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Growth, grain yield, and water use efficiency of rain-fed spring hybrid millet (Setaria italica) in plastic-mulched and unmulched fields

机译:地膜覆盖和非覆盖地上雨养春季杂交小米(Setaria italica)的生长,谷物产量和水分利用效率

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In order to analyze the effect of plastic mulching on water use efficiency of spring hybrid millet (Setaria italica), field experiments were conducted during the 2012 growing season, at an experimental station located in a semi-arid region of North China. Four treatments were applied: (i) plastic mulching of ridges and furrow sowing (T1), (ii) ridges and furrows without plastic mulch (TO), (iii) flat soil with plastic mulch (A1), and (iv) flat soil with no plastic mulch (A0) (control). Dynamics of soil moisture and soil temperature, together with crop growth, were monitored continuously in both mulched and unmulched fields. Changes in water consumption, soil temperature, and plant growth and development were analyzed. Results indicated that plastic mulching produced a 2-5-day advance in emergence of each growth stage. Soil temperature at 0-15 cm depth increased by 1.25 degrees C and 0.84 degrees C under mulched treatments A1 and T1, respectively, while soil water content at a depth of 0-10 cm increased by 1.42% and 1.29% in the same treatments. Leaf area index and plant height were also significantly higher in plastic-mulched treatments, except in later growth stages. Because plastic mulching improved tiller and ear numbers significantly, grain yield increased by 13.25% and 6.64%, in A1 and T1 treatments, respectively. Water use efficiency at yield levels of plastic-mulched A1 and T1 plots was 24.44% and 3.6% higher than in unmulched flat and furrowed plots, respectively. Plastic mulching significantly reduced water consumption, retained soil water content, and increased soil temperature, to promote spring hybrid millet germination, and increased tiller numbers, and consequently, aboveground dry matter; it eventually significantly improved grain yield and water use efficiency. Plastic film mulching produced greater grain yield, water use efficiency, and benefits when used in flat planting patterns
机译:为了分析地膜覆盖对春季杂交小米(Setaria italica)水分利用效率的影响,在中国北方半干旱地区的一个试验站进行了2012年生长季节的田间试验。进行了四种处理:(i)垄沟耕作塑料覆盖(T1),(ii)没有垄沟的土垄和犁地(TO),(iii)有垄沟的平土(A1),以及(iv)扁土没有塑料覆盖物(A0)(对照)。在覆盖和未覆盖的田地中,均持续监测土壤水分和温度的动态以及作物的生长。分析了耗水量,土壤温度和植物生长发育的变化。结果表明,塑料覆盖在每个生长阶段出现了2-5天的提前。在覆膜处理A1和T1下,0-15厘米深度的土壤温度分别升高了1.25摄氏度和0.84摄氏度,而在相同处理下,在0-10厘米深度的土壤含水量分别增长了1.42%和1.29%。除生育后期外,塑料覆盖处理的叶面积指数和植物高度也显着较高。由于塑料覆盖显着改善了分er和穗数,在A1和T1处理中,谷物产量分别增加了13.25%和6.64%。塑性覆盖的A1和T1地块的产量水平上的水分利用效率分别比未覆盖的平地和犁地高出24.44%和3.6%。地膜覆盖显着减少了耗水量,保持了土壤水分含量,并提高了土壤温度,从而促进了春季杂交小米的发芽,并增加了分numbers数量,进而增加了地上干物质的含量;最终显着提高了谷物产量和水分利用效率。覆盖地膜可提高谷物产量,水分利用效率,并有利于平整种植

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