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Landscape changes of desertification in arid areas: the case of south-west Algeria

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Abstract

This study aims to monitor the arid Algerian High Plateaus, a key region for pastoral activities which has suffered harsh and widespread degradation from the eighties. This area is not sufficiently known by the international scientific community. For this purpose, we considered phytoecological inventories and thematic maps that have been carried out during 30 years. Available data for the study are vegetation maps derived from aerial photographs (1975–1978) and from satellite imagery (2006). The parameters considered include vegetation, flora, and soil surface properties. The study area is part of the ROSELT/OSS (ROSELT: Réseau d‘Observatoires de Surveillance Ecologique à Long Terme (Long Term Ecological Monitoring Observatories Network); OSS: Observatory of the Sahara and the Sahel) network observatory (OSS 2008). To assess land degradation, we used landscape ecology parameters. These include the number and surface area of vegetation units, synthesized by the large patch index and the Shannon landscape diversity index. All parameters reflect an increase in landscape heterogeneity. The largest decline is observed for Stipa tenacissima vegetation units constituting 2/3 of the landscape in 1978 and occupied just 1/10 in 2006. Vegetation units linked to degradation, such those dominated by Salsola vermiculata, inexistent in 1978, now dominate the steppe. Another result of the ongoing landscape degradation on the plateaus between 1975 and 2006 is the decrease of vegetation cover. In 1978, 1/3 of rangelands only had low vegetation covers, inferior to 15%. Presently 9/10 present the same class cover. This can be explained by severe spells of drought combined by an exponential rise of livestock during the last 30 years. This has in turn greatly undermined the fodder potential of the steppe. Results suggest that the “greening-up” described by several authors in the Sahel over the last 40 years is not observed in the Algerian, nor in the North African steppes. On the contrary, the desertification is still ongoing and the threshold of irreversibility seems to be imminent.

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References

  • Achoubi, L., Bouzenoune, A., & Mediouni, K. (1979). Carte de l’occupation de l’Algérie. Feuille de Méchéria. Algiers: Centre de Recherches sur les Ressources Biologiques et Terrestres et Office National de la Recherche Scientifique.

    Google Scholar 

  • Ahern, J. (2001). Spatial concepts, planning strategies and future scenarios: A framework method for integrating landscape ecology and landscape planning. In J. Klopatek, & R. Gardner (Eds.), Landscape ecological analysis: Issues and applications. New York: Springer.

    Google Scholar 

  • Aidoud, A. (1993). North African vegetation populations. In A. Pastor-López, & E. Seva-Román (Eds.), Vegetal cover restoration in Mediterranean ecosystems. Alicante: Instituto de cultura Juan-Gil Albert.

    Google Scholar 

  • Aidoud, A., Aidoud, L., Bouzenoune, A., & Mediouni, K. (1981). Carte de l’occupation de l’Algérie. Feuille El Kreider. Algiers: Centre de Recherches sur les Ressources Biologiques et Terrestres et Office National de la Recherche Scientifique.

    Google Scholar 

  • Aidoud, A., Aidoud, L., & Slimani, H. (1998). Effects of Grazing on soil land desertification in ecological basis of livestock grazing in Mediterranean ecosystems. Grèce: Univ. Thessalonique, DVP Papanastatis workshop.

    Google Scholar 

  • Aidoud, A., Dahmani, M., Djebaili, S., & Khelifi, H. (1983). Essai de synthèse écologique sur la végétation des hautes plaines steppiques. Algiers: Office National de la Recherche Scientifique.

    Google Scholar 

  • Aidoud, A., Le Floc’h, E., & Le Houérou, H. N. (2006). Les steppes arides du nord de l’Afrique. Sécheresse, 17(1–2), 19–30.

    Google Scholar 

  • Aidoud, A., Slimani, H., Aidoud-Lounis, F., & Touffet, J. (1999). Changements édaphiques le long d’un gradient d’intensité de pâturage dans une steppe d’Algérie. Ecologia Mediterranea, 25(2), 163–171.

    Google Scholar 

  • Aidoud, A., & Touffet, J. (1996). La régression de l’alfa (Stipa tenacissima L.), graminée pérenne, un indicateur de désertification des steppes algériennes. Sécheresse, 7, 187–193.

    Google Scholar 

  • Aidoud-Lounis, F. (1997). Le complexe à alfa—Armoise-sparte (Stipa tenacissima L., Artemisia herba-alba Asso, Lygeum spartum L.) des steppes arides d’Algérie. Structure et dynamique des communautés végétales (198 pp.). Doctoral thesis, University of Aix-Marseille III, France.

