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Soil Microbial and Nematode Community Response to the Field Application of Recycled Bio-Based Fertilisers in Irish Grassland

Author

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  • Anna Karpinska

    (enviroCORE, Department of Science and Health, Institute of Technology Carlow, Kilkenny Road, R93 V960 Carlow, Ireland)

  • Demi Ryan

    (enviroCORE, Department of Science and Health, Institute of Technology Carlow, Kilkenny Road, R93 V960 Carlow, Ireland)

  • Kieran Germaine

    (enviroCORE, Department of Science and Health, Institute of Technology Carlow, Kilkenny Road, R93 V960 Carlow, Ireland)

  • David Dowling

    (enviroCORE, Department of Science and Health, Institute of Technology Carlow, Kilkenny Road, R93 V960 Carlow, Ireland)

  • Patrick Forrestal

    (Teagasc–Agriculture and Food Development Authority, Johnstown Castle, Y35 Y521 Wexford, Ireland)

  • Thomais Kakouli-Duarte

    (enviroCORE, Department of Science and Health, Institute of Technology Carlow, Kilkenny Road, R93 V960 Carlow, Ireland)

Abstract

Phosphorus (P) is an essential plant nutrient routinely applied to soils as an agricultural fertiliser, frequently in non-renewable, inorganic forms. Finite reserves and growing demand for agricultural phosphorus mean alternative P resources need to be explored. Recycling-derived fertilisers (RDF) recovered from specific waste streams, using nutrient recovery technologies, have the potential to replace conventional phosphorus fertilisers used in agriculture. Healthy functioning soil microbial and nematode communities are essential players in maintaining soil health and nutrient status. Thus, it is important to assess the responses of these communities to RDF application. We compared soil microbial and nematode communities of conventional fertiliser and RDF treated soil, in the form of struvite and ash, using next-generation sequencing (NGS) technologies in a phosphate-fertiliser replacement value (P-FRV) field trial. Bacterial and nematode communities displayed significant changes under the different P fertilisation treatments, while fungal communities were relatively unaffected. Bacterial diversity was higher among RDF treatments than conventional treatments, while nematode diversity was reduced by one ash treatment. Available potassium and phosphate were the main drivers of bacterial community changes when analysed by canonical correspondence analysis (CCA), while available phosphate alone was the driver of nematode community shifts. Of the RDF, struvite products yielded the highest crop biomass, maintained microbial diversity and were associated with the least disturbed nematode communities.

Suggested Citation

  • Anna Karpinska & Demi Ryan & Kieran Germaine & David Dowling & Patrick Forrestal & Thomais Kakouli-Duarte, 2021. "Soil Microbial and Nematode Community Response to the Field Application of Recycled Bio-Based Fertilisers in Irish Grassland," Sustainability, MDPI, vol. 13(22), pages 1-22, November.
  • Handle: RePEc:gam:jsusta:v:13:y:2021:i:22:p:12342-:d:674915
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    References listed on IDEAS

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    1. Cooper, James & Lombardi, Rachel & Boardman, David & Carliell-Marquet, Cynthia, 2011. "The future distribution and production of global phosphate rock reserves," Resources, Conservation & Recycling, Elsevier, vol. 57(C), pages 78-86.
    2. Paul J. A. Withers & Colin Neal & Helen P. Jarvie & Donnacha G. Doody, 2014. "Agriculture and Eutrophication: Where Do We Go from Here?," Sustainability, MDPI, vol. 6(9), pages 1-23, September.
    3. Muhammad Tayyab & Waqar Islam & Chol Gyu Lee & Ziqin Pang & Farghama Khalil & Sheng Lin & Wenxiong Lin & Hua Zhang, 2019. "Short-Term Effects of Different Organic Amendments on Soil Fungal Composition," Sustainability, MDPI, vol. 11(1), pages 1-13, January.
    4. Shamina Imran Pathan & Silvia Scibetta & Chiara Grassi & Giacomo Pietramellara & Simone Orlandini & Maria Teresa Ceccherini & Marco Napoli, 2020. "Response of Soil Bacterial Community to Application of Organic and Inorganic Phosphate Based Fertilizers under Vicia faba L. Cultivation at Two Different Phenological Stages," Sustainability, MDPI, vol. 12(22), pages 1-20, November.
    5. Johan Hoogen & Stefan Geisen & Devin Routh & Howard Ferris & Walter Traunspurger & David A. Wardle & Ron G. M. Goede & Byron J. Adams & Wasim Ahmad & Walter S. Andriuzzi & Richard D. Bardgett & Michae, 2019. "Soil nematode abundance and functional group composition at a global scale," Nature, Nature, vol. 572(7768), pages 194-198, August.
    6. M. C. Ockenden & M. J. Hollaway & K. J. Beven & A. L. Collins & R. Evans & P. D. Falloon & K. J. Forber & K. M. Hiscock & R. Kahana & C. J. A. Macleod & W. Tych & M. L. Villamizar & C. Wearing & P. J., 2017. "Major agricultural changes required to mitigate phosphorus losses under climate change," Nature Communications, Nature, vol. 8(1), pages 1-9, December.
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