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The combined effects of salinity and water stress on the growth and yield quality of tomato

机译:盐度和水分胁迫对番茄生长和产量质量的综合影响

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The effects of two soil salinities (1g/kg and 6g/kg) and two water stress levels (60% and 80% of the field capacity) on growth and yield parameters of Meiguo903 tomato were investigated under greenhouse conditions. A randomized complete block design experiment with three treatments and four replications was conducted. The treatments were defined as: CK (no water stress and no salt stress), T1 (no water stress but salt stress) and T2 (water stress and salt stress). The results show that more water was applied in CK than the other treatments, but T2 saved water by about 10%. Measured growth parameters showed that water stress and salinity affected the height and stem diameter of the plants. In general, T2 had short plants with thin stems, T1 had a little taller and thin stems while CK had tall plants with thick stems. It was found that both salinity and water stress has a significant effect on total marketable yield. T1 reduced the yield by 37% while T2 conditions reduced the yield by about 43%. Comparing T1 and T2 which were subjected to the same saline conditions (but different water stress levels), there is a significant difference on the amount of water used, where T1 is the highest, but there is no significant difference on their yield. These results give the conclusion that, in a saline environment, water stress can save water and produce a yield close to that when full irrigation is applied. Nearly optimum yields can be achieved by proper water stress management in such an environment.
机译:在温室条件下,研究了两种土壤盐水(1G / kg和6g / kg)和两种水分胁迫水平对Meiguo903番茄生长和产量参数的影响(60%和80%)。进行了三种治疗和四种复制的随机完整块设计实验。该处理定义为:CK(无水分应激,没有盐应激),T1(无水分应激,盐胁迫)和T2(水胁迫和盐胁迫)。结果表明,在CK中施加更多的水比其他治疗,但将水储存约10%。测量的生长参数表明,水胁迫和盐度影响了植物的高度和茎直径。通常,T2患有薄茎的短植物,T1有一点较高且薄的茎,而CK具有厚茎的高植物。结果发现,盐度和水分胁迫均对全部营销产量具有显着影响。 T1将产量降低37%,而T2条件降低产量约为43%。比较T1和T2,其经受相同的盐水条件(但不同的水胁迫水平),使用的水量有显着差异,其中T1最高,但它们的产量没有显着差异。这些结果得出结论,在盐水环境中,水胁迫可以节省水并在应用全灌时产生接近的产量。通过这种环境中适当的水分应激管理可以实现几乎最佳产量。

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