  • Allington, G. R. H., & Valone, T. J. (2010). Reversal of desertification: The role of physical and chemical soil properties. Journal of Arid Environments, 74(8), 973–977. doi:10.1016/j.jaridenv.2009.12.005.

    Article  Google Scholar 

  • Anyamba, A., & Tucker, C. J. (2005). Analysis of Sahelian vegetation dynamics using NOAA-AVHRR NDVI data from 1981–2003. Journal of Arid Environments, 63, 596–614.

    Article  Google Scholar 

  • Bagnouls, F., & Gaussen, H. (1953). Saison sèche et indice xérothermique. Bulletin Société Histoire Naturelle, 88, 193–239.

    Google Scholar 

  • Baker, W. L. (1989). A review of models of landscape change. Landscape ecology, 2, 111–135.

    Article  Google Scholar 

  • Bantayan, N. C., & Bishop, I. D. (1998). Linking objective and subjective modeling for landuse decision-making. Landscape and Urban Planning, 43, 35–48.

    Article  Google Scholar 

  • Baudry, J., & Burel, F. (1999). Ecologie du paysage. Concepts, méthodes et applications. Paris: Tec et Doc.

    Google Scholar 

  • Benbrahim, K. F., Ismaili, M., Benbrahim, S. F., & Tribak, A. (2004). Problèmes de dégradation de l’environnement par la désertification et la déforestation: Impact du phénomène au Maroc. Sécheresse, 15(4), 307–320.

    Google Scholar 

  • Benhouhou, S., Dargie, T. C., & Gilbert, O. L. (2003). Vegetation associations in the Ougarta Mountains and dayas of the Guir hamada, Algerian Sahara. Journal of Arid Environments, 54(4), 739–753.

    Article  Google Scholar 

  • Boudad, L., Kabiri, L., Farkh, S., Falguères, C., Rousseau, L., Beauchamp, J., et al. (2003). Datation par la méthode U/Th d’un travertin quaternaire du Sud-Est marocain: Implications paléoclimatiques pendant le Pléistocène moyen et supérieur. Comptes Rendus Académie Sciences. Geoscience, 335, 469–478.

    Article  CAS  Google Scholar 

  • Coudée Gaussen, G. (1994). Erosion éolienne au Sahel et Sécheresse. Sécheresse, 5(3), 199–210.

    Google Scholar 

  • Cousins, S. A. O., Lavorel, S., & Davies, I. (2003). Modelling the effects of landscape pattern and grazing regimes on the persistence of plant species with high conservation value in grasslands in south-eastern Sweden. Landscape Ecology, 18, 315–332.

    Article  Google Scholar 

  • CRBT (1978). Rapport phytoécologique et pastoral sur les hautes plaines steppiques de la wilaya de Saida. Algiers: CRBT.

    Google Scholar 

  • Daget, P., & Poissonet, J. (1971). Une méthode d’analyse phytosociologique des praires: Critères d’application. Annales d’ Agronomie, 22(1), 5–41.

    Google Scholar 

  • Djebaili, S. (1978). Recherche phytoécologique et phytosociologique sur la végétation des hautes plaines steppiques et de l’atlas saharien algérien. Doctoral thesis, Languedoc, Montpellier.

  • Dregne, H. E. (1995). Desertification control: A framework for action. Environmental Monitoring and Assessment, 37, 111–122. Kluwer Academic Publishers.

    Article  CAS  Google Scholar 

  • Esbah, H., Deniz, B., Kara, B., & Kesgin, B. (2009). Analyzing landscape changes in the Bafa Lake Nature Park of Turkey using remote sensing and landscape structure metrics. Environmental Monitoring and Assessment, 37(1–4), 617–632. doi:10.1007/s10661-009-0973-y.

    Google Scholar 

  • Esbah, H., Kara, B., & Kesgin, B. (2008). Change in environmental qualities of Bafa Lake (In Turkish). In The proceedings of the VIIth national congress on Turkey’s coastal areas (pp. 271–278). Ankara, Turkey.

  • FAO (2009). Statistics. http://www.fao.org/corp/statistics/fr/reference.

  • Floret, C. H., & Pontanier, R. (1982). L’aridité en Tunisie présaharienne, climat, sol, végétation et aménagement. Travaux. Documents. ORSTOM (Eds.), Paris, n°150.

  • Forman, R. T. T. (1997). Land mosaics: The ecology of landscapes and regions. Cambridge: Cambridge University Press.

    Google Scholar 

  • Forman, R. T. T., & Gordon, M. (1986). Landscape ecology. New York: Wiley.

