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首页> 外文期刊>Plant and Soil >Photosynthesis and leaf-nitrogen dynamics during leaf senescence of tropical maize cultivars in hydroponics in relation to N efficiency in the field
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Photosynthesis and leaf-nitrogen dynamics during leaf senescence of tropical maize cultivars in hydroponics in relation to N efficiency in the field

机译:热带玉米品种水培条件下叶片衰老过程中光合作用和叶氮动态与氮效率的关系

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摘要

The selection process of nitrogen (N)-efficient cultivars during plant breeding could be simplified by a specification of secondary plant traits that are decisive for N efficiency. It was shown that leaf senescence under N deprivation of sixteen tropical maize cultivars in a short-term nutrient solution experiment was related to leaf senescence and grain yield under N deficiency (N efficiency) in field experiments. In this study we investigated if a quantification of leaf- and plant-N flows by p#eN labelling can improve the evaluation of genotypic differences in leaf senescence in short-term experiments. Cultivars differed in leaf-N content prior to senescence; however, this appeared to have no significant impact on the development of leaf senescence. N import into senescing leaves was not related to total plant N uptake, but seems to have been regulated by leaf-inherent factors. Leaf N remaining in the leaf seems to have comprised inefficiently remobilized leaf N, at least during early senescence stages. Photosynthetic rate and chlorophyll contents at early senescence stages depended on additional factors to leaf-N content. Nevertheless, all parameters used to characterize leaf senescence were related to leaf senescence at anthesis in field experiments. However, only photosynthetic rate during late leaf senescence reflected cultivar differences in leaf senescence during reproductive growth and N efficiency in field experiments.
机译:可以通过对N效率起决定性作用的次生植物性状的规范来简化植物育种过程中对氮(N)高效品种的选择过程。结果表明,在短期营养液试验中,氮缺乏对16个热带玉米品种叶片衰老的影响与田间试验中氮缺乏(氮效率)下叶片衰老和籽粒产量有关。在这项研究中,我们调查了通过p#eN标记对叶片和植物N流量的量化是否可以改善短期实验中叶片衰老的基因型差异的评估。品种在衰老前叶片中的氮含量不同。然而,这似乎对叶片衰老的发展没有显着影响。进入衰老叶片的氮与植物吸收氮的总量无关,但似乎受叶片固有因子的调节。至少在衰老初期,残留在叶片中的叶片N似乎包含了不能有效迁移的叶片N。衰老初期的光合速率和叶绿素含量取决于叶氮含量的其他因素。然而,在田间试验中,用于表征叶片衰老的所有参数都与花期叶片衰老有关。然而,只有晚叶衰老期间的光合速率反映了生殖生长过程中叶片衰老的品种差异和田间试验的氮效率。

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