Sostenibilidad de los cultivos subtropicalesclaves para el manejo del suelo, el uso agrícola y la Ordenación del Territorio

  1. Rodrigo-Comino, Jesús 1
  2. Caballero-Calvo, Andrés 1
  3. Salvati, Luca 2
  4. Senciales-González, José María 3
  1. 1 Universidad de Granada
    info

    Universidad de Granada

    Granada, España

    ROR https://ror.org/04njjy449

  2. 2 University of Macerata
    info

    University of Macerata

    Macerata, Italia

    ROR https://ror.org/0001fmy77

  3. 3 Universidad de Málaga
    info

    Universidad de Málaga

    Málaga, España

    ROR https://ror.org/036b2ww28

Zeitschrift:
Cuadernos geográficos de la Universidad de Granada

ISSN: 0210-5462 2340-0129

Datum der Publikation: 2022

Ausgabe: 61

Nummer: 1

Seiten: 150-167

Art: Artikel

DOI: 10.30827/CUADGEO.V61I1.22284 DIALNET GOOGLE SCHOLAR lock_openDialnet editor

Andere Publikationen in: Cuadernos geográficos de la Universidad de Granada

Zusammenfassung

Soil management is a key issue for the correct conservation of the land, which allows us to guarantee the care of the environment and guarantee the food security of the population. However, unsustainable management due to the use of herbicides, tillage and intensification of plantations are difficulting this task. On the southern coast of the Iberian Peninsula, in the provinces of Malaga, Granada and Almería, the introduction of subtropical crops as a replacement for other traditional species (olive groves, grapevines and almonds) is generating a destabilization of the soil, to date little studied. Therefore, the main goal of this research is to carry out an exhaustive study of soil conditions using soil profiles and descriptions together with soil analysis, considering an experimental plot in the Guadalhorce Valley (Malaga) as the study area with avocado, mango and mandarin crops. The results show how the degradation of the soil profile in all its horizons and properties after unsustainable management is intense. This will affect the quality of production and productivity. Therefore, degradation control measures are necessary, not only at the parcel level, but also at the regional level so that this problem does not spread to a larger scale in the territory.

