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<article language="en">
	<journal>
		<journal_title>Hydrology and Earth System Sciences</journal_title>
		<journal_url>www.hydrol-earth-syst-sci.net</journal_url>
		<issn>1027-5606</issn>
		<eissn>1607-7938</eissn>
		<volume_number>13</volume_number>
		<issue_number>9</issue_number>
		<publication_year>2009</publication_year>
	</journal>
	<doi>10.5194/hess-13-1713-2009</doi>
	<article_url>http://www.hydrol-earth-syst-sci.net/13/1713/2009/</article_url>
	<abstract_html>http://www.hydrol-earth-syst-sci.net/13/1713/2009/hess-13-1713-2009.html</abstract_html>
	<fulltext_pdf>http://www.hydrol-earth-syst-sci.net/13/1713/2009/hess-13-1713-2009.pdf</fulltext_pdf>
	<start_page>1713</start_page>
	<end_page>1726</end_page>
	<publication_date>2009-09-29</publication_date>
	<article_title content_type="html">Root reinforcement and slope bioengineering stabilization by Spanish Broom (&lt;i&gt;Spartium junceum&lt;/i&gt; L.)</article_title>
	<authors>
		<author numeration="1" affiliations="1">
			<name>F. Preti</name>
			<email>federico.preti@unifi.it</email>
		</author>
		<author numeration="2" affiliations="1">
			<name>F. Giadrossich</name>
		</author>
	</authors>
	<affiliations>
		<affiliation numeration="1" content_type="html">Dipartimento di Ingegneria Agraria e Forestale, Università degli studi di Firenze, Florence, Italy</affiliation>
	</affiliations>
	<abstract content_type="html">The present paper deals with the root system&apos;s characteristics of Spanish
Broom (&lt;i&gt;Spartium junceum&lt;/i&gt; L.), a species whose capacity for adaptating
and resisting to drought is worth investigating. In particular, the aims of
the study were 1) to investigate the plant&apos;s bio-mechanical aspects and 2) to
verify whether root reinforcement and the field rooting ability of stem
cuttings enhance its potential for use in slope stabilization and soil
bio-engineering techniques, particularly in the Mediterranean areas.
&lt;br&gt;&lt;br&gt;
Single root specimens were sampled and tested for tensile strength, obtaining
classic tensile strength-diameter relationships. Analysis were performed on
the root systems in order to assess root density distribution. The Root Area
Ratio (RAR) was analyzed by taking both direct and indirect measurements, the
latter relying on image processing. The data obtained were used to analyze
the stability of an artificial slope (landfill) and the root reinforcement.
The measurement and calculation of mean root number, mean root diameter, RAR,
root cohesion and Factor of safety are presented in order to distinguish the
effect of plant origin and propagation.
&lt;br&gt;&lt;br&gt;
Furthermore, tests were performed to assess the possibility of agamic
propagation (survival rate of root-ball endowed plants, rooting from stem
cuttings). These tests confirmed that agamic propagation is difficult, even
though roots were produced from some buried stems, and for practical
purposes it has been ruled out.
