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Cucumber (Cucumis sativus, L.) water use efficiency (WUE) under plastic mulch and drip irrigation.

机译:地膜覆盖和滴灌条件下黄瓜(Cucumis sativus,L。)的水分利用效率(WUE)。

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摘要

To study the effect of two types of plastic mulch (transparent and black) with drip irrigation on water requirement and Cucumber (Cucumis sativus, L.) yield, in addition to their effect on Maturity time. Trials were carried out at Teezen Research Station, Hama Agricultural Research Center, GCSAR, Syria, during 2009-2010 growing seasons using complete randomized block design with three replicates. Soil characteristics were followed too because they reflect the effects of plastic mulch. Treatments were transparent mulched drip irrigation (DI+TM), black mulched drip irrigation (DI+BM), drip irrigation without mulching (DI) and surface furrow irrigation (SI). The results of the study indicated that (DI+TM) treatment excelled all other treatments at yield and water use efficiency (WUE), where its yield was 63.9 t ha-1, and (WUE) was 0.262 t ha-1 mm-1, while (DI+BM) treatment produced 57.9 t ha-1, with a (WUE) of 0.238 t ha-1 mm-1. However cucumber yield and WUE declined in the remaining treatments of no mulch (DI) and (SI) to reach 44.1 t ha-1 with 0.153 t ha-1 mm-1 and 37.7 t ha-1 with 0.056 t ha-1 mm-1, respectively. The results showed that (DI+TM) treatment gave the highest soil temperature and moisture during both of the seasons in comparison to (DI+BM). This enhanced its vegetative growth and almost doubled its productivity compared to the SI treatment.
机译:研究滴灌两种塑料覆盖物(透明和黑色)对水分需求和黄瓜(Cucumis sativus,L.)产量的影响,以及它们对成熟时间的影响。在2009-2010年生长季节期间,使用完整的随机区组设计(一式三份)在叙利亚GCSAR的哈马农业研究中心Teezen研究站进行了试验。也遵循土壤特性,因为它们反映了塑料覆盖的影响。处理方法为透明覆盖式滴灌(DI + TM),黑色覆盖式滴灌(DI + BM),不覆盖式滴灌(DI)和表面犁沟灌溉(SI)。研究结果表明(DI + TM)处理在产量和水分利用效率(WUE)方面优于其他所有处理,其产量为63.9 t ha -1 ,而(WUE)为0.262 t ha -1 mm -1 ,而(DI + BM)处理产生57.9 t ha -1 ,(WUE)为0.238 t ha -1 毫米 -1 。然而,在其余的无覆盖(DI)和(SI)处理中,黄瓜产量和水分利用效率均下降至44.1 t ha -1 和0.153 t ha -1 mm -1 和37.7 t ha -1 分别为0.056 t ha -1 mm -1 。结果表明,与(DI + BM)相比,(DI + TM)处理在两个季节都提供了最高的土壤温度和水分。与SI处理相比,这增强了其营养生长,并使生产力几乎提高了一倍。

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