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Sink plot for runoff measurements on semi-flat terrains: preliminary data and their potential hydrological and ecological implications


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Bertoni, J., Larson, W.E., Shrader, W.D., 1958. Determination of infiltration rates on Marshall silt loam from runoff and rainfall records. Soil Sci. Soc. Am. Proc., 22, 571-575.10.2136/sssaj1958.03615995002200060024xSearch in Google Scholar

Blackburn, W.H., 1975. Factors influencing infiltration and sediment production of semiarid range lands in Nevada. Water Resour. Res., 11, 929-937.10.1029/WR011i006p00929Search in Google Scholar

Breckle, S.-W., Yair, A., Veste, M. (Eds.), 2008. Arid Dune Ecosystems-The Nizzana Sands in the Negev Desert. Ecological Studies 200, Springer, Berlin, Heidelberg, New York.10.1007/978-3-540-75498-5Search in Google Scholar

Brooks, M.L., 2003. Effects of increased soil nitrogen on dominance of alien annual plants in the Mojave Desert. J. Appl. Ecol., 40, 344-353.10.1046/j.1365-2664.2003.00789.xSearch in Google Scholar

Cantón, Y., Domingo, F., Sole-Benet, A., Puigdefábregas, J., 2002. Influence of soil-surface types on the overall runoff of the Tabernas badlands (south-east Spain): field data and model approaches. Hydrol. Process., 16, 2621-2643.10.1002/hyp.1052Search in Google Scholar

Cerdà, A., 1997. The effect of patchy distribution of Stipa tenacissima L. on runoff and erosion. J. Arid Environ., 36, 37-51.10.1006/jare.1995.0198Search in Google Scholar

Cerdà, A., 1998. The influence of aspect and vegetation on seasonal changes in erosion under rainfall simulation on a clay soil in Spain. Can. J. Soil Sci., 78, 321-330.10.4141/S97-060Search in Google Scholar

Dunkerley, D., 2012. Effects of rainfall intensity fluctuations on infiltration and runoff: rainfall simulation on dryland soils, Fowlers Gap, Australia. Hydrol. Process., 26, 2211-2224.10.1002/hyp.8317Search in Google Scholar

Eckstein, R.L., 2005. Differential effects of interspecific interactions and water availability on survival, growth and fecundity of three congeneric grassland herbs. New Phytol., 166, 525-536.10.1111/j.1469-8137.2005.01336.x15819915Search in Google Scholar

Evenari, M., 1981. Ecology of the Negev Desert, a critical review of our knowledge. In: Shuval, H. (Ed.): Developments in Arid Zone Ecology and Environmental Quality. Balaban ISS, Philadelphia, pp. 1-33.Search in Google Scholar

Fischer, T., Yair, A., Veste, M., 2012. Microstructure and hydraulic properties of biological soil crusts on sand dunes: a comparison between arid and temperate climate. Biogeosciences Discussions, 9, 12711-12734.10.5194/bgd-9-12711-2012Search in Google Scholar

Kidron, G.J., 1999. Differential water distribution over dune slopes as affected by slope position and microbiotic crust, Negev Desert, Israel. Hydrol. Process., 13, 1665-1682.10.1002/(SICI)1099-1085(19990815)13:11<1665::AID-HYP836>3.0.CO;2-RSearch in Google Scholar

Kidron, G.J., 2011. Runoff generation and sediment yield on homogeneous dune slopes: scale effect and implications for analysis. Earth Surf. Process. Landf., 36, 1809-1824.10.1002/esp.2203Search in Google Scholar

Kidron, G.J., Benenson, I., 2014. Biocrusts serve as biomarkers for the upper 30 cm soil water content. Journal of Hydrology, 509, 398-405.10.1016/j.jhydrol.2013.11.041Search in Google Scholar

Kidron, G.J., Gutschick, V., 2013. Soil moisture correlates with shrub-grass association in the Chihuahuan Desert. Catena, 107, 71-79.10.1016/j.catena.2013.02.001Search in Google Scholar

Kidron, G.J., Vonshak, A., 2012. The use of microbiotic crusts as biomarkers for ponding, subsurface flow and soil moisture content and duration. Geoderma, 181-182, 56-64.10.1016/j.geoderma.2012.02.026Search in Google Scholar

Kidron, G.J., Yair, A., 1997. Rainfall-runoff relationships over encrusted dune surfaces, Nizzana, western Negev, Israel, Earth Surf. Process. Landf., 22, 1169-1184.10.1002/(SICI)1096-9837(199712)22:12<1169::AID-ESP812>3.0.CO;2-CSearch in Google Scholar

Kidron, G.J., Yaalon, D.H., Vonshak, A., 1999. Two causes for runoff initiation on microbiotic crusts: hydrophobicity and pore clogging. Soil Sci., 164, 18-27.10.1097/00010694-199901000-00004Search in Google Scholar

Kidron, G.J., Yair, A., Vonshak, A., Abeliovich, A., 2003. Microbiotic crust control of runoff generation on sand dunes in the Negev Desert. Water Resour. Res., 39, 1108.10.1029/2002WR001561Search in Google Scholar

Kidron, G.J., Vonshak, A., Dor, I., Barinova, S., Abeliovich, A., 2010. Properties and spatial distribution of microbiotic crusts in the Negev Desert. Catena, 82, 92-101.10.1016/j.catena.2010.05.006Search in Google Scholar

Kidron, G.J., Monger, H.C., Vonshak, A., Conrod, W., 2012. Contrasting effects of microbiotic crusts on runoff in desert surfaces. Geomorphology, 139-140, 484-494.10.1016/j.geomorph.2011.11.013Search in Google Scholar

