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Tree root characteristics as criteria for species selection and systems design in agroforestry

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Abstract

This literature review presents information about the role of tree root systems for the functioning of agroforestry associations and rotations and attempts to identify root-related criteria for the selection of agroforestry tree species and the design of agroforestry systems. Tree roots are expected to enrich soil with organic matter, feed soil biomass, reduce nutrient leaching, recycle nutrients from the subsoil below the crop rooting zone and improve soil physical properties, among other functions. On the other hand, they can depress crop yields in tree-crop associations through root competition. After a brief review of favourable tree root effects in agroforestry, four strategies are discussed as potential solutions to the dilemma of the simultaneous occurrence of desirable and undesirable tree root functions: 1) the selection of tree species with low root competitiveness, eventually supplemented by shoot pruning; 2) the identification of trees with a root distribution complementary to that of the crops; 3) the reduction of tree root length density by trenching or tillage; and 4) the use of agroforestry rotations instead of tree-crop associations. The potential and limitations of these strategies are discussed, and deficits in current understanding of tree root ecology in agroforestry are identified. In addition to the selection of tree species and provenances according to root-related criteria, the development of management techniques that allow the manipulation of tree root systems to maximize benefit and minimize competition are proposed as important tasks for future agroforestry research.

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References

  • Anderson LS and Sinclair FL (1993) Ecological interactions in agroforestry systems. Agroforestry Abstracts 6: 57–91

    Google Scholar 

  • Atayese MO, Awotoye OO, Osonubi O and Mulongoy K (1993) Comparisons of the influence of vesicular-arbuscular mycorrhiza on the productivity of hedgerow woody legumes and cassava at the top and the base of a hillslope in alley cropping systems. Biol Fertil Soils 16: 198–204

    Article  Google Scholar 

  • Atkinson D, Naylor D and Coldrick GA (1976) The effect of tree spacing on the apple root system. Hortic Res 16: 89–105

    Google Scholar 

  • Berish CW (1982) Root biomass and surface area in three successional tropical forests. Can J For Res 12: 699–704

    Google Scholar 

  • Bowen GD (1984) Tree roots and the use of soil nutrients. In: Bowen GD and Nambiar EKS (eds) Nutrition of Plantation Forests, pp 147–179. Academic Press, London, UK

    Google Scholar 

  • Bowen GD (1985) Roots as a component of tree productivity. In: Cannell MGR and Jackson JE (eds) Attributes of Trees as Crop Plants, pp 303–315. Institute of Terrestrial Ecology, Huntingdon, TN, USA

    Google Scholar 

  • Budelman A (1990) Woody legumes as live support systems in yam cultivation I. The treecrop interface. Agroforestry Systems 10: 47–59

    Google Scholar 

  • Caldwell MM and Richards JH (1986) Competing root systems: morphology and models of absorption. In: Givnish TJ (ed) On the Economy of Plant Form and Function, pp 251–273. Cambridge University Press, Cambridge, UK

    Google Scholar 

  • Cameron KC and Haynes RJ (1986) Retention and movement of nitrogen in soils. In: Haynes RJ (ed) Mineral Nitrogen in the Plant-Soil System, pp 166–241. Academic Press, Orlando, FL, USA

    Google Scholar 

  • Cazet M (1989) Les plantations linéaires denses sur les sols sableux dégradés de la zone centrenord du Sénégal. Bois Forêts Trop 222: 27–37

    Google Scholar 

  • Comerford NB, Kidder G and Mollitor AV (1984) Importance of subsoil fertility to forest and non-forest plant nutrition. In: Stone EL (ed) Forest Soils and Treatment Impacts. Proceedings of the Sixth North American Forest Soils Conference, Knoxville, June 1983, pp 381–404. University of Tennessee, Knoxville, TN, USA

    Google Scholar 

  • Cuenca G, Aranguren J and Herrera R (1983) Root growth and litter decomposition in a coffee plantation under shade trees. Plant Soil 71: 477–486

