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Nitrogen Redistribution during Grain Growth in Wheat (Triticum aestivum L.) 1: IV. Development of a Quantitative Model of the Translocation of Nitrogen to the Grain

机译:小麦(Triticum aestivum L.)籽粒生长过程中的氮再分配1:IV。氮向谷物转运的定量模型的建立

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摘要

Translocation of nitrogen was measured in wheat (Triticum aestivium L. cv SUN 9E) plants grown without an exogenous supply of nitrogen from the time that the flagleaf began to emerge, and a model of nitrogen translocation was constructed to describe translocation on one day during the linear period of grain growth. Nitrogen for grain development was derived entirely by the redistribution of nitrogen from vegetative organs. Leaves contributed 40%, glumes 23%, stem 23%, and roots 16% of the nitrogen incorporated by the grains on the fifteenth day after anthesis. Less than 50% of the nitrogen exported from leaves was translocated directly to the grain via the phloem, the rest was translocated to the roots and was cycled in the roots and exported to the shoot in the transpiration stream. Nitrogen imported by leaves and glumes via the xylem was not accumulated in these organs but was transferred to the phloem for reexport from the organs. A large proportion (60%) of the nitrogen in the transpiration stream was cycled in the glumes. The glumes were also a major source of nitrogen for grain development. It was considered likely that this organ always plays an important role in nitrogen metabolism in wheat.
机译:从旗叶开始出现时就测量了没有外源氮供应的小麦(Triticum aestivium L. cv SUN 9E)植物中氮的转运,并建立了氮转运模型来描述氮素转运的某一天。晶粒生长的线性时期。谷物生长所需的氮完全来自营养器官中氮的重新分配。在开花后的第十五天,叶片吸收的氮占叶中氮吸收的40%,颖花23%,茎23%和根16%。从叶片输出的氮中,不到50%通过韧皮部直接转移到谷物中,其余的则转移到根部并在根中循环,并在蒸腾流中转移到枝条中。叶片和颖花通过木质部输入的氮并没有积累在这些器官中,而是转移到韧皮部,从器官再出口。蒸腾流中的大部分氮(60%)在颖片中循环。颖片也是谷物发育的主要氮源。人们认为该器官可能一直在小麦的氮代谢中起重要作用。

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