    Google Scholar 

  • Gaucherel, C., Baudry, J., Auclair, D. F., & Houllier, D. (2003). Etat de l’art et de la modélisation du paysage. Rapport de projet de recherche: La modélisation spatio-temporelle de paysages ruraux (agricoles, forestiers, périurbains...). France: INRA. Rapport n°3.

    Google Scholar 

  • Geerken, R., Haiwi, M., Jaja, M., Kauffmann, H., Roeder, H., Sankary, A. M., et al. (1998). Monitoring dryland degradation to define and implement suitable measure towards sustainable rangeland management. In V. Squires, & A. Sidahmed (Eds.), Drylands: Sustainable use of rangelands into the twenty-first century. International Fund for Agricultural Development. IFAD, Séries reports. Rome.

  • Godron, M., Daget, P., Emberger, L., Le Floch, E., Sauvage, C., & Wacquant, J. P. (Eds.) (1968). Relevé méthodique de la végétation et du milieu: Principes et transcription sur cartes perforées. Paris: CNRS Editions.

    Google Scholar 

  • Godron, M., & Poissonet, J. (1972). Quatre thèmes complémentaires pour la cartographie de la végétation et du milieu (Séquence de végétation, diversité du paysage, vitesse de cicatrisation, sensibilité de la végétation). Bulletin. Société. Languedocienne de Géographie, 6(3), 329–356.

    Google Scholar 

  • Gounot, M. (1969). Méthodes d’études quantitatives de la végétation. Masson et Cie.

  • Groom, M. J., Meffe, G. K., & Carroll, R. C. (2005). Principles of conservation biology (3rd ed.). Sunderland: Sinauer Assoc. Inc.

    Google Scholar 

  • Hanafi, A., & Jauffret, S. (2007). Are long-term vegetation dynamics useful in monitoring and assessing desertification processes in the arid steppe, southern Tunisia. Journal of Arid Environments, 72, 557–572.

    Article  Google Scholar 

  • Helldén, U. (1984). Drought impact monitoring: A remote sensing study of desertification in Kordofan, Sudan. Lunds Universitets. Naturgeografiska Institution, Rapporteroch Notiser Nr vol. 61.

  • Helldén, U. (1991). Desertification—Time for an assessment? Ambio, 20(8), 372–383.

    Google Scholar 

  • Helldén, U. (2008). A coupled human–Environment model for desertification simulation and impact studies. Global and Planetary Change, 64, 158–168.

    Article  Google Scholar 

  • Helldén, U., & Tottrup, C. (2008). Regional desertification: A global synthesis. Global and Planetary Change, 64, 169–176.

    Article  Google Scholar 

  • Heggem, D. T., Edmonds, C. M., Neale, A. C., Bice, L., & Bruce Jones, K. (2000). A landscape ecology assessment of the Tensas river basin. Environmental Monitoring and Assessment, 64, 41–54.

    Article  Google Scholar 

  • Herrmann, S. M., Anyamba, A., & Tucker, C. J. (2005). Recent trends in vegetation dynamics in the African Sahel and their relationship to climate. Global Environmental Change, Human and Policy Dimensions, 15, 394–404. Elsevier.

    Article  Google Scholar 

  • Hirche, A., Boughani, A., & Salamani, M. (2007). Évolution de la pluviosité annuelle dans quelques stations arides algériennes. Sécheresse, 18(4), 314–320.

    Google Scholar 

  • Hirche, A., Nedjraoui, D., Boughani, M., & Salamani, M. (2001). Cameleo: Rapport final sur le suivi diachronique des processus de désertification “in situ” et par télédétection des Hautes Plaines Steppiques du sud-ouest Oranais. Algiers: University of Sciences and Technology. Houari Boumediène.

    Google Scholar 

  • Hirche, A., Salamani, M., Boughani, M., Hourizi, R., & Oukil, Y. (2010). Is the desertification really in reverse? Case of the North Africa. International scientific conference on advanced scientific tools for desertification policy. Rome: IFAD. UNCCD. DeSurvey-IP.

    Google Scholar 

  • Hirche, A., Salamani, M., Boughani, M., & Nedjraoui, D. (2008). Contribution à l’étude de la désertification dans le sud oranais. Revue de la Société Française de Photogrammétrie et de Télédétection, 187–188, 16–31.

    Google Scholar 

  • Hirche, A., Salamani, M., Boughani, M., & Oukil, Y. (2009). Can we use the NDVI for monitoring arid rangelands. EARSeL SIG workshop on remote sensing of land use & land cover. Germany: Center of the Remote Sensing of Land Surfaces (ZFL) of the University of Bonn.

    Google Scholar 

  • Ibáñez, J., Martínez Valderrama, J., & Puigdefábregas, J. (2008). Assessing desertification risk using system stability condition analysis. Ecological Modelling, 213(2), 180–190.

