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首页> 外文期刊>American Journal of Experimental Agriculture >Development and Productivity of Tomato Plants under Water Deficit
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Development and Productivity of Tomato Plants under Water Deficit

机译:缺水条件下番茄的发育与生产力

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Aims: The objective of this study was to evaluate the influence of five soil water tensions on the development of table tomato in the vegetative and productive stages, under greenhouse conditions. Study Design: The experiment was installed in a completely randomized design, in a 5 x 2 subdivided plot scheme, with five replicates. Place and Duration of Study: The experiment was conducted between April and July 2014, in a greenhouse of the Universidade Federal do Espírito Santo, in Alegre, ES, Brazil. Methodology: Tomato seedlings were transplanted to the pots (50 dm3), which were arranged on the ground with a spacing of 1.0 x 0.5 m, between rows and plants, respectively. Irrigation was performed to maintain the matric potential within the range between the field capacity (10 kPa) and the required tension in each plot (15, 25, 40, 55, and 70 kPa). The plants were evaluated for height, number of flowers, root dry mass, dry mass of the aerial part of the plant, fruit yield, fruit mass, productivity, and fruit diameter. Results: At 33 days, the plants presented higher height (98.48 cm) at 31.71 kPa ( R2 = 0.99), while at 90 days the plant height decreased linearly as a function of the increase in soil water tension ( R2 = 0.94). Aerial and root biomass were significantly influenced by water tension ( P 2 = 0.99). Conclusion: The table tomato responded differently to soil water tension at vegetative and productive stages.
机译:目的:本研究的目的是评估温室条件下五种土壤水分张力对营养期和生产期的食用番茄生长的影响。研究设计:实验以完全随机的设计进行安装,采用5 x 2细分图方案,重复五次。研究的地点和时间:该实验于2014年4月至7月之间,在巴西ES阿雷格里联邦圣埃斯皮里图大学温室中进行。方法:将番茄幼苗移植到花盆(50 dm 3 )上,分别排在行和植物之间,花盆之间的间距为1.0 x 0.5 m。进行灌溉以将基质电势保持在田间持水量(10 kPa)和每个图中所需的张力(15、25、40、55和70 kPa)之间的范围内。评价植物的高度,花数,根干重,植物空中部分的干重,果实产量,果实质量,生产力和果实直径。结果:在第33天,植株在31.71 kPa处出现更高的高度(98.48 cm)(R 2 = 0.99),而在90天时,株高随土壤水分的增加呈线性下降张力(R 2 = 0.94)。空气和根系生物量受水分张力的影响显着(P 2 = 0.99)。结论:食用番茄在营养期和生产期对土壤水分张力的反应不同。

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