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首页> 外文期刊>Progress in Artificial Intelligence >Post-Silking Shading Stress Affects Leaf Nitrogen Metabolism of Spring Maize in Southern China
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Post-Silking Shading Stress Affects Leaf Nitrogen Metabolism of Spring Maize in Southern China

机译:硅纹遮阳应力影响南方春玉米的叶片氮代谢

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摘要

Lower sunlight caused by overcast skies from June to July in Southern China is one of the main environmental stresses that frequently occur and affect the post-silking growth and grain development of spring maize. In this study, a field trial involving four maize hybrids as materials was conducted to investigate the effects of post-silking shading stress (30% and 50% light deprivation) on leaf nitrogen metabolism and biomass accumulation during maize growing seasons in 2016 and 2017. Results indicated that 30% and 50% shading stress caused the grain yield to decrease by 47.3% and 69.6%, respectively. Plant post-silking biomass accumulation was decreased by shading, whereas the translocation from pre-silking assimilates in the vegetative organs was increased by shading. This change was sharply observed when the plants were deprived of more sunlight intensity. The leaf relative chlorophyll (soil and plant analyzer development (SPAD) value) and soluble protein contents were considerably decreased by shading under 50% light deprivation condition. The activities of nitrate reductase, glutamine synthetase and glutamate synthase that are involved in nitrogen metabolism were downregulated by shading stresses. In conclusion, nitrogen metabolism was disturbed by shading, which induced the decrease in post-silking dry matter accumulation, ultimately resulting in grain yield loss.
机译:从6月到7月在中国南部的阴天天空引起的阳光是经常出现的主要环境压力之一,并影响春季玉米的丝绸生长和谷物发展之一。在这项研究中,进行了涉及四种玉米杂种作为材料的现场试验,以研究2016年和2017年玉米生长季节叶片氮代谢和生物质积累的阳性遮荫应力(30%和50%缺陷)的影响。结果表明,30%和50%的阴影应力导致籽粒产量分别降低47.3%和69.6%。植物后丝绸生物量积累的阴影降低,而植被器官预防丝绸同化的易位增加了遮阳。当植物被剥夺更多的阳光强度时,这种变化会急剧观察到。在50%淡剥夺条件下,叶相对叶绿素(土壤和植物分析仪开发(Spad)值)和可溶性蛋白质含量显着降低。通过遮光应力下调硝酸还原酶,谷氨酰胺合成酶,谷氨酰胺合成酶和谷氨酸合成酶的活性。总之,氮代谢因遮阳性受到干扰,其诱导阳性后干性物质积累的降低,最终导致籽粒产量损失。

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