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Impact of early root competition on fitness components of four semiarid species

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Summary

Plant demographic and root exclusion approaches were used to examine the influence of roots of adult Artemisia tridentata, Agropyron desertorum, and Agropyron spicatum individuals on seedling survival of four C3 semiarid species, three perennials, Ar. tridentata, Ag. desertorum, Ag. spicatum, and an annual, Bromus tectorum. Furthermore, height of Ar. tridentata seedlings and seed production of B. tectorum were assessed. The probability of a seedling being alive significantly depended on the seedling species, the neighboring adult species, and on the depth to which root competition was excluded. As seedlings, survival of Agropyron species did not differ, whereas survival of Ar. tridentata seedlings was higher than Ag. desertorum and was similar to Ag. spicatum. Bromus tectorum maintained significantly higher survival rates than perennial seedlings. Established individuals of Ar. tridentata reduced seedling survival more than established individuals of either Agropyron species. Seedling survival significantly increased with greater depth of root exclusion for the perennials but did not significantly affect seedling survival of B. tectorum. Height of Ar. tridentata seedlings and seed production of B. tectorum significantly increased with depth of root exclusion. Seed production of B. tectorum was highest when competing with Ag. desertorum and was lowest with Ar. tridentata. Root competition decreased the seed population of B. tectorum in the next generation even though it had no impact on survival. Competition in the upper soil horizon occurs between seedlings and established adults early in the growing season and potentially restricts root growth of seedlings. In arid and semiarid ecosystems, soil moisture is depleted from the upper horizons first, resulting in the death of seedlings that do not have access to moisture.

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References

  • Aguirre L (1989) Early seedling development in three range grasses as influenced by temperature, drought, and competition. PhD Dissertation, Utah State University, Logan, Utah, USA

  • Barkworth ME, Dewey DR (1985) Genomically based genera in the perennial Triticeae of North America: identification and membership. Am J Bot 72:767–776

    Google Scholar 

  • Caldwell MM, Richards JH (1986) Competing root systems: morphology and models of absorption. In: Givnish TJ (ed) On the economy of plant form and function. Cambridge Univ Press, Cambridge, pp 251–273

    Google Scholar 

  • Caldwell MM, Virginia RA (1989) Root systems. In: Percy RW, Ehleringer JR, Mooney HA, Rundel P (eds) Plant physiological ecology: field methods and instrumentation. Chapman and Hall, London, pp 367–398

    Google Scholar 

  • Caldwell MM, White RS, Moore RT, Camp LB (1977) Carbon balance, productivity and water use of cold-winter desert shrub communities dominated by C3 and C4 species. Oecologia 29:275–300

    Google Scholar 

  • Caldwell MM, Dean TJ, Nowak RS, Dzurec RS, Richards JH (1983) Bunchgrass architecture, light interception, and wateruse efficiency: assessment by fiber optic point quadrants and gas exchange. Oecologia 59:178–184

    Google Scholar 

  • Caldwell MM, Eissenstat DM, Richards JH, Allen MF (1985) Competition for phosphorus: differential uptake from dualisotope-labeled soil interspaces between shrub and grass. Science 229:384–386

    Google Scholar 

  • Clarkson DT (1985) Factors affecting mineral nutrient acquisition by plants. Ann Rev Plant Physiol 36:77–115

    Google Scholar 

  • Connell JH (1983) On the prevalence and relative importance of interspecific competition: evidence from field experiments. In: Salt GW (ed) Ecology and evolutionary biology. The Univ of Chicago Press, Chicago, USA, pp 81–116

    Google Scholar 

  • Cook SJ, Ratcliff D (1984) A study of the effects of root and shoot competition on the growth of green panic (Panicum maximum var. trichoglume) seedlings in an existing grassland using root exclusion tubes. J Appl Ecol 21:971–982

    Google Scholar 

  • Denslow JS (1985) Disturbance-mediated coexistence of species. In: Pickett STA, White PS (eds) The ecology of natural disturbance and patch dynamics. Academic Press, Orlando, Florida, pp 307–320

    Google Scholar 

  • Eissenstat DM, Caldwell MM (1988) Competitive ability is linked to rates of water extraction. A field study of two aridland tussock grasses. Oecologia 75:1–7

    Google Scholar 

  • Fienberg SE (1980) The analysis of cross-classified categorical data. Massachusetts Institute of Technology Press, Cambridge, Massachusetts, USA

