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Growth of lucerne (Medicago sativa, L.) in response to frequency of irrigation and gypsum application on a heavy clay soil

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Summary

Effects of weekly (W) and fortnightly (F) irrigation schedules on established stands of lucerne (Medicago sativa L.) grown on gypsum treated (G) and untreated (C) heavy clay soil were investigated. Two irrigations were applied under the fortnightly regime and four under the weekly schedule during a single cutting cycle. Growth and light interception were measured during both the vegetative and mature phases of growth.

Leaf expansion, light interception and dry matter production were greater under treatments W G and W C, with yield increasing from 3.4 t ha−1 under the fortnightly schedule to 5.0 t ha-1 with weekly irrigation. Gypsum treatment was effective under the more frequent irrigation schedule. Specific leaf area and the proportion of stem were both increased by treatments W G and W C. The responses to irrigation were therefore characteristic of those elicited by a more favourable plant moisture status. Growth was analysed in terms of light interception, the efficiency of utilisation of intercepted light, the proportion of the daily dry matter gain retained by the leaves and leaf expansion. The analysis demonstrated that impaired leaf expansion contributed to a decline of approximately 15% in yield, and that impaired efficiencies of utilisation of intercepted light contributed to losses of approximately 30% under the less frequent irrigation schedule.

A comparison of growth rates and efficiencies of energy conversion with published data showed that satisfactory rates of growth and levels of productivity were achieved on the heavy soils of the local region using gypsum treatment and the more frequent irrigation schedule.

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References

  • Acock B, Thornley JHM, Warren-Wilson J (1970) Spatial variation of light in the canopy. In: Prediction and Measurement of Photosynthetic Productivity. Pudoc, Wageningen, pp 91–102

    Google Scholar 

  • Bauder JW, Bauer A, Ramirez JM, Cassel DK (1978) Alfalfa water use and production on dryland and irrigated sandy loam. Agron J 70:95–99

    Google Scholar 

  • Bridge BJ, Tunny J (1982) The effects of gypsum and irrigation frequency on irrigated white clover pasture grown on three soils of the Riverine Plain of South-eastern Australia. Aust J Exp Agric Anim Husb 22:194–200

    Google Scholar 

  • Britton CM, Dodd JD (1976) Relationship of photosynthetically active radiation and shortwave irradiance. Agric Meteorol 17:1–7

    Google Scholar 

  • Brown RH, Pearce RB, Wolf DD, Blaser RE (1972) Energy accumulation and utilization. In: Hanson CH (ed) Alfalfa Science and Technology. American Soc Agronomy, Madison, Wisconsin, USA, pp 143–166

    Google Scholar 

  • Brown PW, Tanner CB (1983) Alfalfa stem and leaf growth during water stress. Agron J 75:799–805

    Google Scholar 

  • Bula RJ, Massengale MA (1972) Environmental physiology. In: Hanson CH (ed) Alfalfa Science and Technology. American Society Agronomy, Madison, Wisconsin, USA, pp 167–184

    Google Scholar 

  • Carter PR, Shaeffer CC (1983) Alfalfa response to soil water deficits. I. Growth, forage quality, yield, water use, and water-use efficiency. Crop Sci 23:669–675

    Google Scholar 

  • Charles-Edwards DA (1981) The mathematics of photosynthesis and productivity. Academic Press, London, p 127

    Google Scholar 

  • Charles-Edwards DA (1982) Physiological determinants of crop growth. Academic Press, London, p 161

    Google Scholar 

  • Charles-Edwards DA, Fisher MJ (1980) A physiological approach to the analysis of crop growth data. I. Theoretical considerations. Ann Bot 46:413–423

    Google Scholar 

  • Christian KR (1977) Effects of environment on the growth of alfalfa. Adv Agron 29:183–227

    Google Scholar 

  • Cockroft B, Martin FM (1981) Irrigation. In: Oades JM, Lewis DG, Norrish K (eds) Redbrown earths of Australia. Waite Agric Res Inst, SA, CSIRO Div Soils, SA, pp 133–148

    Google Scholar 

  • Evans DW, Peaden RN (1984) Seasonal forage growth rate and solar energy conversion of irrigated vernal alfalfa. Crop Sci 24:981–984

    Google Scholar 

  • Fisher MJ, Charles-Edwards DA, Campbell NA (1980) A physiological approach to the analysis of crop growth data. II. Growth of Stylosanthes humilis. Ann Bot 46:425–434

    Google Scholar 

  • Gifford RO, Jensen EH (1967) Some effects of soil moisture regime and bulk density on forage quality in the green-house. Agron J 59:75–77

    Google Scholar 

  • Hanks RJ (1983) Yield and Water-Use Relationships: An Overview. In: Taylor HM, Jordan WR, Sinclair TR (eds) Limitations to Efficient Water Use in Crop Production. American Soc Agronomy, Crop Sci Soc, America, Soil Sci Soc, America. Madison, Wisconsin, USA, pp 393–411

    Google Scholar 

  • Hodgkinson KC (1974) Influence of partial defoliation on photosynthesis, photorespiration and transpiration of lucerne leaves of different ages. Aust J Plant Physiol 1:561–578