    Article  Google Scholar 

  • Ionesco, T., & Sauvage, C. (1962). Les types de végétation du Maroc: Essai de nomenclature et de définition. Revue Géographique du Maroc, 1–2, 75–86.

    Google Scholar 

  • Johnson, A. R., Milne, B. T., Wiens, J. A., & Crist, T. O. (1992). Animal movements and population dynamics in heterogeneous landscapes. Landscape Ecology, 7, 63–75.

    Article  Google Scholar 

  • Kadi Hanifi-Achour, H. (2003). Diversité biologique et phytogéographique des formations à Stipa tenacissima L. de l’Algérie. Sécheresse, 14(3), 169–179.

    Google Scholar 

  • Kilic, S., Evrendilek, F., Berberoglu, S., & Celik, I. (2006). Monitoring of land-use and land cover changes in a Mediterranean region of Turkey. Environmental Monitoring and Assessment, 11, 157–168.

    Article  Google Scholar 

  • Lacaze, B., Ait-Bachir, S., & Sommer, S. (2003). Analyse diachronique de l’efficacité des pluies pour la production végétale dans le bassin Méditerranéen de 1982 à 1996. Télédétection, 3(2–4), 165–174.

    Google Scholar 

  • Le Floc’h, E. (2001). Biodiversité et gestion en zones arides et semi-arides méditerranéennes du Nord de l’Afrique. Bocconea, 13, 223–237.

    Google Scholar 

  • Le Floc’h, E., Nedjraoui, D., Hirche, A., Boughani, A., Salamani, M., & Abderazik, M. (2007). Methodological guide for the study and monitoring for the flora and vegetation. Tunis: ROSELT/OSS Collection. TC Number 1.

    Google Scholar 

  • Le Houérou, H. N. (1992). Relations entre la variabilité des précipitations et celle des productions primaire et secondaire des zones arides. In E. Le Floc’h, M. Grouzis, A. Cornet, J. C. Bille (Rédactors), & ORSTOM (Eds.), L’aridité: Une contrainte au développement (pp. 197–220). Paris.

  • Leitao, A. B., & Ahern, J. (2002). Applying landscape ecological concepts and metrics in sustainable landscape planning. Landscape & Urban Planning, 59, 65–93. doi:10.1016/S0169-2046(02)00005-1.

    Article  Google Scholar 

  • Leitao, A. B., Miller, J., Ahern, J., & McGarigal, K. (2006). Measuring landscapes: A planner’s handbook. Washington: Island Press.

    Google Scholar 

  • Li, H., & Wu, J. (2004). Use and misuse of landscape indices. Landscape Ecology, 19, 389–399.

    Article  Google Scholar 

  • Light, D. (1990). Characteristics of remote sensors for mapping and earth science application. Photogrammetric Engineering and Remote Sensing, 56, 1613–1623.

    Google Scholar 

  • Long, G. (1974). Diagnostic phyto-écologique et aménagement du territoire. Tome premier: Principes généraux et méthodes. Paris: Masson et Cie.

    Google Scholar 

  • McGarigal, K., & Marks, B. J. (1995). FRAGSTATS: Spatial pattern analysis program for quantifying landscape structure. Portland: USDA Forest Service, Pacific Northwest Research Station. Gen. Tech. Report PNW-GTR-351.

    Google Scholar 

  • Melzi, S. (1993). Évolution de la végétation et du milieu dans la région présaharienne des steppes algériennes. Sécheresse, 4(2), 113–116.

    Google Scholar 

  • Nassauer, J. I., & Corry, R. C. (2004). Using normative scenarios in landscape ecology. Landscape Ecology, 19, 343–356.

    Article  Google Scholar 

  • Nedjraoui, D. (2006). Profil fourrager de l’Algérie. Rome: FAO.

    Google Scholar 

  • Nouaceur, Z. (2001). L’évolution des lithométéores en Mauritanie confirme une plus grande efficacité de l’action éolienne. Cybergéo. Environnement, Nature, Paysage. CNRS. Retrieved from URL: http://www.cybergeo.presse.fr/paysenvi/nouaceur/nouaceur1.htm.

  • Nouaceur, Z. (2008). Apport des images-satellites dans le suivi des nuages de poussières en zones saharienne et sub-saharienne. Revue Télédétection, 8(1), 5–15.

    Google Scholar 

  • ONM (2008). Résumé annuel du temps en Algérie. Données de base. Alger: Office National de la Météorologie.

    Google Scholar 

  • OSS (2008). La surveillance à long terme en réseau circum-saharien: L’expérience Roselt/OSS. Collection Synthèse n° 3. Tunis: OSS.

