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首页> 外文期刊>Agricultural Water Management >Ridge-furrow mulching system regulates hydrothermal conditions to promote maize yield and efficient water use in rainfed farming area
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Ridge-furrow mulching system regulates hydrothermal conditions to promote maize yield and efficient water use in rainfed farming area

机译:Ridge-Furrow Mulching System调节水热条件,以促进雨水养殖区玉米产量和有效的用水

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The ridge-furrow mulching system with plastic film (RFMS) is considered an effective strategy to improve grain yield and has been widely used in arid and semi-arid rainfed agricultural areas. However, the key mechanism by which RFMS increases yield and efficiency under different hydrothermal conditions remains unclear. Understanding this mechanism and the interaction between different RFMSs and hydrothermal conditions could provide a practical reference for optimizing cultivation. We aimed to investigate the yield increase potential of different planting systems under the same hydrothermal conditions and evaluate the effects of RFMS treatments on drought resistance and yield increase under different hydrothermal conditions. The following planting treatments were carried out in ridge-furrow prepared fields under seven different hydrothermal conditions in a representative rainfed agricultural area for four consecutive years: 1) ridge-furrow mulching system with complete coverage (RC); 2) ridge-furrow mulching system with ridge coverage (RR); and 3) planting without mulching (control treatment; CT). Compared with CT, RFMS improved field hydrothermal conditions and reduced evapotranspiration of crops. In more hydrothermally limited areas (precipitation, 196-320 mm; temperature,< 18 degrees C), the grain yield and water-use efficiency (WUE) with RC significantly increased by 49.95 % and 57.12 % compared with that of CT, respectively. However, RR and RC had no significant difference in grain yield and WUE in areas less hydrothermally limited (precipitation, 320-460 mm; temperature, 18.6 degrees C-23.6 degrees C) but increased by 13.51 % and 22.19 % compared with that of CT. Additionally, RFMS improved economic benefits, especially in hydrothermally limited areas, with RC increasing benefits by 142.64 %-200.84 % compared with that of CT. Therefore, RC can be used as the optimal technique to overcome simultaneous drought and cold weather in rainfed agricultural areas under hydrothermally limited conditions.
机译:具有塑料薄膜(RFMS)的脊沟覆盖系统被认为是提高粮食产量的有效策略,并且已广泛用于干旱和半干旱雨量农业领域。然而,RFMS在不同水热条件下提高产量和效率的关键机制仍不清楚。理解这种机制和不同RFMS和水热条件之间的相互作用可以提供优化栽培的实用参考。我们的旨在调查在相同的水热条件下不同种植系统的产量增加潜力,并评估RFMS治疗对不同水热条件下的抗旱性和产量增加的影响。下列种植治疗是在七种不同的水热条件下在连续四年的七种不同的水热条件下进行的田园覆盆子条件下进行:1)Ridge-Furrow Mulching系统,具有完全覆盖(RC); 2)带脊覆盖率的脊沟覆盖系统(RR); 3)在没有覆盖的情况下种植(控制治疗; CT)。与CT相比,RFMS改善了野外水热条件并降低了作物的蒸发。在更多的水热有限的区域(沉淀,196-320mm;温度,<18℃),谷物产量和rc的水使用效率(WUE)分别与CT的液体显着增加49.95%和57.12%。然而,RR和RC在水温限制(沉淀,320-460mm;温度下,18.6摄氏度),但与CT相比增加13.51%和22.19%,对地区的粮食产量和电影较低的谷物产量和电力差异无显着差异。此外,RFMS改善了经济效益,特别是在水热有限的区域中,RC增加了142.64%-200.84%的益处,而CT的效果增加142.64%-200.84%。因此,RC可作为在水热有限条件下克服雨量农业领域同时干旱和寒冷天气的最佳技术。

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