    Google Scholar 

  • Hsiao TC, Acevedo E (1974) Plant responses to water deficits, water use efficiency, and drought resistance. Agric Meteorol 14:59–84

    Google Scholar 

  • Hsiao TC, Ferreres E, Acevedo E, Henderson DW (1976) Water status and dynamics of growth and yield of crop plants. In: Lange OL, Kappen L, Schulze ED (eds) Water and plant life: problems and modern approaches. Springer-Verlag, Berlin Heidelberg New York, pp 281–305

    Google Scholar 

  • Jodari-Karimi F, Watson V, Hodges H, Whisler F (1983) Root distribution and water use efficiency of alfalfa as influenced by depth of irrigation. Agron J 75:207–211

    Google Scholar 

  • Jung GA, Larson KL (1972) Cold, drought and heat tolerance. In: Hanson CH (ed) Alfalfa science and technology. American Soc Agronomy, Madison, Wisconsin, USA, pp 185–206

    Google Scholar 

  • Lechtenberg VL, Holt DA, Youngberg HW (1971) Diurnal variation in nonstructural carbohydrates, in vitro digestibility, and leaf to stem ratio of alfalfa. Agron J 63:719–724

    Google Scholar 

  • Loveday J, Saunt JE, Fleming PM, Muirhead WA (1970) Soil and cotton responses to tillage and ameliorant treatments in brown clay soil. I. Soil responses and water use. Aust J Exp Agric Anim Hush 10:313–324

    Google Scholar 

  • Lowe CC, Marble VL, Rumbaugh MD (1972) Adaptation, varieties and usage. In: Hanson CH (ed) Alfalfa science and technology. American Soc Agronomy, Madison, Wisconsin, USA, pp 391–413

    Google Scholar 

  • McFarlane JD, Tomes GJ, King GW (1974) Seasonal progressions in yield and daily growth rate of irrigated lucerne under different frequencies of defoliation. Proceedings of the 12th International Grassland Congress, Moscow, pp 458–464

  • Metochis C (1980) Irrigation of lucerne under semi-arid conditions. Irrig Sci 1:247–252

    Google Scholar 

  • Monteith JL (1969) Light interception and radiative exchange in crop stands. In: Eastin JD, Haskins FA, Sullivan CY, Bavel CHM van (eds) Physiological aspects of crop yield. American Soc of Agronomy, Crop Sci Soc of America, Madison, Wisconsin, USA, pp 89–113

    Google Scholar 

  • Muirhead WA, Loveday J, Saunt JE (1970) Soil and cotton responses to tillage and ameliorant treatments in brown clay soil. II. Growth, yield and quality of cotton. Aust J Exp Agric Anim Husb 10:325–333

    Google Scholar 

  • Northcote KH (1979) A factual key for the recognition of australian soils. Rellim Tech Publ, SA, p 123

    Google Scholar 

  • Ogata G, Richards LA, Gardner WR (1960) Transpiration of alfalfa determined from soil water content changes. Soil Sci 89:179–182

    Google Scholar 

  • Pearce RB, Fissel G, Carlson GE (1969) Carbon uptake and distribution before and after defoliation of alfalfa. Crop Sci 9:756–759

    Google Scholar 

  • Perry LD, Larson KL (1974) Influence of drought on tillering and internode length in alfalfa. Agron J 14:693–696

    Google Scholar 

  • Peterson HB (1972) Water relationships and irrigation. In: Hanson CH (ed) Alfalfa science and technology. American Soc Agronomy, Madison, Wisconsin, USA, pp 469–480

    Google Scholar 

  • Potter JR, Jones JW (1977) Leaf area partitioning as an important factor in growth. Plant Physiol 59:10–14

    Google Scholar 

  • Smith D (1972) Cutting schedules and maintaining pure stands. In: Hanson CH (ed) Alfalfa science and technology. American See Agronomy, Madison, Wisconsin, USA, pp 481–496

    Google Scholar 

  • Snaydon RW (1972a) The effect of total water supply, and of frequency of application, upon lucerne. I. Dry matter production. Aust J Agric Res 23:239–251

    Google Scholar 

  • Snaydon RW (1972b) The effect of total water supply, and of frequency of application, upon lucerne. II. Chemical composition. Aust J Agric Res 23:239–251

    Google Scholar 

  • Szeicz G, Monteith JL, Santos JM dos (1964) Tube solarimeter to measure radiation among plants. J Appl Ecol 1:169–175

    Google Scholar 

  • Vough CR, Marten GC (1971) Influence of soil moisture and ambient temperature on yield and quality of alfalfa forage. Agron J 63:40–42

    Google Scholar 

  • Wilfong RT, Brown RH, Blaser RE (1967) Relationships between leaf area index and apparent photosynthesis of alfalfa (Medicago sativa L.) and Ladino clover (Trifolium repens L.). Crop Sci 7:27–30

    Google Scholar 

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Whitfield, D.M., Wright, G.C., Gyles, O.A. et al. Growth of lucerne (Medicago sativa, L.) in response to frequency of irrigation and gypsum application on a heavy clay soil. Irrig Sci 7, 37–52 (1986). https://doi.org/10.1007/BF00255693

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  • DOI: https://doi.org/10.1007/BF00255693

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