    Google Scholar 

  • Pouget, M. (1980). Les relations Sol-Végétation dans les steppes Sud-Algéroises. Trav. Etudes documentaires (555 pp.). Paris: ORSTOM.

    Google Scholar 

  • Prince, S. D., Brown de Colstoun, E., & Kravitz, L. L. (1998). Evidence from rain—Use efficiencies does not indicate extensive Sahelian desertification. Global Change Biology, 4, 359–374.

    Article  Google Scholar 

  • Prince, S. D., Wessels, K. J., Tucker, C. J., & Nicholson, S. E. (2007). Desertification in the Sahel: A reinterpretation of a reinterpretation. Global Change Biology, 13, 1308–1313. doi:10.1111/j.1365-2486.2007.01356.x.

    Article  Google Scholar 

  • Ramos, M. C., & Mulligan, M. (2004). Spatial modelling of the impact of climate variability on the annual soil moisture regime in a mechanized Mediterranean vineyard. Journal of Hydrology, 306, 287–301.

    Article  Google Scholar 

  • Rasmussen, K., Foga, B., & Madsen, J. E. (2001). Desertification in reverse? Observations from northern Burkina Faso. Global Environmental Change, 11, 271–282.

    Article  Google Scholar 

  • Slimani, H. (1998). Effet du pâturage sur la végétation et le sol et désertification. Cas de la steppe à alfa (Stipa tenacissima L.) de Rogassa des Hautes plaines occidentales algériennes (123 pp. + ann). Magister thesis, University of Sciences and Technology Houari. Boumediène, Algiers.

  • Slimani, H., Aidoud, A., & Roze, F. (2010). 30 years of protection and monitoring of a steppic rangeland undergoing desertification. Journal of Arid Environments, 74, 685–691. doi:10.1016/j.jaridenv.2009.10.015.

    Article  Google Scholar 

  • Tucker, C. J., Dregne, H. E., & Newcomb, W. W. (1991). Expansion and contraction of the Sahara desert from 1980 to 1990. Science, 253, 299–301.

    Article  CAS  Google Scholar 

  • Tucker, C. J., & Nicholson, S. E. (1999). Variations in the size of the Sahara desert from 1980 to 1997. Ambio, 28(2), 587–591.

    Google Scholar 

  • Turner, M. G. (1989). Landscape ecology: The effect of pattern on process. Annual Review of Ecology and Systematics, 20, 171–197.

    Article  Google Scholar 

  • Turner, M. G., & Gardner, R. H. (Rédactors) (1991). Quantitative methods in landscape ecology. New York: Springer.

    Google Scholar 

  • UNEP United Nations Environment Programme (1994). United Nations convention to combat desertification. Nairobi (Kenya): UNEP.

    Google Scholar 

  • Van Delden, H., Luja, P., & Engelen, G. (2007). Integration of multi-scale dynamic spatial models of socio-economic and physical processes for river basin management. Environmental Modelling & Software, 22, 223–238.

    Article  Google Scholar 

  • Wang, Y., & Zhang, X. (2001). A dynamic approach to simulating socioeconomic effects on landscape changes. Ecological Modeling, 140, 141–162.

    Article  Google Scholar 

  • Wang, Y. L., Dawson, R., & Han, D. (2001). Landscape ecological planning and design of degraded mining land. Land Degradation & Development, 12, 449–459.

    Article  CAS  Google Scholar 

  • Woodcock, C., & Strahler, H. (1987). The factor of scale in remote sensing. Remote Sensing of Environment, 21, 311–332.

    Article  Google Scholar 

  • Worms, J., Ducrocq, M., & Saleck, A. A. (2004). Concerted approach towards managing living resources in a marine protected area. In L. E. Visser (Ed.), Challenging coasts: Transdisciplinary excursions into integrated coastal zone development. Amsterdam: Amsterdam University Press.

    Google Scholar 

  • Wu, J., Shen, W., Sun, W., & Tueller, P. T. (2002). Empirical patterns of the effects of changing scale on landscape metrics. Landscape Ecology, 17(8), 761–782.

    Article  Google Scholar 

  • Yang, X., & Lo, C. P. (2003). Modeling urban growth and landscape changes in the Atlanta metropolitan area. International Journal of Geographical Information Science, 17, 463–488.

    Article  Google Scholar 

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Hirche, A., Salamani, M., Abdellaoui, A. et al. Landscape changes of desertification in arid areas: the case of south-west Algeria. Environ Monit Assess 179, 403–420 (2011). https://doi.org/10.1007/s10661-010-1744-5

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