&lt;br&gt;&lt;br&gt;
Our results show that Spanish Broom has good bio-mechanical characteristics
with regard to slope stabilization, even in critical pedoclimatic conditions
and where inclinations are quite steep, and it is effective on soil depths up
to about 50 cm, in agreement with other studies on Mediterranean species. It
is effective in slope stabilization, but less suitable for soil
bio-engineering or for triggering natural plant succession.</abstract>
	<references>
		<reference numeration="1" content_type="text"> AA.VV.: Manuale di coltivazione e prima lavorazione della ginestra per uso tessile. Istituto di Biometeorologia del Consiglio Nazionale delle Ricerche, Regione Toscana, ISBN:~8890146044, 52~pp., 2006 (in Italian). </reference>
		<reference numeration="2" content_type="text"> Abernethy, B. and Rutherfurd, I. D.: The distribution and strength of riparian tree roots in relation to riverbank reinforcement, Hydrol. Process, 15, 63–79, 2001. </reference>
		<reference numeration="3" content_type="text"> Amato, M., Pardo, A., Faretta, S., and Quaglietta Chiaranda&apos;, F.: Misura della resistenza alla trazione delle radici un contributo alla determinazione dell&apos;effetto delle piante sulla stabilità del terreno, Rivista di Agronomia, 31(2), 762–767, 1997 (in Italian). </reference>
		<reference numeration="4" content_type="text"> Amato, M., Di Martino, P., Di Pasquale, G., Mazzoleni, S., Migliozzi, A., and Strumia, S.: Il ruolo della vegetazione nelle frane di Quindici, Quaderni di Geologia Applicata, 7(1), 97–108, 2000 (in Italian). </reference>
		<reference numeration="5" content_type="text"> Bagnaresi, U., Bignani, C., and Chiusoli, A.: Ricerche sull&apos;impiego di arbusti per il rivestimento di scarpate argillose, L&apos;Italia Forestale e Montana, 41(4), 165–182, 1986 (in Italian). </reference>
		<reference numeration="6" content_type="text"> Bischetti, G. B., Chiaradia, E. A., Simonato, T., Speziali, B., Vitali, B., Vullo, P., Zocco, A.: Root strength and root area of forest species in Lombardy (Northern Italy), Plant Soil, 278, 11–22, 2005. </reference>
		<reference numeration="7" content_type="text"> Bohm, W.: Methods of studying root systems, New York: Springer-Verlag, 194~pp., 1979. </reference>
		<reference numeration="8" content_type="text"> Burroughs, E. R. and Thomas, B. R.: Declining root strength in Douglas fir after felling as a factor in slope stability, USDA For. Serv. Res., INT-190, 27~pp., 1977. </reference>
		<reference numeration="9" content_type="text"> Cervelli C.: Le specie arbustive della macchia mediterranea, Collana Sicilia Foreste, suppl., 26, 181~pp., 2003 (in Italian). </reference>
		<reference numeration="10" content_type="text"> Chiatante, D., Scippa, G. S., Di Iorio, A., and Sarnataro, M.: Root architecture modified by mechanical stress in seedlings of \textitFraxinus ornus L. and \textitSpartium junceum L. growing on slopes, in: Proceedings of the international conference on forest research: a challenge for an integrated European approach, edited by: Radoglou, K., Thessaloniki, Greece, 477–482, 2001. </reference>
		<reference numeration="11" content_type="text"> Chiatante, D., Sarnataro, M., Fusco, S., Di Iorio, A., and Scippa, G. S.: Modification of root morphological parameters and root architecture in seedlings of \textitFraxinus ornus L. and \textitSpartium junceum L. L. growing on slopes, Plant Growth Regul., 21, 247–260, 2003a. </reference>
		<reference numeration="12" content_type="text"> Chiatante, D., Sarnataro, M., Fusco, S., Di Iorio, A., and Scippa, G. S.: Modification of root morphological parameters and root architecture in seedlings of \textitFraxinus ornus L. and \textitSpartium junceum L. growing on slopes, Plant Biosyst., 137(1), 47–55, 2003b. </reference>