    Google Scholar 

  • Fowler N (1986) The role of competition in plant communities in arid and semiarid regions. Ann Rev Ecol Syst 17:89–110

    Google Scholar 

  • Harper JL (1977) Population biology of plants. Academic Press, London New York

    Google Scholar 

  • Harris GA (1967) Some competitive relationships between Agropyron spicatum and Bromus tectorum. Ecol Monog 37:89–111

    Google Scholar 

  • Harris GA (1977) Root phenology as a factor of competition among grass seedlings. J Range Manage 30:172–177

    Google Scholar 

  • Harris GA, Wilson AM (1970) Competition for moisture among seedlings of annual and perennial grasses as influenced by root elongation at low temperature. Ecology 41:530–534

    Google Scholar 

  • Heisey DM (1985) Analyzing selection experiments with log-linear models. Ecology 66:1744–1748

    Google Scholar 

  • Hironaka M, Fosberg MA, Winward AH (1983) Sagebrush-grass habitat types southern Idaho. Forest, Wildlife, and Range Exp Sta, University of Idaho, Moscow, USA

    Google Scholar 

  • Hulbert LC (1955) Ecological studies of Bromus tectorum and other annual bromegrasses. Ecol Monog 25:181–213

    Google Scholar 

  • Mack RN, Pyke DA (1984) The demography of Bromus tectorum: the role of microclimate, grazing and disease. J Ecol 72:731–748

    Google Scholar 

  • Nowak RS, Caldwell MM (1984) Photosynthetic activity and survival of foliage during winter for two bunchgrass species in a cold-winter steppe environment. Photosynthetica 18:192–200

    Google Scholar 

  • Owens MK, Norton BE (1989) The impact of ‘available area’ on Artemisia tridentata seedling dynamics. Vegetatio 82:155–162

    Google Scholar 

  • Parker MA, Root RB (1981) Insect herbivores limit habitat destribution of a native composite Machaeranthera canescens. Ecology 62:1390–1392

    Google Scholar 

  • Peto R, Pike MC (1973) Conservation of the approximation Σ(O-E)2/E in the logrank test for survival data or tumor incidence data. Biometrics 29:579–584

    Google Scholar 

  • Pyke DA (1986) Demographic responses of Bromus tectorum and seedlings of Agropyron spicatum to grazing by small mammals: occurrence and severity of grazing. J Ecol 74:739–754

    Google Scholar 

  • Pyke DA (1990) Comparative demography of co-occurring introduced and native tussock grasses: persistence and potential expansion. Oecologia 82:537–543

    Google Scholar 

  • Pyke DA, Thomspon JN (1986) Statistical analysis of survival and removal rate experiments. Ecology 67:240–245

    Google Scholar 

  • Roughgarden J (1983) Competition and theory in community ecology. In: Salt GW (ed) Ecology and evolutionary biology. The Univ of Chicago Press, Chicago, USA, pp 3–21

    Google Scholar 

  • Salihi D, Norton BE (1987) Survival of perennial grass seedlings under intensive grazing in semiarid rangelands. J Appl Ecol 24:145–153

    Google Scholar 

  • Schoener TW (1983) Field experiments on interspecific competition. Am Nat 122:240–285

    Google Scholar 

  • Stewart G, Hull AC (1949) Cheatgrass (Bromus tectorum L.) —An ecologic intruder in southern Idaho. Ecology 30:58–74

    Google Scholar 

  • Stoddart LA (1941) The Palouse grassland association in northern Utah. Ecology 22:158–163

    Google Scholar 

  • Strong DR (1983) Natural variability and the manifold mechanisms of ecological communities. In: Salt GW (ed) Ecology and evolutionary biology. The Univ of Chicago Press, Chicago, USA, pp 56–80

    Google Scholar 

  • Tilman D (1982) Resource competition and community structure. Princeton Univ Press, Princeton, New Jersey, USA

    Google Scholar 

  • Watkinson AR (1986) Plant population dynamics. In: Crawley MJ (ed) Plant ecology. Blackwell Scientific Publications, Oxford, London, Edinburgh, pp 51–84

    Google Scholar 

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Reichenberger, G., Pyke, D.A. Impact of early root competition on fitness components of four semiarid species. Oecologia 85, 159–166 (1990). https://doi.org/10.1007/BF00319397

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