Cite

ANDERSON, J. P. E. – DOMSCH, K. H. 1978. A physiological method for the quantitative measurement of microbial biomass in soils. In Soil Biology and Biochemistry, vol. 10, no. 3, pp. 215–221.Search in Google Scholar

ANDERSON, T. H. 2003. Microbial eco-physiological indicators to asses soil quality. In Agriculture, Ecosystems & Environment, vol. 98, no. 1–3, pp. 285–293.Search in Google Scholar

ANNABI, M. – BAHRI, H. – LATIRI, K. 2009. Organic status and microbial respiration of soils in northern Tunisia. In Biotechnology, Agronomy, Society and Environment, vol. 13, no. 3, pp. 401–408. (In French: Statut organique et respiration microbienne des sols du nord de la Tunisie).Search in Google Scholar

BARCENAS, M. G. – GARCIA, O. F. – MATAIX, S. J. – MATAIX, B. J. – BÅÅTH, E. 2011. Soil microbial recolonisation after a fire in a Mediterranean forest. In Biology and Fertility of Soils, vol. 47, no. 3, pp. 261–272.Search in Google Scholar

BEARE, M. H. – NEELY, C. L. – COLEMAN, D. C. – HARGROVE, W. L. 1990. A substrate-induced respiration (SIR) method for measurement of fungal and bacterial biomass on plant residues. In Soil Biology and Biochemistry, vol. 22, no. 5, pp. 585–594.Search in Google Scholar

BLAKE, G. R. – HARTGE, K. H. 1986. Part 1. Bulk density in physical and mineralogical methods. In: KLUTE, A. (2nd eds). Methods of Soil Analysis. American Society of Agronomy, Soil Science Society of America, Madison, Wisconsin USA, pp. 363–382. doi:10.2136/sssabookser5.1.2ed.c13.10.2136/sssabookser5.1.2ed.c13Search in Google Scholar

BORSALI, A. H. 2013. Contribution to the assessment of the impact of fires on forest ecosystems: case of Fénouane Forest, Ain El Hadjer town, Saida Province, Algeria. Doctoral dissertation, University of Aix-Marseille, 200 pp. (In French: Contribution à l’évaluation de l’impact des incendies sur les écosystèmes forestiers: cas de la Forêt de Fénouane, Commune d’Ain El Hadjer, Wilaya de Saida, Algérie).Search in Google Scholar

CERTINI, G. 2005. Effects of fire on properties of forest soils: a review. In Oecologia, vol. 143, no. 1, pp. 1–10.Search in Google Scholar

EAMUS, D. – MACINNIS-NG, C. M. – HOSE, G. C. – ZEPPEL, M. J. – TAYLOR, D. T. – MURRAY, B. R. 2005. Ecosystem services: an ecophysiological examination. In Australian Journal of Botany, vol. 53, no. 1, pp. 1–19.Search in Google Scholar

FLIEßBACH, A. – OBERHOLZER, H. R. – GUNST, L. – MÏDER, P. 2007. Soil organic matter and biological soil quality indicators after 21 years of organic and conventional farming. Agriculture. In Ecosystems & Environment, vol. 118, no. 1–4, pp. 273–274.Search in Google Scholar

GONGALSKY, K. B. – MALMSTRÖM, A. – ZAITSEV, A. S. – SHAKHAB, S. V. – BENGTSSON, J. – PERSSON, T. 2012. Do burned areas recover from inside? An experiment with soil fauna in a heterogeneous landscape. In Applied Soil Ecology, vol. 59, pp. 73–86.Search in Google Scholar

GRANGED, A. J. – JORDAN, A. – ZAVALA, L. M. – MUÑOZ-ROJAS, M. – MATAIX-SOLERA, J. 2011. Short-term effects of experimental fire for a soil under eucalyptus forest (SE Australia). In Geoderma, vol. 167, pp. 125–134.Search in Google Scholar