    Article  CAS  Google Scholar 

  • Danso SKA, Bowen GD and Sanginga N (1992) Biological nitrogen fixation in trees in agroecosystems. Plant Soil 141: 177–196

    Article  CAS  Google Scholar 

  • Dhyani SK, Narain P and Singh RK (1990) Studies on root distribution of five multipurpose tree species in Doon Valley, India. Agroforestry Systems 12: 149–161

    Article  Google Scholar 

  • Eastham J, Rose CW, Cameron DM, Rance SJ, Talsma T and Charles Edwards DA (1990) Tree/pasture interactions at a range of tree densities in an agroforestry experiment. II. Water uptake in relation to rooting patterns. Aust J Agric Res 41: 697–707

    Google Scholar 

  • Eissenstat DM (1992) Costs and benefits of constructing roots of small diameter. J Plant Nutr 15: 763–782

    Google Scholar 

  • Erdmann TK, Nair PKR and Kang BT (1993) Effects of cutting frequency and cutting height on reserve carbohydrates inGliricidia sepium (Jacq.) Walp. For Ecol Manage 57: 45–60

    Google Scholar 

  • FAO/Unesco (1990) Soil Map of the World, revised legend. Rome, 119 pp

  • Ferrier RC and Alexander IJ (1985) Persistence under field conditions of excised fine roots and mycorrhizas of spruce. In: Fitter AH, Atkinson D, Read DJ and Usher MB (eds) Ecological Interactions in Soil, pp 175–179. Blackwell Scientific Publications, Oxford, UK

    Google Scholar 

  • Ferrier RC and Alexander IJ (1991) Internal redistribution of N in Sitka spruce seedlings with partly droughted root systems. For Sci 37: 860–870

    Google Scholar 

  • Fox RH, Myers RJK and Vallis I (1990) The nitrogen mineralization rate of legume residues in soil as influenced by their polyphenol, lignin, and nitrogen contents. Plant Soil 129: 251–259

    CAS  Google Scholar 

  • Gehring CA and Whitham TG (1994) Interactions between aboveground herbivores and the mycorrhizal mutualists of plants. Trends Ecol Evol 9: 251–255

    Article  Google Scholar 

  • Ghosh SP, Nair GM, Pillai NG, Ramanujam T, Mohankumar B and Lakshmi KR (1987) Growth, productivity and nutrient uptake by cassava in association with four perennial species. Trop Agric (Trinidad) 64: 233–236

    Google Scholar 

  • Giller KE and Wilson KJ (1991) Nitrogen Fixation in Tropical Cropping Systems. CAB International, Wallingford, UK, 313 pp

    Google Scholar 

  • Haggar JP, Tanner EVJ, Beer JW and Kass DCL (1993) Nitrogen dynamics of tropical agroforestry and annual cropping systems. Soil Biol Biochem 25: 1363–1378

    Article  CAS  Google Scholar 

  • Hauser S (1993) Root distribution ofDactyladenia (Acioa) barteri andSenna (Cassia) siamea in alley cropping on Ultisol. I. Implication for field experimentation. Agroforestry Systems 24: 111–121

    Article  Google Scholar 

  • Helal HM and Sauerbeck D (1986) Effect of plant roots on carbon metabolism of soil microbial biomass. Z Pflanzenernähr Bodenk 149: 181–188

    CAS  Google Scholar 

  • Horst WJ (1991) Cropping systems and their effect on sustained soil productivity in the tropics. Göttinger Beitr Land Forstwirtsch Trop Subtrop 71: 243–268

    Google Scholar 

  • Hulugalle NR and Lal R (1986) Root growth of maize in a compacted gravelly tropical alfisol as affected by rotation with a woody perennial. Field Crops Res 13: 33–44

    Article  Google Scholar 

  • Huxley PA, Pinney A, Akunda E and Muraya P (1994) A tree/crop interface orientation experiment with aGrevillea robusta hedgerow and maize. Agroforestry Systems 26: 23–45

