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Optimum Leaf Removal Increases Nitrogen Accumulation in Kernels of Maize Grown at High Density

机译:最佳脱叶可增加高密度玉米籽粒中氮的积累

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摘要

Increasing plant density is one of the main approaches of achieving higher yields for modern maize crop. However, there exists leaf redundancy for high-density maize, and leaves of the upper canopy shade more competent leaves at the middle strata. In a two-year field experiments, Jinhai5, a semi-compact corn cultivar, was grown at a density of 105,000 plants ha−1 grown until 3 days after silking (3DAS), when plants were subjected to removal of the uppermost two leaves (S2), four leaves (S4) or six leaves (S6), with no leaf removal as control (S0). We evaluated the effects of leaf removal on N remobilization, photosynthetic capacity of the remaining leaves for N uptake, and N accumulation in kernels. Our present results concluded that, under high plant density, excising the uppermost two leaves promoted N remobilization from vegetative organs to kernels and enhanced photosynthetic capacity for N uptake, leading to an increased N accumulation in kernels (19.6% higher than control). However, four or six uppermost leaves removal reduced N remobilization from stem and photosynthesis for poor N uptake, resulting in 37.5 and 50.2% significantly reduced N accumulation in kernels, respectively.
机译:增加植物密度是现代玉米作物提高单产的主要途径之一。然而,高密度玉米存在叶片冗余,中冠层的叶片遮盖了上部叶片。在为期两年的田间试验中,半紧凑型玉米栽培品种Jinhai5以105,000株ha -1 的植物密度生长,直到蚕丝(3DAS)后三天。去除最上面的两片叶子(S2),四片叶子(S4)或六片叶子(S6),而没有叶子去除作为对照(S0)。我们评估了除叶对N转运,剩余叶子的光合能力,N吸收和籽粒中N积累的影响。我们目前的结果得出结论,在高植物密度下,切除最上面的两片叶子促进了N从营养器官向种子的转运,并增强了吸收N的光合作用能力,从而导致N在籽粒中的积累增加(比对照高19.6%)。然而,最上方的四到六片叶子的去除减少了氮从茎和光合作用中的迁移,从而降低了氮的吸收,分别导致仁中氮的累积减少了37.5%和50.2%。

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