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首页> 外文期刊>HortTechnology >Reduced Root-zone Phosphorus Concentration Decreases Iron Chlorosis in Maize in Soilless Substrates
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Reduced Root-zone Phosphorus Concentration Decreases Iron Chlorosis in Maize in Soilless Substrates

机译:降低的根区磷浓度降低了无土底物中玉米的铁萎黄

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摘要

Maize (Zea mays) is increasingly grown in controlled environments to facilitate phenotypic analysis. Even with ample chelated iron (Fe), maize often develops interveinal chlorosis in soilless substrates or hydroponics because of inadequate bioavailable Fe in the plant. We hypothesized that the excessive phosphorus (P) in standard greenhouse fertigation solutions would accentuate the chlorosis. Here, we report that reducing the P concentration from 0.7 to 0.07 mmol.L-1 (22 to 2 mg.L-1) provided adequate P for rapid growth and increased chlorophyll concentration from 263 to 380 mu mol.m(-2). Restricted root-zones in containers require frequent watering and are often watered to excess, which flushes the root-zone with a high P solution. In a separate study, minimizing the leaching fraction increased leaf chlorophyll concentration from 123 to 508 mu mol.m(-2). The use of a ceramic substrate typically improves the green leaf color of maize plants. Consistent with this observation, we found no effect of high P concentration in the irrigation solution on growth or chlorophyll density in ceramic substrates because it strongly absorbs P from solution. These findings can significantly improve maize growth and nutrition in controlled environments.
机译:玉米(Zea Mays)越来越多地生长在受控环境中以促进表型分析。即使有充足的螯合铁(Fe),玉米也经常在植物中生物可利用的Fe不足,玉米常常在无土底物或水培中发育间萎缩。我们假设标准温室灌溉解决方案中过量的磷(P)突出氯化。在这里,我们报告将P浓度从0.7〜0.07mmol.L-1(22至2mg.L-1)提供足够的P,以便快速生长,增加叶绿素浓度从263到380 mo mol.m(-2) 。容器中的限制根部区域需要频繁浇水,并且通常浇水至过量,用高p溶液冲洗根区。在一个单独的研究中,最小化浸出部分增加的叶片叶绿素浓度从123-508 mo mol.m(-2)。使用陶瓷衬底通常改善玉米植物的绿叶颜色。与该观察结果一致,我们发现在陶瓷基材中的生长或叶绿素密度上的灌溉溶液中没有高p浓度的影响,因为它强烈吸收来自溶液的P.这些发现可以显着提高受控环境中的玉米生长和营养。

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