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Simulation study of the competitive ability of erect, semi-erect, and prostrate cowpea (\u3ci\u3eVigna unguiculata\u3c/i\u3e) genotypes

机译:直立,半直立和匍匐豇豆(\ u3ci \ u3eVigna unguiculata \ u3c / i \ u3e)基因型竞争能力的模拟研究

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摘要

Ecophysiological simulation models provide a quantitative method to predict the effects of management practices, plant characteristics, and environmental factors on crop and weed growth and competition. The INTERCOM interplant competition model was parameterized, calibrated by monoculture data for three cowpea (Vigna unguiculata) genotypes that differed in growth habit, common sunflower (Helianthus annuus) and common purslane (Portulaca oleracea), and used to simulate competition of cowpea cover crops with sunflower or purslane. The simulation results were compared with observations from field competition experiments in 2003 and 2004. INTERCOM more accurately simulated actual field data for the competition of cowpea genotypes and sunflower than companion field experiments for the competition of cowpea and purslane. The validated simulation model of cowpea and sunflower at two densities was used to study the effects of cowpea growth habit on final biomass production of cowpea and sunflower. The model suggested that erect growth habit was more competitive than semi-erect and prostrate growth habit, when cowpea genotypes were grown with sunflower. Cowpea leaf area distribution was important to higher cowpea biomass production, while cowpea height growth was important to reduce sunflower biomass. Our simulation approach is suggested as a method for crop breeders to gauge the likely success of selection for competitive crops before undertaking expensive long-term breeding experiments.
机译:生态生理模拟模型提供了一种定量方法,可以预测管理实践,植物特征和环境因素对作物和杂草生长与竞争的影响。对INTERCOM种间竞争模型进行参数化,并通过对三种生长习惯,普通向日葵(Helianthus annuus)和常见马齿sl(Portulaca oleracea)不同的cow豆(Vigna unguiculata)基因型的单种栽培数据进行校准,并用于模拟with豆覆盖作物与向日葵或马齿.。将模拟结果与2003年和2004年的田间竞争实验的观察结果进行了比较。INTERCOM比simulated田和马齿sl竞争的田间实验更准确地模拟了cow豆基因型和向日葵竞争的实际田间数据。利用验证的两种密度的cow豆和向日葵模拟模型研究study豆生长习性对final豆和向日葵最终生物量生产的影响。该模型表明,当cow豆基因型与向日葵一起生长时,直立的生长习性比半直立和pro的生长习性更具竞争性。豆叶面积分布对提高cow豆生物量产量很重要,而cow豆高度增长对减少向日葵生物量很重要。建议使用我们的模拟方法,作为农作物育种者在进行昂贵的长期育种实验之前评估竞争性作物选择的可能成功的方法。

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