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Optimal coupling combinations between the irrigation rate and glycinebetaine levels for improving yield and water use efficiency of drip-irrigated maize grown under arid conditions.

机译:灌溉速率和甘氨酸甜菜碱水平之间的最佳耦合组合可提高在干旱条件下种植的滴灌玉米的产量和水分利用效率。

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This study was conducted over 2 years (2011 and 2012) to determine the optimal combinations between the irrigation rate and glycinebetaine (GB) levels in order to maximise yield and irrigation water use efficiency (IWUE) for drip-irrigated maize. A field experiment was performed using a randomised complete block split plot design with three drip irrigation rates (I1: 1.00, I2: 0.80, and I3: 0.60 of the estimated evapotranspiration, ET) and five GB levels (GB0, GB25, GB50, GB75 and GB100, GB levels at 0, 25, 50, 75 and 100 mM, respectively) as the main and split plots, respectively. We found that although exogenously applied GB appeared to have different effects on yield variables and IWUE, these differences were dependent on the level of GB within the same irrigation rate. The grain yield and yield component values for I2GB50 treatment were occasionally comparable to those obtained for I1GB0 treatment, and the values for both treatments were higher than those obtained for I1GB75 or I1GB100. I3GB50 or I3GB100 had grain yield and yield component values similar to those obtained for I2GB0 and I2GB100. The highest value for IWUE was found for I2GB50 and this value was similar to that obtained with I3GB75, while the lowest values were obtained for I1GB75 or I1GB100. Medium GB levels were effective under I2 and I3 treatments to obtain the lowest value for seasonal yield response factors (ky). The production functions of yield versus GB levels were second-order relationship for all drip irrigation rates. In conclusion, exogenous application of GB has the potential to improve yield and IWUE under limited water application, while a threshold level of GB was required for a positive effect.
机译:这项研究历时2年(2011年和2012年),以确定灌溉速率和甘氨酸甜菜碱(GB)水平之间的最佳组合,以最大程度提高滴灌玉米的产量和灌溉用水效率(IWUE)。使用随机完整块分割图设计进行田间试验,该设计采用三种滴灌速率(I 1 :1.00,I 2 :0.80和I 3 < / sub>:估计的蒸散量(ET)的0.60和五个GB的水平(GB 0 ,GB 25 ,GB 50 ,GB 75 和GB 100 ,GB分别为0、25、50、75和100 mM)作为主要图和分割图。我们发现,尽管外源施用GB对产量变量和IWUE似乎有不同的影响,但这些差异取决于相同灌溉速率下GB的水平。 I 2 GB 50 处理的籽粒产量和产量构成要素值有时可与I 1 GB 0 处理,两种处理的值均高于I 1 GB 75 或I 1 GB 100 < / sub>。 I 3 GB 50 或I 3 GB 100 的谷物产量和产量成分值与I 2 GB 0 和I 2 GB 100 。发现I 2 GB 50 的IWUE最高值,该值类似于I 3 GB 75 < / sub>,而I 1 GB 75 或I 1 GB 100 的最低值。在I 2 和I 3 处理下,中等GB水平有效,从而获得了季节性产量响应因子(k y )的最小值。对于所有滴灌速率,产量对GB水平的生产函数都是二阶关系。总之,在有限的水量下,外源施用GB有提高产量和IWUE的潜力,而GB的阈值水平则需要正面作用。

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