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Using models to assess the value of traits of food legumes from a cropping systems perspective

机译:使用模型从裁剪系统的角度评估食物豆类的特征的价值

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Plant breeders spend considerable time, effort and expense in conceptualizing and selecting for improved plant types. Given the climatic variability and diverse management practices in different regionsto which crops are exposed, different plant typesmay be needed for different agro-ecological zones. By capturing physiological understanding in a predictive framework, crop modelling offers the potential to interpret and predict the performance of individual genotypes in different environments, thus offering a possible decision support role in plant breeding. We propose that, when considering the adaptation of food legumes to the environments in which they are growing, the impact on the whole system should evaluated, including the N economy of the cropping system and impacts on the productivity of associated crops. We present some case studies of the use of static analytical models and simulation to evaluate traits in food legumes, from a cropping systems perspective. In one case study we show thatthe yield difference between determinate and indeterminate soybean types in this semi-arid environment will depend upon interactions between seasonal conditions, flowering date and starting soil water, which models can assist in analysing. Conducting analyses over the climatic record also allows any yield advantage to be assessed against the impact on the riskiness of production. In another study, we highlight the interaction between agronomic management (such as row spacing) and the performance of cowpea genotypes differing in height and leaf posture when grown as intercrops with maize. In a third case study we address the question of the impact of chickpea genotypes differing in potential N fixation on system performance of a chickpea-wheat rotationunder dryland conditions. The results show the trade-off between the gains or losses in chickpea and wheat yields by introducing chickpea with different traits into the rotation. In summary, the case studies are intended to demonstrate that breeding objectives often need to incorporate the impact of altered plant traits beyond the yield of the targeted crop and the interaction of management and climate on the differential performance of genotypes. This is particularly the case for food legume crops which are typically grown as important components of crop rotations.
机译:植物育种者在概念化和选择改进的植物类型方面花费相当多的时间,努力和费用。鉴于不同地区的气候变异性和多样化的管理实践,作物曝光,不同的农业生态区需要不同的植物类型。通过在预测框架中捕获生理学理解,作物建模提供了解释和预测不同环境中单个基因型的性能的潜力,从而在植物育种中提供可能的决策支持作用。我们建议,在考虑对它们的环境中对食物豆类的适应时,应评估对整个系统的影响,包括作物系统的N经济性以及对相关作物的生产率的影响。我们展示了一些案例研究,使用静态分析模型和仿真来评估食品豆类的特征,从种植系统的角度来看。在一个案例研究中,我们表明,在这个半干旱环境中确定和不确定的大豆类型之间的产量差异将取决于季节性条件,开花日期和起始土壤之间的相互作用,该模型可以帮助分析。对气候记录进行分析还允许在对生产风险的影响下进行评估任何产生的优势。在另一项研究中,我们突出了农艺管理(如行间距)与豇豆基因型之间的性能与玉米生长为玉米时的高度和叶片姿势的性能。在第三种案例研究中,我们解决了鸡肝基因型对潜在的玉米氏菌旋转条件的系统性能的影响的影响问题。结果表明,通过将不同的特征引入旋转,通过将鹰嘴豆引入鹰嘴豆和小麦产量之间的收益或损失之间的权衡。总之,案例研究旨在证明育种目标通常需要将改变的植物性状的影响纳入目标作物的产量和管理和气候对基因型的差异性能的互动。尤其是食物豆类作物的情况,通常生长为作物旋转的重要组成部分。

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