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Frost damage on grain number in wheat at different spike developmental stages and its modelling

机译:不同尖峰发育阶段的小麦谷物数的霜损伤及其造型

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Frosts may damage wheat (Triticum aestivum L.) spikes and severely reduce their yield. The objective of this study was (i) to quantify the level of susceptibility to frost at different spike developmental stages, and (ii) to develop a theoretical-empirical model to estimate successive frosts damage on grain number (GN) at different spike and crop developmental stages based on the meteorological characteristics of the event. Three experiments were performed under field conditions at Balcarce (Argentina), using Klein Roble and Floripan 100 spring cultivars, sown on seven dates, The proportion of aborted grains in spikes was evaluated at different spike developmental stages, from stem elongation to the beginning of grain filling, with all spikes receiving the same natural frosts. The higher the frost severity (defined as the number of hours with temperatures & -1.5 degrees C and the minimum temperature reached), the higher the damage on GN (28 to 88%, depending on the experiment). The duration of the period in which maximum damage on GN was registered was variable, but it always included anthesis. Based on collected data, a theoretical-empirical model to estimate successive frosts damage on GN at different spike or crop developmental stages was proposed and validated. This study provides a detailed quantification of the damage caused by natural frosts under field conditions and it allows to achieve a better estimation of frost effect on crop.
机译:霜冻可能会损害小麦(Triticum aestivum L.)尖峰并严重降低产量。本研究的目的是(i)量化不同尖峰发展阶段的霜冻水平,(ii)制定理论实证模型,以估计不同尖峰和作物的谷物数(GN)的连续霜冻损伤基于事件的气象特征的发展阶段。在Balcarce(阿根廷)的现场条件下进行了三个实验,使用Klein Roble和Floripan 100春季品种,在七个日期上播种,在不同的尖峰发育阶段评估了尖峰中所得粒子的比例,从茎伸长到谷物的开始填充,所有尖峰都接受相同的自然霜冻。霜冻严重程度越高(定义为温度& -1.5摄氏度和最低温度的小时数,达到的最小温度),GN的损伤越高(28%至88%,具体取决于实验)。注册GN的最大损伤的时段的持续时间是可变的,但它总是包括波动。基于收集的数据,提出了一种理论 - 实证模型,以估算不同尖峰或作物发展阶段的GN对GN的连续霜冻损伤。本研究规定了在现场条件下由天然霜造成的损害的详细量化,并且允许更好地估计对作物的霜冻效果。

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