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Photosynthetic properties of erect leaf maize inbred lines as the efficient photo-model in breeding and seed production

机译:直立叶玉米自交系的光合特性作为育种和种子生产的有效光模型

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The initial idea of this study was a hypothesis that erect leaf maize inbred lines were characterized by properties of an efficient photo-model and that as such were very desirable in increasing the number of plants per area unit (plant density) in the process of contemporary selection and seed production. The application of a non-invasive bioluminescence-photosynthetic method, suitable for the efficiency estimation of the photo-model, verified the hypothesis. Obtained photosynthetic properties of observed erect leaf maize inbred lines were based on the effects and characteristics of thermal processes of delayed chlorophyll fluorescence occurring in their thylakoid membranes. The temperature dependence of the delayed chlorophyll fluorescence intensity phase transitions (critical temperatures) in the thylakoid membranes and activation energy are the principal parameters of the thermal processes. Based on obtained photosynthetic properties it is possible to select erect leaf maize inbred lines that are resistant and tolerant to high and very high temperatures, as well as, to drought. They could be good and efficient photo-models wherewith.
机译:这项研究的最初想法是一个假设,即直立叶玉米自交系的特征在于高效的光模型,因此,在当代过程中增加单位面积植物的数量(植物密度)非常需要。选择和种子生产。适用于光模型效率评估的非侵入性生物发光光合作用方法的应用验证了该假设。观察到的直立叶玉米自交系获得的光合特性基于其类囊体膜中发生的延迟叶绿素荧光的热过程的影响和特征。类囊体膜中延迟的叶绿素荧光强度相变(临界温度)和活化能的温度依赖性是热过程的主要参数。基于获得的光合特性,可以选择对高温和高温以及干旱具有抗性和耐受性的直叶玉米自交系。它们可能是良好而有效的照片模型。

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