		<reference numeration="13" content_type="text"> Cofie, P. and Koolen, A. J.: Test speed and other factors affecting the measurements of tree root properties used in soil reinforcement models, Soil Till. Res., 63, 51–56, 2001. </reference>
		<reference numeration="14" content_type="text"> Coppin, N. J. and Richards, I. G.: Use of vegetation in civil engineering, Butterworth, London, 272~pp., 1990. </reference>
		<reference numeration="15" content_type="text"> Dani, A. and Preti, F.: Sulla stima del rinforzo radicale del terreno: andamenti temporali ed effetti sulla stabilità abilità di versante con trattamenti selvicolturali, Quaderni di Idronomia Montana, Nuova Editoriale Bios, 27, 295–309, 2007 (in Italian). </reference>
		<reference numeration="16" content_type="text"> De Baets, S., Poesen, J., Knapen, A., Barberá, G. G., and Navarro, J. A.: Root characteristics of representative Mediterranean plant species and their erosion-reducing potential during concentrated runoff, Plant Soil, 294, 169–183, 2007. </reference>
		<reference numeration="17" content_type="text"> De Baets, S., Poesen, J., Reubens, B., Wemans, K., De Baerdemaeker, J., and Muys, B.: Root tensile strength and root distribution of typical Mediterranean plant species and their contribution to soil shear strength, Plant Soil, 305, 207–226, 2008. </reference>
		<reference numeration="18" content_type="text"> Di Iorio, A., Lasserre, B., Scippa, G., and Chiatante, D.: Root system architecture of \textitQuercus pubescens trees growing on different sloping conditions, Ann. Bot.-London, 95(2), 351–361, 2005. </reference>
		<reference numeration="19" content_type="text"> Fan, C. C. and Su, C. F.: Role of roots in the shear strength of root reinforced soils with high moisture content, Ecol. Eng., 3, 157–166, 2008. </reference>
		<reference numeration="20" content_type="text"> Gallotta, A.: Contributo della vegetazione alla stabilità dei suoli declivi in ambiente mediterraneo, Dissertazione per il conseguimento del titolo di Dottore di Ricerca in Idronomia, Ist. Di Sistemazioni idraulico-forestali, Bari, sede amministrativa Università degli Studi di Padova, 95~pp., 2000 (in Italian). </reference>
		<reference numeration="21" content_type="text"> Gallotta, A., Gentile, F., Puglisi, S., and Romano, G.: Primi risultati di una ricerca sulla resistenza meccanica degli apparati radicali nella stabilizzazione dei versanti in ambiente mediterraneo, Collana Quaderni Idronomia Montana, ISBN:~88-7740-341-1, 21(1), 382~pp., 2003 (in Italian). </reference>
		<reference numeration="22" content_type="text"> Genet, M., Stokes, A., Salin, F., Mickovski, S. B., Fourcaud, T., Dumail, J. F., and Beek, R.: The influence of cellulose content on tensile strength in tree roots, Plant Soil, 278, 1–9, 2005. </reference>
		<reference numeration="23" content_type="text"> Gray, D. H. and Leiser, A. T.: Biotechnical slope protection and erosion control, Van Nostrand Reinhold Co, New York, 271~pp., 1982. </reference>
		<reference numeration="24" content_type="text"> Gray, D. H. and Sotir, R. D.: Biotechnical and soil bioengineering slope stabilization, John Wiley and Sons, NY, 369~pp., 1996. </reference>
		<reference numeration="25" content_type="text"> Greenway, D. R.: Vegetation and slope stability, in: Slope stability, edited by: Anderson, M. G. and Richards, K. S., John Wiley &amp; Sons Ltd, New York, 187–230, 1987. </reference>
		<reference numeration="26" content_type="text"> Greenwood, J. R.: SLIP4EX – A program for routine slope stability analysis to include the effects of vegetation, reinforcement and hydrological changes, Plant Soil, 24, 449–465, 2005. </reference>
