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The Dynamic Process of Interspecific Interactions of Competitive Nitrogen Capture between Intercropped Wheat (Triticum aestivum L.) and Faba Bean (Vicia faba L.)

机译:间作小麦(Triticum aestivum L.)与蚕豆(Vicia faba L.)间竞争性氮吸收间种间相互作用的动态过程。

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摘要

Wheat (Triticum aestivum L.)/faba bean (Vicia faba L.) intercropping shows significant overyielding and high nitrogen (N)-use efficiency, but the dynamics of plant interactions have rarely been estimated. The objective of the present study was to investigate the temporal dynamics of competitive N acquisition between intercropped wheat and faba bean with the logistic model. Wheat and faba bean were grown together or alone with limited N supply in pots. Data of shoot and root biomass and N content measured from 14 samplings were fitted to logistic models to determine instantaneous rates of growth and N uptake. The superiority of instantaneous biomass production and N uptake shifted from faba bean to wheat with their growth. Moreover, the shift of superiority on N uptake occurred 7–12 days earlier than that of biomass production. Interspecific competition stimulated intercropped wheat to have a much earlier and stronger superiority on instantaneous N uptake compared with isolated wheat. The modeling methodology characterized the temporal dynamics of biomass production and N uptake of intercropped wheat and faba bean in different planting systems, which helps to understand the underlying process of plant interaction for intercropping plants.
机译:间作的小麦(Triticum aestivum L。)/蚕豆(Vicia faba L.)表现出明显的高产和高氮(N)利用效率,但很少评估植物相互作用的动态。本研究的目的是利用逻辑模型研究间作小麦和蚕豆之间竞争性氮获取的时间动态。小麦和蚕豆一起种植或单独种植,盆中氮素供应有限。从14个采样中测得的枝条和根系生物量以及N含量的数据拟合到逻辑模型中,以确定瞬时生长速率和N吸收量。瞬时生物量生产和氮吸收的优势随其生长从蚕豆转移到了小麦。此外,氮吸收优势的转变比生物质生产的优势发生了7-12天。种间竞争刺激间作小麦与瞬时小麦相比,在瞬时氮吸收方面具有更早,更强的优势。该建模方法表征了不同种植系统间作的小麦和蚕豆的生物量生产和氮吸收的时间动态,这有助于了解间作植物的植物相互作用的基本过程。

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