能力。

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