    Article  Google Scholar 

  • IAEA (1975) Root Activity Patterns of Some Tree crops. Technical Report Series 170. International Atomic Energy Agency, Vienna, Austria, 154 pp

    Google Scholar 

  • Jonsson K, Fidjeland L, Maghembe JA and Högberg P (1988) The vertical distribution of fine roots of five tree species and maize in Morogoro, Tanzania. Agroforestry System 6: 63–69

    Google Scholar 

  • Kandiah S, Wettasinghe DT and Wadasinghe G (1984) Root influence on shoot development in tea (Camellia sinensis (L.) O.Kuntze) following shoot pruning. J Hortic Sci 59: 581–587

    Google Scholar 

  • Kang BT (1993) Alley cropping: past achievements and future directions. Agroforestry Systems 23: 141–155

    Article  Google Scholar 

  • Kessler JJ and Breman H (1991) The potential of agroforestry to increase primary production in the Sahelian and Sudanian zones of West Africa. Agroforestry Systems 13: 41–62

    Article  Google Scholar 

  • Korwar GR and Radder GD (1994) Influence of root pruning and cutting interval ofLeucaena hedgerows on performance of alley croppedrabi sorghum. Agroforestry Systems 25: 95–109

    Article  Google Scholar 

  • Kummerow J, Castillanos J, Maas M and Larigauderie A (1990) Production of fine roots and the seasonality of their growth in a Mexican deciduous dry forest. Vegetatio 90: 73–80

    Article  Google Scholar 

  • Kutschera L (1983) Wurzel-Tropismen als Funktionen der Wasserabgabe und-aufnahme, die ‘Wassertheorie’. In: Böhm W, Kutschera L and Lichtenegger E (eds) Root Ecology and its Practical Application. International Symposium, Gumpenstein, 1982, pp 301–322. Bundesanstalt Gumpenstein, Irdning, Austria

    Google Scholar 

  • Kühne RF (1993) Wasser- und Nährstoffhaushalt in Mais-Maniok-Anbausystemen mit und ohne Integration von Alleekulturen (‘Alley cropping’) in Süd-Benin. Hohenheimer Bodenkundl. Hefte 13. Universität Hohenheim, Germany, 244 pp

    Google Scholar 

  • Lehmann J, Schroth G and Zech W (1995) Decomposition and nutrient release from leaves, twigs and roots of three alley-cropped tree legumes in central Togo. Agroforestry Systems 29: 21–36

    Article  Google Scholar 

  • Malik RS and Sharma SK (1990) Moisture extraction and crop yield as a function of distance from a row ofEucalyptus tereticornis. Agroforestry Systems 12:187–195

    Article  Google Scholar 

  • May FE and Ash JE (1990) An assessment of the allelopathic potential ofEucalyptus. Aust J Bot 38:245–254

    Article  Google Scholar 

  • Mchowa JW and Ngugi DN (1994) Pest complex in agroforestry systems: the Malawi experience. For Ecol Manage 64:277–284

    Article  Google Scholar 

  • Nambiar EKS (1987) Do nutrients retranslocate from fine roots? Can J For Res 17:913–918

    Google Scholar 

  • Neumann I (1984) Vom Nutzen der Bäume in der kleinbäuerlichen Landwirtschaft tropischer Bergländer. In: Rottach P (ed) Ökologischer Landbau in den Tropen, pp 250–262. C.F. Müller, Karlsruhe, Germany

    Google Scholar 

  • Nnadi LA and Balasubramanian V (1978) Root nitrogen content and transformation in selected grain legumes. Trop Agric (Trinidad) 55:23–32

    CAS  Google Scholar 

  • Nye PH and Greenland DJ (1960) The Soil under Shifting Cultivation. Commonwealth Bureau of Soils, Harpenden, UK, 144 pp

    Google Scholar 

  • Ong CK, Corlett JE, Singh RP and Black CR (1991) Above and below ground interactions in agroforestry systems. For Ecol Manage 45:45–57