		<reference numeration="27" content_type="text"> Halter, M. R. and Chanway, C. P.: Growth and root morphology of planted and naturally regenerated Douglas-fir and lodgepole pine, Ann. Sci. Forest., 50, 71–77, 1993. </reference>
		<reference numeration="28" content_type="text"> Hartmann, H. T., Kester, D. E., Davies, F. T, and Geneve, R. L.: Plant propagation: principles and practices, 7th edn., Prentice Hall, Upper Saddle River, NJ, 769~pp., 2002. </reference>
		<reference numeration="29" content_type="text"> Khuder, H., Stokes, A., Danjon, F., and Gouskou, K.: Is it possible to manipulate root anchorage in young trees, Plant Soil, 294, 87–102, 2007. </reference>
		<reference numeration="30" content_type="text"> Laio, F., D&apos;Odorico, P., and Ridolfi, L.: An analytical model to relate the vertical root distribution to climate and soil properties, Geophys. Res. Lett., 33, L18401, doi:10.1029/2006GL027331, 2006. </reference>
		<reference numeration="31" content_type="text"> La Mantia, T. and La Mela Veca, D. S.: L&apos;impiego della ginestra di spagna in intervent di forestazione di aree marginali: il caso studio dei Monti Sicani (AG), Italus Hortus, luglio-agosto, 11(4), 116–119, 2004 (in Italian). </reference>
		<reference numeration="32" content_type="text"> Laranci, P., Dallari, D., Amato, M., Petelli, M., and Scarascia-Mugnozza, G.: Capacità di radicazione e proprietà biotecniche di alcuni arbusti ed alberi mediterranei (per il recupero ecologico di ambienti degradati), Rivista di Ingegneria Agraria, Pisa, Edizioni ETS, p 2, 9–16, 2004 (in Italian). </reference>
		<reference numeration="33" content_type="text"> Leopardi, G.: La Ginestra o il fiore del deserto, in: a cura di Nicolò Gallo e Cesare Garboli, edited by: Canti, G. L., Torino: Einaudi, copyr. 1993 LXXIII, ISBN:~88-06-13303-9, 447~pp., 1845. </reference>
		<reference numeration="34" content_type="text"> Lindström, A. and Rune, G.: Root deformation in containerised Scots pine plantations – effects on stability and stem straightness, Plant Soil, 217, 29–37, 1999. </reference>
		<reference numeration="35" content_type="text"> Mattia, C., Bischetti, G. B., and Gentile, F.: Biotechnical characteristics of root systems of typical Mediterranean species, Plant Soil, 278, 11–22, 2005. </reference>
		<reference numeration="36" content_type="text"> Morone Fortunato, I., Ruta, C., and Tagarelli, A.: Different species of broom and related propagation protocols [\textitCytisus scoparius (L.) Link; \textitSpartium junceum L.; \textitGenista aspalathoides Lam.], Italian Horticultural Society (SOI), national meeting on biodiversity, 7, Catania, Italy, 31 March–2 April 2005, 2005. </reference>
		<reference numeration="37" content_type="text"> Norris, J. E. and Greenwood, J. R.: Root reinforcement on unstable slopes in Northern Greece and Central Italy, International Conference on Problematic Soils, Nottingham Trent University, \mboxNottingham, UK, 411–418, July 2003. </reference>
		<reference numeration="38" content_type="text"> Norris, J. E., Stokes, A., Mickovski, S. B., Cammeraat, E., van Beek, R., Nicoll, B. C., and Achim, A. (Eds.): Slope Stability and Erosion Control: Ecotechnological Solutions VI, Hardcover, ISBN:~978-1-4020-6675-7, 290~pp., 2008. </reference>
		<reference numeration="39" content_type="text"> O&apos;Loughlin, C. L. and Watson, A. J.: Root-wood strength deterioration in Radiata Pine after clearfelling, New Zeal. J. For. Sci., 39(3), 284–293, 1979. </reference>
		<reference numeration="40" content_type="text"> Operstein, V. and Frydman, S.: The influence of vegetation on soil strength, Ground Improv., 4, 81–89, 2000. </reference>