Bibliographische Referenzen

  • Anken, T., Weisskopf, P., Zihlmann, U., Forrer, H., Jansa, J., & Perhacova, K. (2004). Long-term tillage system effects under moist cool conditions in Switzerland. Soil & Tillage Research, 78, 171-183.
  • Bakker, M. M., Govers, G., van Doorn, A., Quetier, F., Chouvardas, D., & Rounsevell, M. (2008). The response of soil erosion and sediment export to land-use change in four areas of Europe: The importance of landscape pattern. Geomorphology, 98(3-4), 213-226.
  • Bayat, F., Monfared, A. B., Jahansooz, M. R., Esparza, E. T., Keshavarzi, A., Morera, A. G., ... & Cerda, A. (2019). Analyzing long-term soil erosion in a ridge-shaped persimmon plantation in eastern Spain by means of ISUM measurements. Catena, 183, 104176.
  • Bonilla, N., Gutiérrez-Barranquero, J. A., Vicente, A. D., & Cazorla, F. M. (2012). Enhancing Soil Quality and Plant Health Through Suppressive Organic Amendments. Diversity, 4(4), 475-491. https://doi.org/10.3390/d4040475
  • Casermeiro, M. A., Molina, J. A., De la Cruz Caravaca, M. T., J.H., H. C., Hernando Massanet, M. I., & Moreno, P. S. (2003). Influence of scrubs on runoff and sediment loss in soils of Mediterranean climate. Catena, 57, 91-107.
  • Consejería de Agricultura, Pesca y Desarrollo Rural (2015) El sector de los cultivos subtropicales en Andalucía. Online: https://www.juntadeandalucia.es/export/drupaljda/estudios_informes/ 16/12/Sector%20subtropicales%20en%20Andalucia.pdf
  • Cramer, V. A., Hobbs, R. J., & Standish, R. J. (2008). What’s new about old fields? Land abandonment and ecosystem assembly. Trends in Ecology & Evolution, 23(2), 104-112.
  • Deng, C., Zhang, G., Liu, Y., Nie, X., Li, Z., Liu, J., & Zhu, D. (2021). Advantages and disadvantages of terracing: A comprehensive review. International Soil and Water Conservation Research, 9(3), 344-359. https://doi.org/10.1016/j.iswcr.2021.03.002
  • Durán Zuazo, V. H., Aguilar Ruiz, J., Martínez Raya, A., & Franco Tarifa, D. (2005). Impact of erosion in the taluses of subtropical orchard terraces. Agriculture Ecosystems & Environment, 107, 199-210.
  • Durán, V. H., Rodríguez, C. R., Martín, F. J., & Franco, D. (2007). Valoración del impacto de la implantación de terrazas de cultivo en la costa granadina (SE España). Actes de les Jornades sobre Terrasses i Prevenció de Riscos Naturals, 125-130.
  • FAO. (2017). Voluntary Guidelines for Sustainable Soil Management. Food and Agriculture Organization of the United Nations.
  • Incerti, G., Bonanomi, G., Giannino, F., Rutigliano, F. A., Piermatteo, D., Castaldi, S., De Marco, A., Fierro, A., Fioretto, A., Maggi, O., Papa, S., Persiani, A. M., Feoli, E., Virzo De Santo, A., & Mazzoleni, S. (2011). Litter decomposition in Mediterranean ecosystems: Modelling the controlling role of climatic conditions and litter quality. Applied Soil Ecology, 49, 148-157. https://doi.org/10.1016/j.apsoil.2011.06.004
  • IUSS Working Group WRB. (2014). World Reference Base for Soil Resources 2014. FAO.
  • Jianjun, W., Quansheng, L., & Lijiao, Y. (2017). Effect of intercropping on soil erosion in young citrus plantation—A simulation study. Chinese Journal of Applied Ecology, 8(2), 143-146.
  • Lal, R. (2009). Soil degradation as a reason for inadequate human nutrition. Food Security, 1(1), 45-57. https://doi.org/10.1007/s12571-009-0009-z
  • Martínez-Casasnovas, J. A., & Ramos, M. C. (2006). The cost of soil erosion in vineyard fields in the Penedès–Anoia Region (NE Spain). CATENA, 68(2–3), 194-199. https://doi.org/10.1016/j.catena.2006.04.007
  • Martínez-Valderrama, J., Ibáñez, J., Del Barrio, G., Sanjuán, M. E., Alcalá, F. J., Martínez-Vicente, S., Ruiz, A., & Puigdefábregas, J. (2016). Present and future of desertification in Spain: Implementation of a surveillance system to prevent land degradation. The Science of the Total Environment, 563-564, 169-178. https://doi.org/10.1016/j.scitotenv.2016.04.065
  • Miller, B. A., & Schaetzl, R. J. (2014). The historical role of base maps in soil geography. Geoderma, 230–231, 329-339. https://doi.org/10.1016/j.geoderma.2014.04.020
  • Novara, A., Stallone, G., Cerdà, A., & Gristina, L. (2019). The Effect of Shallow Tillage on Soil Erosion in a Semi-Arid Vineyard. Agronomy 9(5):257. doi: 10.3390/agronomy9050257.
  • Novara, A., Favara, V., Novara, A., Francesca, N., Santangelo, T., Columba, P., Chironi, S., Ingrassia, M., & Gristina, L. (2020). Soil Carbon Budget Account for the Sustainability Improvement of a Mediterranean Vineyard Area. Agronomy 10(3):336. doi: 10.3390/agronomy10030336.