GUENON, R. – VENNETIER, M. – DUPUY, N. – ZIARELLI, F. – GROS, R. 2011. Soil organic matter quality and microbial catabolic functions along a gradient of wildfire history in a Mediterranean ecosystem. In Applied Soil Ecology, vol. 48, no. 1, pp. 81–93.Search in Google Scholar

HART, S. C. – DELUCA, T. H. – NEWMAN, G. S. – MACKENZIE, M. D. – BOYLE, S. I. 2005. Post-fire vegetative dynamics as drivers of microbial community structure and function in forest soils. In Forest Ecology and Management, vol. 220, no. 1–3, pp. 166–184.Search in Google Scholar

HOLDEN, S. R. – GUTIERREZ, A. – TRESEDER, K. K. 2013. Changes in soil fungal communities, extracellular enzyme activities, and litter decomposition across a fire chronosequence in Alaskan boreal forests. In Ecosystems, vol. 16, no. 1, pp. 34–46.10.1007/s10021-012-9594-3Search in Google Scholar

HOLDEN, S. R. – TRESEDER, K. K. 2013. A meta-analysis of soil microbial biomass responses to forest disturbances. In Frontiers in Microbiology, vol. 4, pp. 163.Search in Google Scholar

KNICKER, H. 2007. How does fire affect the nature and stability of soil organic nitrogen and carbon? A review. In Biogeochemistry, vol. 85, no. 1, pp. 91–118.Search in Google Scholar

MABUHAY, J. A. – NAKAGOSHI, N. – ISAGI, Y. 2006. Soil microbial biomass, abundance, and diversity in a Japanese red pine forest: first year after fire. In Journal of Forest Research, vol. 11, no. 3, pp. 165–173.Search in Google Scholar

MATHIEU, C. – PIELTAIN, F. 1998. Physical analysis of soils. Selected methods. Montpellier, France: Research Institute for Development, 275 pp. ISBN 2-7430-0283-2. (In French: Analyse physique des sols: méthodes choisies).Search in Google Scholar

MEDDOUR, S. O. 2014. Forest fires in Algeria: Risk analysis, study of causes, evaluation of the defense system and management politics. PhD Thesis in Agricultural Sciences, University of Mouloud Mammeri Tizi Ouzou, 256 pp. (In French: Les feux de forêt en Algérie: Analyse du risque, étude des causes, évaluation du dispositif de défense et des politiques de gestion).Search in Google Scholar

MULUMBA, L. N. – LAL, R. 2008. Mulching effects on selected soil physical properties. In Soil and Tillage Research, vol. 98, no. 1, pp. 106–111.Search in Google Scholar

NOURAEIN, M. – KOUCHAK-KHANI, H. – JANMOHAMMADI, M. – MOHAMADZADEH, M. – ION, V. 2020. The effects of tillage and fertilizers on growth characteristics of Kabuli chickpea under Mediterranean conditions. In Acta Technologica Agriculturae, vol. 23, no. 1, pp. 18–23.Search in Google Scholar

PAPA, S. – PELLEGRINO, A. – FIORETTO, A. 2008. Microbial activity and quality changes during decomposition of Quercus ilex leaf litter in three Mediterranean woods. In Applied Soil Ecology, vol. 40, no. 3, pp. 401–410.Search in Google Scholar

PAYCHENG, C. 1980. Analytical methods used at the Dakar Laboratory. Nouméa, French: ORSTOM, 109 pp. http://horizon.documentation.ird.fr/exl-doc/pleins_textes/divers10-09/010005303.pdf (In French: Méthodes d‘analyses utilisées au laboratoire commun de Dakar).Search in Google Scholar

PÉTARD, J. 1993. Soil analysis: Methods of analysis (volume 1). Nouméa, French: ORSTOM, 192 pp. ISBN 010005303. (In French: Les méthodes d‘analyses: tome 1. Analyse de sols).Search in Google Scholar

