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Complex rice systems to improve rice yield and yield stability in the face of variable weather conditions

机译:复杂的水稻系统可在天气变化的情况下提高水稻产量和产量稳定性

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摘要

Extreme weather events and pest outbreaks decrease rice yields and increase their variability, presenting challenges for the agricultural agenda to increase rice productivity and yield stability in Asia. The integration of azolla, fish and ducks has been shown to create robust systems that maintain high yields under heavy rainfall, but no clear evidence exists that rice yields in these systems are stable across locations and throughout time under divergent weather conditions. We show that the introduction of additional elements into the rice cropping system enhanced the adaptive capacity to extreme weather events across four locations and three cropping cycles. The complex system showed both static and dynamic stability, and had the highest reliability index, thereby outperforming the conventional and organic monoculture systems. The complex rice system design provides a promising example for resilience towards the impacts of climate change on rice production and for safeguarding food security in Asia and beyond.
机译:极端天气事件和病虫害暴发降低了稻米产量并增加了其变异性,这对提高亚洲稻米生产力和产量稳定性的农业议程提出了挑战。偶氮,鱼和鸭的整合已显示出可创建强大的系统,在强降雨条件下保持高产,但没有明确证据表明这些系统中的稻米产量在各地和不同天气条件下始终稳定。我们表明,将附加元素引入水稻种植系统可以增强对四个地点和三个种植周期的极端天气事件的适应能力。该复杂系统既显示静态稳定性,也显示动态稳定性,并具有最高的可靠性指标,从而胜过常规和有机单一栽培系统。复杂的稻米系统设计为抗御气候变化对稻米生产的影响以及维护亚洲及其他地区的粮食安全提供了一个有希望的例子。

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