		<reference numeration="41" content_type="text"> Piotto, B. and Di Noi, A.: Propagazione per seme di alberi e arbusti della flora mediterranea, ANPA (Agenzia Nazionale per la Protezione dell&apos;Ambiente Dipartimento Prevenzione e Risanamento Ambientali, ITALIA), 2001 (in Italian). </reference>
		<reference numeration="42" content_type="text"> Preti, F. and Schwarz, M.: On root reinforcement modelling, The role of vegetation in slope stability and mitigation measures against landslides and debris flows, EGU General Assembly, 2–7 April 2006, Geophys. Res. Abstr., 8, 04555, 2006. </reference>
		<reference numeration="43" content_type="text"> Preti, F., Dani, A., and Laio, F.: Root profiles assessment by means of hydrological, pedological, and above-ground vegetation data for bioengineering purposes, Ecol. Eng., doi:10.1016/j.ecoleng.2009.07.010, in press, 2009. </reference>
		<reference numeration="44" content_type="text"> Preti, F.: Stabilità dei versanti vegetati, Cap. 10, in: Manuale 3 d&apos;Ingegneria Naturalistica Sistemazione dei versanti, edited by: Sauli, G., Cornelini, P., and Preti, F., Regione Lazio, Roma, 137–168, http://www.regione.lazio.it/web2/contents/ingegneria_naturalistica/manuale_versanti/Cap_10_10.pdf, 2006 (in Italian). </reference>
		<reference numeration="45" content_type="text"> Pollen, N. and Simon, A.: Estimating the mechanical effects of riparian vegetation on streambank stability using a fiber bundle model, Water Resour. Res., 41, W07025, doi:10.1029/2004WR003801, 2005. </reference>
		<reference numeration="46" content_type="text"> Quatrini, P., Scaglione, G., Cardinale, M., Caradonna, F., and Puglia, A. M.: \textitBradyrhizobium sp. nodulating the Mediterranean shrub Spanish broom (\textitSpartium junceum L.), J. Appl. Microbiol., 92, 13–21, 2002. </reference>
		<reference numeration="47" content_type="text"> Regione Toscana: Aggiornamento e sviluppo del del sistema di regionalizzazione delle portate di piena in Toscana – AlTo, http://www.rete.toscana.it/sett/pta/suolo/difesa_suolo/alto/index.htm, 2007 (in Italian). </reference>
		<reference numeration="48" content_type="text"> Riestenberg, M. M.: Anchoring of thin colluvium by roots of Sugar maple and White ash on a hillslope in Cincinnati, US Geological Survey Bulletin, 2059-E, 1–25, 1994. </reference>
		<reference numeration="49" content_type="text"> Schwarz, M., Preti, F., Giadrossich, F., Lehmann, P., and Or, D.: Quantifying the role of vegetation in slope stability: A case study in Tuscany (Italy), Ecol. Eng., doi:10.1016/j.ecoleng.2009.06.014, in press, 2009 </reference>
		<reference numeration="50" content_type="text"> Schenk, H. J. and Jackson, R. B.: The Global Biogeography of Roots, Ecol. Monogr., 72(3), 311–328, 2002a. </reference>
		<reference numeration="51" content_type="text"> Schenk, H. J. and Jackson, R. B.: Rooting depths, lateral root spreads and below-ground/above-ground allometries of plants in water-limited ecosystems, J. Ecol., 90, 480–494, 2002b. </reference>
		<reference numeration="52" content_type="text"> Schmid, I. and Kazda, M.: Vertical distribution and radial growth of coarse roots in pure and mixed stands of \textitFagus sylvatica and \textitPicea abies, Can. J. Forest Res., 31, 539–548, 2001. </reference>
		<reference numeration="53" content_type="text"> Schmid, I. and Kazda, M.: Root distribution of Norway spruce in monospecific and mixed stands on different soils, Forest Ecol. Manag., 159, 37–47, 2002. </reference>
		<reference numeration="54" content_type="text"> Schmidt, K. M., Roering, J. J., Stock, J. D., Schaub, T., Dietrich, W. E., and Montgomery, D. R.: The variability of root cohesion as an influence on shallow landslide susceptibility in the Oregon Coast Range, Can. Geotech. J., 38, 995–1024, 2001. </reference>