SABAGHNIA, N. – JANMOHAMMADI, M. 2014. Evaluation of selection indices for drought tolerance in some chickpea (Cicer arietinum L.) genotypes. In Acta Technologica Agriculturae, vol. 17, no. 1, pp. 6–12.Search in Google Scholar

SAETRE, P. 1998. Decomposition, microbial community structure, and earthworm effects along a birch-spruce soil gradient. In Ecology, vol. 79, no. 3, pp. 834–846.Search in Google Scholar

SMITH, N. R. – KISHCHUK, B. E. – MOHN, W. W. 2008. Effects of wildfire and harvest disturbances on forest soil bacterial communities. In Applied and Environmental Microbiology, vol. 74, no. 1, pp. 216–224.Search in Google Scholar

SMS. 2017. Climatic data. Saïda Meteorological Station.Search in Google Scholar

UROZ, S. – BISPO, A. – BUÉE, M. – CEBRON, A. – CORTET, J. – DECAENS, T. – HEDDE, M. – PERES, G. – VENNETIER, M. – AND VILLENAVE, C. 2014. Overview of advances in the field of forest soil biology. In French Forest Review, vol. 66, no. 4, pp. 467–477. (In French: Aperçu des avancées dans le domaine de la biologie des sols forestiers).10.4267/2042/56560Search in Google Scholar

VAN DER WERF, G. R. – RANDERSON, J. T. – GIGLIO, L. – COLLATZ, G. J. – MU, M. – KASIBHATLA, P. S. – VAN LEEUWEN, T. T. 2010. Global fire emissions and the contribution of deforestation, savanna, forest, agricultural, and peat fires (1997–2009). In Atmospheric Chemistry and Physics, vol. 10, no. 23, pp. 11707–11735.Search in Google Scholar

VENNETIER, M. – CECILLON, L. – GUENON, R. – SCHAFFHAUSER, A. – VERGNOUX, A. – BOICHARD, J. L. – MASION, A. – BOTTÉRO, J. Y. – RUY, S. – DOUSSAN, C. – GAUDU, J. C. – RENARD, D. – CURT, T. – FAIVRE, N. – RIPERT, C. – ESTÈVE, R. – MARTIN, W. – MAS, C. – MORGE, D. – BRUN, J. J. – JUVY, B. – CASSAGNE, N. – MERMIN, E. – TARDIF, P. – FAVIER, G. – DE DANIELI, S. – GROS, R. – TATONI, T. – CARRARA, M. – DOUMENQ, P. – GUILIANO, M. – MILLE, G. – MALLERET, L. – LEBARRILLER, S. – ASIA, L. – DOMEIZEL, M. – VASSALO, L. – MASSIANI, C. – THÉRAULAZ, F. – DI ROCCO, R. – CZARNES, S. – CLAYS-JOSSERAND, A. – COMMEAUX, C. – DEGRANGE, V. – GUILLAUMAUD, N. – LE ROUX, X. – POLY, F. – HOEPFFNER, M. – PIGNOT, V. – CHANDIOUX, O. 2008. Study of the impact of repeated forest fires on biodiversity and soils: search for indicators. Final report, CEMAGREF, Ministry of Agriculture and Fisheries, European Union, Aix en Provence, 236 pp. (In French: Etude de l’impact d’incendies de forêt répétés sur la biodiversité et sur les sols: recherche d’indicateurs).Search in Google Scholar

VENNETIER, M. – LADIER, J. – REY, F. 2014. Control of forest soil erosion by vegetation in the face of global changes. In French Forest Review, vol. 66, no. 4, pp. 467–478. (In French: Le contrôle de l’érosion des sols forestiers par la végétation face aux changements globaux).10.4267/2042/56564Search in Google Scholar

VERMA, S. – JAYAKUMAR, S. 2012. Impact of forest fire on physical, chemical and biological properties of soil. In Review, Proceedings of the International Academy of Ecology and Environmental Sciences, vol. 2, no. 3, pp. 168–176.Search in Google Scholar

eISSN:
1338-5267
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other