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Effect of Biochar and Irrigation on the Interrelationships among Soybean Growth, Root Nodulation, Plant P Uptake, and Soil Nutrients in a Sandy Field

Author

Listed:
  • Hua Ma

    (Leibniz Centre for Agricultural Landscape Research (ZALF), 15374 Müncheberg, Germany
    Faculty of Life Sciences, Humboldt-University of Berlin, 10115 Berlin, Germany)

  • Dilfuza Egamberdieva

    (Leibniz Centre for Agricultural Landscape Research (ZALF), 15374 Müncheberg, Germany
    CAS Key Laboratory of Biogeography and Bioresource in Arid Land, Xinjiang Institute of Ecology and Geography, Urumqi 830011, China)

  • Stephan Wirth

    (Leibniz Centre for Agricultural Landscape Research (ZALF), 15374 Müncheberg, Germany)

  • Qirui Li

    (Leibniz Centre for Agricultural Landscape Research (ZALF), 15374 Müncheberg, Germany
    Leibniz Institute of Ecological Urban and Regional Development, 01217 Dresden, Germany
    Faculty of Environmental Sciences, Technical University of Dresden (TUD), 01062 Dresden, Germany)

  • Richard Ansong Omari

    (Leibniz Centre for Agricultural Landscape Research (ZALF), 15374 Müncheberg, Germany
    Faculty of Life Sciences, Humboldt-University of Berlin, 10115 Berlin, Germany)

  • Mudan Hou

    (Department of Soil Science and Plant Nutrition, College of Grassland, Resources and Environment, Inner Mongolia Agricultural University, Hohhot 010010, China)

  • Sonoko D. Bellingrath-Kimura

    (Leibniz Centre for Agricultural Landscape Research (ZALF), 15374 Müncheberg, Germany
    Faculty of Life Sciences, Humboldt-University of Berlin, 10115 Berlin, Germany)

Abstract

To investigate the interrelationships among biochar, soil nutrients, and soybean plant growth in more detail, the root nodulation response of soybean ( Glycine max L.) to biochar application was analyzed in a field study. We further examined the biochar effect on soil phosphatase activity to elucidate the relationships among biochar, phosphatase activity, and plant phosphorus uptake. Soybean was planted in a sandy field wherein the biochar and irrigation conditions were considered the two treatment factors. In our result, irrigation increased the pod number and plant height by 20.7% and 11.1%, respectively. Irrigation reduced the shoot and root dry matter content by 67.9% and 75.1%, respectively. The nodule number increased by 37% due to biochar addition under irrigated conditions. The soil carbon concentration was elevated by 13.4% with biochar application under rainfed conditions. Acid phosphomonoesterase (APM) was increased by 21.8% in the biochar-incorporated plots under the irrigated condition. Principal component analysis and redundancy analysis suggested that biochar application enhanced the relationships between the nodule number and soil potassium and magnesium concentrations. The correlation between soil sulfur content and nodule number was eliminated by biochar application. APM activity was associated with higher shoot and root phosphorus content and shoot dry weight after biochar application.

Suggested Citation

  • Hua Ma & Dilfuza Egamberdieva & Stephan Wirth & Qirui Li & Richard Ansong Omari & Mudan Hou & Sonoko D. Bellingrath-Kimura, 2019. "Effect of Biochar and Irrigation on the Interrelationships among Soybean Growth, Root Nodulation, Plant P Uptake, and Soil Nutrients in a Sandy Field," Sustainability, MDPI, vol. 11(23), pages 1-16, November.
  • Handle: RePEc:gam:jsusta:v:11:y:2019:i:23:p:6542-:d:288910
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    Cited by:

    1. Irina Gabriela Cara & Denis Țopa & Ioan Puiu & Gerard Jităreanu, 2022. "Biochar a Promising Strategy for Pesticide-Contaminated Soils," Agriculture, MDPI, vol. 12(10), pages 1-21, September.

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