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首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Canopy Architecture and Leaf Nitrogen Distribution of Rice (Oryza sativa L.) under Chronic Soil Water Deficit
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Canopy Architecture and Leaf Nitrogen Distribution of Rice (Oryza sativa L.) under Chronic Soil Water Deficit

机译:长期土壤水分亏缺下水稻(Oryza sativa L.)的冠层结构和叶氮分布

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摘要

The development of vertical gradients of specific leaf nitrogen (SLN) in accordance with light gradients within a canopy is important for maximising resource-use efficiency. In this study, we aimed to clarify the effect of chronic soil water deficit on the SLN gradient in rice. In a series of field experiments, SLN gradients of an indica cultivar and a tropical japonica cultivar were investigated under chronic soil water deficit. As a result, SLN gradient of an indica cultivar tended to be more uniform than that of a tropical japonica cultivar during the recovery period after dry spells under aerobic conditions: an indica cultivar distributed much N in shaded leaves while a japonica cultivar enhanced the SLN in the upper layers. We conclude that vertical gradient of SLN of indica cultivars becomes less optimal for photo-assimilation under chronic soil water deficit, although they can take-up sufficient amounts of N. This would be attributable to the rapid increase in tiller number upon rainfall or irrigation and prolonged tillering period for their recovery growth, leading to a more compact canopy architecture. The tillering habit in the current indica irrigated rice cultivars would be associated with the response of SLN gradients to chronic soil water deficit.
机译:特定冠层氮素(SLN)的垂直梯度与冠层内光梯度的对应关系对于最大化资源利用效率至关重要。在这项研究中,我们旨在阐明长期土壤水分亏缺对水稻SLN梯度的影响。在一系列的田间试验中,研究了慢性土壤缺水条件下an稻和热带粳稻的SLN梯度。结果,在有氧条件下,干法恢复后period稻品种的SLN梯度往往比热带粳稻品种的SLN梯度更均匀:an稻品种在阴影下的叶片中分配了很多N,而粳稻品种则提高了叶片的SLN。上层。我们得出的结论是,在长期土壤缺水的条件下,in型SLN的垂直梯度对光吸收的适应性较差,尽管它们可以吸收足够量的N。这归因于降雨或灌溉和灌溉后分till数的快速增加。延长分till期以恢复它们的生长,从而使树冠结构更加紧凑。当前in灌溉稻品种的分er习性将与SLN梯度对土壤长期缺水的响应有关。

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