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Cotton Water Use Efficiency under Two Different Deficit Irrigation Scheduling Methods

机译:两种亏缺灌溉制度下的棉花水分利用效率。

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Declines in Ogallala aquifer levels used for irrigation has prompted research to identify methods for optimizing water use efficiency (WUE) of cotton (Gossypium hirsutum L). In this experiment, conducted at Lubbock, TX, USA in 2014, our objective was to test two canopy temperature based stress indices, each at two different irrigation trigger set points: the Stress Time (ST) method with irrigation triggers set at 5.5 (ST_5.5) and 8.5 h (ST_8.5) and the Crop Water Stress Index (CWSI) method with irrigation triggers set at 0.3 (CWSI_0.3) and 0.6 (CWSI_0.6). When these irrigation triggers were exceeded on a given day, the crop was deficit irrigated with 5 mm of water via subsurface drip tape. Also included in the experimental design were a well-watered (WW) control irrigated at 110% of potential evapotranspiration and a dry land (DL) treatment that relied on rainfall only. Seasonal crop water use ranged from 353 to 625 mm across these six treatments. As expected, cotton lint yield increased with increasing crop water use but lint yield WUE displayed asignificant (p ≤ 0.05) peak near 3.6 to 3.7 kg ha−1 mm−1 for the ST_5.5 and CWSI_0.3 treatments, respectively. Our results suggest that WUE may be optimized in cotton with less water than that needed for maximum lint yield.
机译:用于灌溉的奥加拉拉(Ogallala)含水层水平的下降促使人们进行研究,以确定可优化棉花(陆地棉L)用水效率(WUE)的方法。在2014年于美国得克萨斯州拉伯克市进行的这项实验中,我们的目标是测试两个基于冠层温度的应力指标,每个指标在两个不同的灌溉触发设定点上:应力时间(ST)方法,灌溉触发设定为5.5(ST_5 .5)和8.5 h(ST_8.5),以及将灌溉触发设置为0.3(CWSI_0.3)和0.6(CWSI_0.6)的作物水分胁迫指数(CWSI)方法。如果在某一天超过了这些灌溉触发条件,则通过地下滴灌带对5毫米水进行亏缺灌溉。实验设计中还包括以110%的潜在蒸散量灌溉的灌溉良好的(WW)对照和仅依赖降雨的旱地(DL)处理。在这六种处理中,季节性作物用水量在353至625毫米之间。正如预期的那样,棉花皮棉产量随作物用水量的增加而增加,但皮棉产量WUE在3.6至3.7 kg ha -1 mm -1 附近显示出明显的(p≤0.05)峰值。分别采用ST_5.5和CWSI_0.3处理。我们的结果表明,用水量比最大皮棉产量所需要的水量少时,棉花中的WUE可能得到优化。

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