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Above-Ground and Pot-in-Pot Production Systems for Myrtus communis L.

机译:桃金娘的地上和盆栽生产系统。

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摘要

Pot cultivation has the disadvantage of favoring extreme temperatures in the substrate, which can damage roots. To reduce this problem, the pot-in-pot (PIP) cultivation system has been developed. To determine the influence of PIP systems vs. above-ground pot (AGP) systems in native myrtle ( Myrtus communis L.) production, an experimental field site was established where substrate temperature, soil matric potential (SMP), plant growth, water status, and gas exchange were measured. During the one-year experimental period, the PIP system showed mean monthly maximum substrate temperatures that were 6.3°C to 8.6°C lower than the AGP system, while mean monthly minimum temperatures were between 2°C and 5°C higher. Daily minimum SMP values were more negative in AGP, so the irrigation requirements were lower for the PIP system. In general, differences in gas exchange and water potential between both systems were very slight, which demonstrated the absence of drought conditions as a result of the high irrigation frequency. The AGP system produced greater plant height (16%) and shoot dry weight (11%) than PIP, while the PIP system increased root dry weight (14%), which was presumably responsible for the lower shoot/root index in the PIP cultivated plants. Such behavior is related to substrate temperature differences between both cultivation systems. The PIP system produced plants that were better able to survive two weeks without irrigation at the end of the experiment. These results suggest that the PIP system encourages greater root development and a higher SMP, which enables plants to better survive water stress conditions
机译:盆栽栽培的缺点是底物温度过高,会损坏根部。为减少此问题,已经开发了盆栽(PIP)栽培系统。为了确定PIP系统与地上盆(AGP)系统在本地桃金娘(Myrtus communis L.)生产中的影响,建立了一个实验田间地点,其中基质温度,土壤基质势(SMP),植物生长,水分状况和气体交换进行了测量。在一年的实验期间,PIP系统显示的平均每月最高基板温度比AGP系统低6.3°C至8.6°C,而平均每月最低温度则高出2°C至5°C。每日最低SMP值在AGP中较负,因此PIP系统的灌溉要求较低。通常,两个系统之间的气体交换和水势差异很小,这表明由于灌溉频率高而没有干旱条件。 AGP系统比PIP产生更高的株高(16%)和枝条干重(11%),而PIP系统增加了根部干重(14%),这可能是耕作的PIP中较低的枝条/根系指数的原因。植物。这种行为与两种培养系统之间的底物温度差异有关。 PIP系统生产的植物在实验结束时能够在不灌溉的情况下存活两个星期。这些结果表明,PIP系统鼓励更大的根系发育和更高的SMP,从而使植物能够更好地适应水分胁迫条件

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  • 来源
    《Transactions of the ASABE》 |2009年第1期|p.93-101|共9页
  • 作者单位

    Julián Miralles Crespo, Doctoral Student, Department of Vegetal Production, Agronomy School of the Polytechnic University of Cartagena, Spain;

    Pedro Antonio Nortes Tortosa, Post-Doctoral Student and Scientific Researcher, Department of Food Technology and Agricultural Engineering, Agronomy School of the Polytechnic University of Cartagena, Spain;

    María Jesús Sánchez-Blanco, Scientific Researcher, Department of Irrigation, CEBAS-CSIC, Murcia, Spain;

    Juan José Martínez-Sánchez, Professor, and Sebastián Bañón Arias, Professor, Department of Vegetal Production, Agronomy School of the Polytechnic University of Cartagena, Spain. Corresponding author: Julián Miralles Crespo, Departamento de Producción Vegetal, Escuela Técnica Superior de Ingeniería Agronómica, Universidad Politécnica de Cartagena, Paseo Alfonso XIII No. 48, 30203 Cartagena (Murcia), Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Gas exchange; Leaf water potential; Pot-in-pot; Pot plant; Root temperature; Soil water potential;

    机译:气体交换;叶水势;锅中锅盆栽;根温度土壤水势;

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