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Modelling seasonality of dry matter partitioning and root maintenance respiration in lucerne (Medicago sativa L.) crops

机译:模拟卢塞恩(Medicago sativa L.)农作物干物质分配和根系维持呼吸的季节性

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In lucerne, a dynamic fraction of total daily assimilates is allocated to the root system and the amount partitioned differs in response to seasonal environmental stimuli. This study proposes a simple framework to quantify this dynamic for inclusion in lucerne simulation models. The framework incorporates recent findings on radiation-use efficiency, radiation interception, and dry matter (DM) partitioning to shoots and roots in response to environmental factors. Results showed that the root mean squared deviation (RMSD) between observed and simulated values was 20% of the mean for shoot biomass and 24% for leaf area index. However, there was systematic bias (73% of RMSD) between observed and simulated root biomass (RMSD=35%). This was caused by the initial assumption of a constant rate for root maintenance respiration (Rm) of 0.015g/g.day in the model calculations. Sensitivity analysis, with constant Rm values that ranged from 0.005 to 0.030g/g.day, failed to improve the prediction of root biomass. The modelling exercise suggested the existence of a systematic pattern of change in Rm from 0.035g/g.day in summer to <0.005g/g.day in winter. When this seasonality was incorporated, the accuracy of root DM simulations improved (RMSD=14%). The possible existence of a seasonal Rm in lucerne, unveiled by this modelling approach, needs to be validated with an independent dataset.
机译:在卢塞恩,每日总同化物的动态部分分配给根系,分配的量随季节环境刺激而变化。这项研究提出了一个简单的框架来量化这种动态,以包括在卢塞恩模拟模型中。该框架结合了有关辐射利用效率,辐射拦截和干物质(DM)分配到芽和根以响应环境因素的最新发现。结果表明,观测值和模拟值之间的均方根偏差(RMSD)为枝条生物量均值的20%,叶面积指数为24%。但是,观察到的根生物量与根系生物量之间存在系统偏差(RMSD的73%)(RMSD = 35%)。这是由于在模型计算中最初假设根维持呼吸(Rm)的恒定速率为0.015g / g.day而引起的。 Rm值恒定在0.005至0.030g / g.day之间的敏感性分析无法改善对根生物量的预测。建模练习表明,Rm存在系统的变化模式,从夏季的0.035g / g.day到冬季的<0.005g / g.day。纳入此季节性因素后,根DM仿真的准确性得到了提高(RMSD = 14%)。这种建模方法揭示了卢塞恩季节性Rm的可能存在,需要使用独立的数据集进行验证。

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