    Article  Google Scholar 

  • Onyewotu LOZ, Ogigirigi MA and Stigter CJ (1994) A study of competitive effects between aEucalyptus camaldulensis shelterbelt and an adjacent millet (Pennisetum typhoides) crop. Agric Ecosyst Environ 51:281–286

    Google Scholar 

  • Palm CA and Sanchez PA (1990) Decomposition and nutrient release patterns of the leaves of three tropical legumes. Biotropica 22:330–338

    Google Scholar 

  • Palm CA and Sanchez PA (1991) Nitrogen release from the leaves of some tropical legumes as affected by their lignin and polyphenolic contents. Soil Biol Biochem 23:83–88

    Article  CAS  Google Scholar 

  • Publicover DA and Vogt KA (1993) A comparison of methods for estimating forest fine root production with respect to sources of error. Can J For Res 23:1179–1186

    Google Scholar 

  • Rao MR, Ong GK, Pathak P and Sharma MM (1991) Productivity of annual cropping and agroforestry systems on a shallow Alfisol in semi-arid India. Agroforestry Systems 15:51–63

    Google Scholar 

  • Rao MR, Muraya P and Huxley PA (1993) Observations of some tree root systems in agroforestry intercrop situations, and their graphical representation. Expl Agric 29:183–194

    Google Scholar 

  • Ruhigwa BA, Gichuru MP, Mambani B and Tariah NM (1992) Root distribution ofAcioa barteri, Alchornea cordifolia, Cassia siamea andGmelina arborea in an acid ultisol. Agroforestry Systems 19:67–78

    Article  Google Scholar 

  • Sandhu J, Sinha M and Ambasht RS (1990) Nitrogen release from decomposing litter ofLeucaena leucocephala in the dry tropics. Soil Biol Biochem 22:859–863

    Article  CAS  Google Scholar 

  • Schroth G, Kolbe D, Balle P and Zech W (1995a) Searching for criteria for the selection of efficient tree species for fallow improvement, with special reference to carbon and nitrogen. Fertilizer Res (in press)

  • Schroth G, Poidy N, Morshäuser T and Zech W (1995b) Effects of different methods of soil tillage and biomass application on crop yields and soil properties in agroforestry with high tree competition. Agric Ecosyst Environ 52:129–140

    Google Scholar 

  • Schroth G and Lehmann J (1995) Contrasting effects of roots and mulch from three agroforestry tree species on yields of alley cropped maize. Agric Ecosyst Environ (in press)

  • Schroth G and Zech W (1995a) Root length dynamics in agroforestry withGliricidia sepium as compared to sole cropping in the semi-deciduous rainforest zone of West Africa. Plant Soil 170:297–306

    CAS  Google Scholar 

  • Schroth G and Zech W (1995b) Above-and below-ground biomass dynamics in a sole cropping and an alley cropping system withGliricidia sepium in the semi-deciduous rainforest zone of West Africa. Agroforestry Systems (in press)

  • Seyfried MS and Rao PSC (1991) Nutrient leaching loss from two contrasting cropping systems in the humid tropics. Trop Agric (Trinidad) 68:9–18

    CAS  Google Scholar 

  • Siaw DEKA, Kang BT and Okali DUU (1991) Alley cropping withLeucaena leucocephala (Lam.) de Wit andAcioa barteri (Hook. f.) Engl. Agroforestry Systems 14:219–231

    Article  Google Scholar 

  • Sinclair FL, Verinumbe I and Hall JB (1994) The role of tree domestication in agroforestry. In: Leakey RRB and Newton A (eds) Tropical Trees: Potential for Domestication and the Rebuilding of Forest Resources, pp 124–136. HMSO, London, UK

    Google Scholar 

  • Singh GB (1987) Agroforestry in the Indian subcontinent: past, present and future. In: Steppler HA and Nair PKR (eds) Agroforestry: A Decade of Development, pp 117–138. International Council for Research in Agroforestry, Nairobi, Kenya