  • Novara, A., Cerda, A., Barone, E., & Gristina, L. (2021). Cover Crop Management and Water Conservation in Vineyard and Olive Orchards. Soil and Tillage Research 208:104896. doi: 10.1016/j.still.2020.104896.
  • Panagos, P., Borrelli, P., & Robinson, D. (2020). FAO calls for actions to reduce global soil erosion. Mitigation and Adaptation Strategies for Global Change, 25(5), 789-790. https://doi.org/10.1007/s11027-019-09892-3
  • Panagos, P., & Katsoyiannis, A. (2019). Soil erosion modelling: The new challenges as the result of policy developments in Europe. Environmental Research, 172(February), 470-474. https://doi.org/10.1016/j.envres.2019.02.043
  • Panagos, P., Borrelli, P., Meusburger, K., van der Zanden, E., Poesen, J., & Alewell, C. (2015). Modelling the Effect of Support Practices (P-Factor) on the Reduction of Soil Erosion by Water at European Scale. Environmental Science & Policy 51:23-34. doi: 10.1016/j.envsci.2015.03.012
  • Papiernik, S. K., Lindstrom, M. J., Schumacher, T. E., Schumacher, J. A., Malo, D. D., & Lobb, D. A. (2007). Characterization of soil profiles in a landscape affected by long-term tillage. Soil and Tillage Research, 93(2), 335-345. https://doi.org/10.1016/j.still.2006.05.007
  • Pleguezuelo, C. R. R., Zuazo, V. H. D., Fernández, J. L. M., & Tarifa, D. F. (2011). Descomposición de hojarasca y reciclado del nitrógeno de frutales tropicales y subtropicales en terrazas de cultivo en la costa de Granada (SE España). Comunicata Scientiae, 2(1), 42-48.
  • Rodrigo‐Comino, J., Keshavarzi, A., & Senciales‐González, J. M. (2021). Evaluating soil quality status of fluvisols at the regional scale: A multidisciplinary approach crossing multiple variables. River Research and Applications.
  • Rodrigo-Comino, J., Senciales González, J. M., & González Moreno, J. M. (2014). La necesidad de considerar los riesgos climáticos en la introducción de cultivos tropicales en latitudes medias. El mango en el valle del Guadalhorce (Málaga). Investigaciones Geográficas, 62, 127-141. https://doi.org/10.14198/INGEO2014.62.09
  • Rodrigo-Comino, J., Senciales, J. M., Cerdà, A., & Brevik, E. C. (2018). The multidisciplinary origin of soil geography: A review. Earth-Science Reviews, 177(Supplement C), 114-123. https://doi.org/10.1016/j.earscirev.2017.11.008
  • Salvati, L. (2013). Land degradation, rural poverty and the socioeconomic context in the mediterranean region: A brief commentary. Current Politics & Economics of Europe, 24.
  • Senciales González, J. M., & Ruiz Sinoga, J. D. (2013). Análisis espacio-temporal de las lluvias torrenciales en la ciudad de Málaga. Boletín de la Asociación de Geógrafos Españoles, 61, 7-24.
  • Shi, L., Feng, W., Xu, J., & Kuzyakov, Y. (2018). Agroforestry systems: Meta-analysis of soil carbon stocks, sequestration processes, and future potentials. Land Degradation & Development, 29(11), 3886-3897. https://doi.org/10.1002/ldr.3136
  • Sims, N. C., England, J. R., Newnham, G. J., Alexander, S., Green, C., Minelli, S., & Held, A. (2019). Developing good practice guidance for estimating land degradation in the context of the United Nations Sustainable Development Goals. Environmental Science and Policy, 92, 349-355. https://doi.org/10.1016/j.envsci.2018.10.014
  • Smith, P., Keesstra, S. D., Silver, W. L., & Adhya, T. K. (2021). The role of soils in delivering Nature’s Contributions to People. Philosophical Transactions of the Royal Society B. https://doi.org/10.1098/rstb.2020.0169
  • Taguas, E. V., Guzmán, E., Guzmán, G., Vanwalleghem, T., & Gómez, J. A. (2015). Characteristics and importance of rill and gully erosion: A case study in a small catchment of a marginal olive grove. Cuadernos de Investigación Geográfica, 41(1), 107-126. https://doi.org/10.18172/cig.2644
  • Telak, L. J., Dugan, I., & Bogunovic, I. (2021). Soil Management and Slope Impacts on Soil Properties, Hydrological Response, and Erosion in Hazelnut Orchard. Soil Systems, 5(1), 5. https://doi.org/10.3390/soilsystems5010005
  • Verheijen, F. G. A., Jones, R. J. A., Rickson, R. J., & Smith, C. J. (2009). Tolerable versus actual soil erosion rates in Europe. Earth-Science Reviews, 94(1–4), 23-38. https://doi.org/10.1016/j.earscirev.2009.02.003
  • Wei, W., Chen, D., Wang, L., Daryanto, S., Chen, L., Yu, Y., Lu, Y., Sun, G., & Feng, T. (2016). Global synthesis of the classifications, distributions, benefits and issues of terracing. Earth-Science Reviews, 159, 388-403. https://doi.org/10.1016/j.earscirev.2016.06.010