		<reference numeration="55" content_type="text"> Sidle, R. C., Pearce, A. J., and O&apos;Loughlin, C. L.: Hillslope stability and land use, Water Resour. Monogr. Ser., AGU, Washington DC, 11, 140~pp., 1985. </reference>
		<reference numeration="56" content_type="text"> Sidle, R. C.: A theoretical model of the effects of timber harvesting on slope stability, Water Resour. Res., 28, 1897–1910, 1992. </reference>
		<reference numeration="57" content_type="text"> Stokes, A., Abd Ghani, M., Salin, F., Danjon, F., Jeannin, H., Berthier, S., Kokutse, A. D., and Frochot, H.: Root morphology and strain distribution during tree failure on mountain slopes, in: Eco- and ground bio-engineering: the use of vegetation to improve slope stability, Developments in Plant and Soil Sciences, edited by: Stokes, A., Spanos, I., Norris, J. E., and Cammeraat, L. H., Springer Publishers, Dordrecht, ISBN-10:~1-4020-5592-7, ISBN-13:~978-1-4020-5592-8, 103, 165–173, 2007. </reference>
		<reference numeration="58" content_type="text"> Stokes, A., Norris, J. E., van Beek, L. P. H., Bogaard, T., Cammeraat, E., Mickovski, S. B., Jenner, A., Di Iorio, A., and Fourcaud, T.: How vegetation reinforces soil, in: Slope stability and erosion control: Ecotechnological solutions, edited by: Norris, J. E., Stokes, A., Mickovski, S. B., Cammeraat, E., Van Beek, R., Nicoll, B. C., and Achim, A., Springer, 65–118, 2008. </reference>
		<reference numeration="59" content_type="text"> Tosi, M.: Root tensile strength relationships and their slope stability implications of three shrub species in the Northern Apennines (Italy), Geomorphology, 87, 268–283, 2007. </reference>
		<reference numeration="60" content_type="text"> Vogt, K. A. and Persson, H.: Root methods, in: Techniques and Approaches in Forest Tree Ecophysiology, edited by: Lassoie, J. P. and Hinckley, T. M., CRC Press, Boca Raton, Florida, 477–502, 1991. </reference>
		<reference numeration="61" content_type="text"> Waldron, L. J.: The shear stress resistance of root-permeated homogeneous and stratified soil, Soil Sci. Soc. Am. Pro., 41, 843–849, 1977. </reference>
		<reference numeration="62" content_type="text"> Wu, T. H.: Investigation on landslides on Prince of Wales Island, Alaska Geotech Rpt. No 5, Dpt. of Civil Eng., Ohio State Univ., Columbus, USA, 1976. </reference>
		<reference numeration="63" content_type="text"> Wu, T. H.: McKinnell III, W. P., and Swanston, D. N.: Strength of tree roots and landslides on Prince of Wales Island, Alaska, Can. Geotech. J., 16, 19–33, 1979. </reference>
		<reference numeration="64" content_type="text"> Wu, T. H.: Effect of vegetation on slope stability, in: Soil reinforcement and moisture effects on slope stability, Transportation Research Board, Washington, DC, 37–46, 1984a. </reference>
		<reference numeration="65" content_type="text"> Wu, T. H.: Soil movements on permafrost slopes near Fairbanks, Alaska, Can. Geotech. J., 21, 699–709, 1984b. </reference>
		<reference numeration="66" content_type="text"> Wu, T. H. and Sidle, R. C. A.: A distributed slope stability model for steep forested basins, Water Resour. Res., 31(8), 2097–2110, 1995. </reference>
		<reference numeration="67" content_type="text"> Ziemer, R. R.: Roots and stability of forested slopes, Erosion and sediment transport in Pacific Rim Steeplands, IAHS, Pub. No. 132, 343–361, 1981. </reference>
		<reference numeration="68" content_type="text"> Servizio Agrometereologico Regionale, Regione Toscana: http://agrometeo.arsia.toscana.it/, access: 1 May 2009 (in Italian). </reference>
	</references>
</article>