    Google Scholar 

  • Singh RP, Ong CK and Saharan N (1989) Above and below, ground interactions in alley-cropping in semi-arid India. Agroforestry Systems 9:259–274

    Google Scholar 

  • Smethurst PJ and Comerford NB (1993) Simulating nutrient uptake by single or competing and contrasting root systems. Soil Sci Soc Am J 57:1361–1367

    CAS  Google Scholar 

  • Soil Survey Staff (1992) Keys to Soil Taxonomy. SSMS technical monograph no. 19. Pocahontas Press, Inc, Blacksburg, VA, USA, 556 pp

    Google Scholar 

  • Srivastava SK, Singh KP and Upadhyay RS (1986) Fine root growth dynamics in teak (Tectona grandis Linn. F.). Can J For Res 16:1360–1364

    Google Scholar 

  • Ssekabembe CK (1985) Perspectives on hedgerow intercropping. Agroforestry Systems 3: 339–356

    Article  Google Scholar 

  • Stone EL and Kalisz PJ (1991) On the maximum extent of tree roots. For Ecol Manage 46: 59–102

    Article  Google Scholar 

  • Swift MJ (1984) Soil biological processes and tropical soil fertility. Biol Intern Spec Issue 5: 1–38

    Google Scholar 

  • Szott LT, Fernandes ECM and Sanchez PA (1991) Soil-plant interactions in agroforestry systems. For Ecol Manage 45:127–152

    Article  Google Scholar 

  • Toky OP and Bisht RP (1992) Observations on the rooting patterns of some agroforestry trees in an arid region of north-west India. Agroforestry Systems 18:245–263

    Article  Google Scholar 

  • Vandenbeldt RJ (1991) Rooting systems of western and southern AfricanFaidherbia albida (Del.) A. Chev: (syn.Acacia albida Del.) — a comparative analysis with biogeographical implications. Agroforestry Systems 14:233–244

    Google Scholar 

  • Van Noordwijk M (1989) Rooting depth of cropping systems in the humid tropics in relation to nutrient use efficiency. In: Van der Heide J (ed) Nutrient Management for Food Crop Production in Tropical Farming Systems, pp 129–144. Institute for Soil Fertility, Haren, The Netherlands

    Google Scholar 

  • Van Noordwijk M, Hairiah K, Ms S and Flach E N (1991a)Peltophorum pterocarpa (DC.) Back (Caesalpiniaceae), a tree with a root distribution suitable for alley cropping on acid soils in the humid tropics. In: McMichael BL and Persson H (eds) Plant Roots and Their Environment, pp 526–532. Elsevier, Amsterdam, The Netherlands

    Google Scholar 

  • Van Noordwijk M, Widianto, Heinen M and Hairiah K (1991b) Old tree root channels in acid soils in the humid tropics: Important for crop root penetration, water infiltration and nitrogen management. Plant Soil 134:37–44

    Google Scholar 

  • Van Rees KCJ and Comerford NB (1986) Vertical root distribution and strontium uptake of a slash pine stand on a Florida spodosol. Soil Sci Soc Am J 50:1042–1046

    Google Scholar 

  • Wardle DA and Greenfield LG (1991) Release of mineral nitrogen from plant root nodules. Soil Biol Biochem 9:827–832

    Google Scholar 

  • Yamoah CF, Agboola AA and Wilson GF (1986) Nutrient contribution and maize performance in alley cropping systems. Agroforestry Systems 4:247–254

    Google Scholar 

  • Yocum WW (1937) Root development of young delicious apple trees as affected by soils and by cultural treatments. Univ Nebrasca Agric Exp Stat Res Bull 95:1–55

    Google Scholar 

  • Young A (1989) Agroforestry for Soil Conservation. CAB International, Wallingford, UK, 276 pp

    Google Scholar 

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Schroth, G. Tree root characteristics as criteria for species selection and systems design in agroforestry. Agroforest Syst 30, 125–143 (1995). https://doi.org/10.1007/BF00708917

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