Lange, O.L., Kidron, G.J., Büdel, B., Meyer, A., Killian, E., Abeliovich, A., 1992. Taxonomic composition and photosynthetic characteristics of the "biological soil crusts" covering sand dunes in the Western Negev Desert. Functional Ecology, 6, 519-527.10.2307/2390048Search in Google Scholar

Li, X.J., Li, X.R., Song, W.M., Gao, Y.P., Zheng, J.G., Jia, R.L., 2008. Effects of crust and shrub patches on runoff, sedimentation, and related nutrient (C, N) redistribution in the desertified steppe zone of the Tengger Desert, Norhern China. Geomorphology, 96, 221-223.10.1016/j.geomorph.2007.08.006Search in Google Scholar

Li, X.Y., 2003. Gravel-sand mulch for soil and water conservation in the semiarid loess region of northwest China. Catena, 52, 105-127.10.1016/S0341-8162(02)00181-9Search in Google Scholar

Malam Issa, O., Valentin, C., Rajot, J.L., Cerdan, O., Desprats, J.-F., Bouchet, T., 2011. Runoff generation fostered by physical and biological crusts in semi-arid sandy soils. Geoderma, 167-168, 22-29.10.1016/j.geoderma.2011.09.013Search in Google Scholar

Mazor, G., Kidron, G.J., Vonshak, A., Abeliovich, A., 1996. The role of cyanobacterial exopolysaccharides in structuring desert microbial crusts. FEMS Microbiol. Ecol., 21, 121-130.10.1111/j.1574-6941.1996.tb00339.xSearch in Google Scholar

McFadden, L.D., McDonald, E.V., Wells, S.G., Anderson, K., Quade, J., Forman, S.L., 1998. The vesicular layer and carbonate collars of desert soils and pavements: formation, age and relation to climate change. Geomorphology, 24, 101-145.10.1016/S0169-555X(97)00095-0Search in Google Scholar

Moore, B.G., Tischer, R.G., 1964. Extracellular polysaccharides of alga: effects on life-support systems. Science, 145, 586.10.1126/science.145.3632.58614163784Search in Google Scholar

Neave, M., Abrahams, A.D., 2002. Vegetation influences on water yields from grasslands and shrubland ecosystems in the Chihuahuan Desert. Earth Surf. Process. Landf., 27, 1011-1020.10.1002/esp.389Search in Google Scholar

Noy-Meir, I., 1973. Desert ecosystems: environment and producers. Annu. Rev. Ecol. System., 5, 25-51.10.1146/annurev.es.04.110173.000325Search in Google Scholar

Pockman, W.T., Sperry, J.S., 2000. Vulnerability to xylem cavitation and the distribution of Sonoran Desert vegetation. Am. J. Bot., 87, 1287-1299.10.2307/2656722Search in Google Scholar

Rodriguez-Caballero, E., Cantón, Y., Chamizo, S., Afana, A., Solé-Benet, A., 2012. Effects of biological soil crusts on surface roughness and implications for runoff and erosion. Geomorphology, 145-146, 81-89.10.1016/j.geomorph.2011.12.042Search in Google Scholar

Rosenan, N., Gilad, M., 1985. Atlas of Israel. Meteorological data, sheet IV/2. Jerusalem (Israel), Carta.Search in Google Scholar

Rostagno, C.M., 1989. Infiltration and sediment production as affected by soil surface conditions in a shrubland of Patagonia, Argentina. J. Range Manag., 42, 382-385.10.2307/3899544Search in Google Scholar

Schlesinger, W., Ward, T.J., Anderson, J., 2000. Nutrient losses in runoff from grassland and shrubland habitats in southern New Mexico: II. Field plots. Biogeochemistry, 49, 69-86.Search in Google Scholar

Siegal, Z., Tsoar, H., Karnieli, A., 2013. Effects of prolonged drought on the vegetation cover of sand dunes in the NW Negev Desert: Field survey, remote sensing and conceptual modeling. Aeolian Res., 9, 161-173.10.1016/j.aeolia.2013.02.002Search in Google Scholar

Tadmor, N.H., Shanan, L., 1969. Runoff Inducement in an arid region by removed vegetation. Soil Sci. Soc. Am. J., 33, 790-794.10.2136/sssaj1969.03615995003300050045xSearch in Google Scholar

Valentin, C., Bresson, L.-M., 1992. Morphology, genesis and classification of surface crusts in loamy and sandy soils. Geoderma, 55, 225-245.10.1016/0016-7061(92)90085-LSearch in Google Scholar

Veste, M., Breckle, S.-W., Eggert, K., Littmann, T., 2011.Search in Google Scholar

Vegetation pattern in arid sand dunes controlled by biological soil crusts along a climatic gradient in the northern Negev Desert. Basic Appl. Dryland Res., 5, 1-16.Search in Google Scholar

Yair, A., Lavee, H., 1985. Runoff generation in arid and semiarid zones. In: Anderson, M.G., Burt, T.P. (Eds.): Hydrological Forecasting. John Wiley & Sons. Chichester. pp. 183-220.Search in Google Scholar

Yu, J., Kidron, G.J., Pen-Mouratov, S., Wasserstrom, H., Barnes, G., Steinberger, Y., 2012. Do development stages of biological soil crusts determine activity and functional diversity in a sand-dune ecosystem? Soil Biol. Biochem., 51, 66-72. 10.1016/j.soilbio.2012.04.007Search in Google Scholar

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