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Agronomy & Crop Ecology

Varietal Difference in Early Vegetative Growth during Seedling Stage in Soybean

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Pages 77-83 | Received 12 Sep 2011, Accepted 07 May 2012, Published online: 03 Dec 2015

  • Brown, C.S. and Huber, S.C. 1987. Photosynthesis, reserve mobilization and enzymes of sucrose metabolism in soybean (Glycine max) cotyledons. Physiol. Plant. 70: 537-543.
  • Burris, J.S., Edje, O.T. and Wahab, A.H. 1973. Effects of seed size on seedling performance in soybean: II. Seedling growth and photosynthesis and field performance. Crop Sci. 13: 207-210.
  • Colete, J.C.F., Vieira, R.D. and Dutra, A.S. 2004. Electrical conductivity and soybean seedling emergence. Sci. Agric. (Piracicaba, Braz.) 61: 386-391.
  • Garrity, D.P., Movillon, M. and Moody, K. 1992. Differential weed suppression ability in upland rice cultivars. Agron. J. 84: 586-591.
  • Hamman B., Egli, D.B. and Koning, G. 2002. Seed vigor, soilborne pathogens, preemergent growth, and soybean seedling emergence. Crop Sci. 42: 451-457.
  • Hanley, M.E. and May O.C. 2006. Cotyledon damage at the seedling stage affects growth and flowering potential in mature plants. New Phytol. 169: 243-250.
  • Harris, M., Mackender, R.O. and Smith, D.L., 1986. Photosynthesis of cotyledons of soybean seedlings. New Phytol. 104: 319-329.
  • Hogan, K.P. 1988. Photosynthesis in two neotropical palm species. Funct. Ecol. 2: 371-377.
  • Ikeda, K. and Kiso, M. 1981. On the role of cotyledon in early growth of soybean plants. Rep. Tokai Br. Crop Sci. Soc. Japan 91: 11-14*.
  • Jannink, J.-L., Orf, J.H., Jordan, N.R. and Shaw, R.G. 2000. Index selection for weed suppressive ability in soybean. Crop Sci. 40: 1087-1094.
  • Johnson, D.E., Dingkuhn M., Jones, M.P. and Mahamane, M.C. 1998. The influence of rice plant type on the effect of weed competition on Oryza. sativa and Oryza. glaberrima. Weed Res. 38: 207-216.
  • Kawano, K., Gonzalez, H., and Lucena, M. 1974. Intraspecific competition, competition with weeds, and spacing response in rice. Crop Sci. 14: 841-845.
  • Kitajima, K. 2003. Impact of cotyledon and leaf removal on seedling survival in three tree species with contrasting cotyledon functions. Biotropica 35: 429-434.
  • Kokubun, M., Mochida, H. and Asahi, Y. 1988. Soybean cultivar difference in leaf photosynthetic rate and its relation to seed yield. Jpn. J. Crop. Sci. 57: 743-748.
  • Leishman, M.R. and Westoby, M. 1994. Hypotheses on seed size: tests using the semiarid flora of western New South Wales, Australia. Am. Nat. 143: 890-906.
  • Longer D.E., Lorenz, E.J. and Cothren, J.T. 1986. The influence of seed size on soybean [Glycine max (L.) Merrill] emergence under simulated soil crust conditions. Field Crops Res. 14: 371-375.
  • Makino, A., Sato, T., Nakano, H. and Mae, T. 1997. Leaf photosynthesis, plant growth and nitrogen allocation in rice under different irradiances. Planta 203: 390-398.
  • Marek, L.F. and Stewart, C.R. 1992. Photosynthesis and photorespiration in presenescent, senescent, and rejuvenated soybean cotyledons. Plant Physiol. 98: 694-699.
  • McAlister, D.F. and Krober, O.A. 1951. Translocation of food reserves from soybean cotyledons and their influence on the development of the plant. Plant Physiol. 26: 525-538.
  • Milberg, P. and Lamont, B.B. 1997. Seed/cotyledon size and nutrient content play a major role in early performance of species on nutrient-poor soils. New Phytol. 137: 665-672.
  • Nelson, C.J. and Larson, K.L. 1984. Seedling growth. In M.B. Tesar ed., Physiological basis of crop growth and development. Americans Society of agronomy, Crop Science Society of America, Inc. Madison, WI. 93-129.
  • Ojima, M. and Kawashima, R. 1968. Studies on the seed production of soybean: 5. Varietal differences in photosynthetic rate of soybean. Proc. Crop Sci. Soc. Japan 37: 667-675**.
  • Peterman. T.K. and Siedow, J.N. 1985. Behavior of lipoxygenase during establishment, senescence, and rejuvenation of soybean cotyledon. Plant Physiol. 78: 690-695.
  • Ramana, S., Ajay, Singh, A.B. and Yadava, R.B.R. 2003. Role of cotyledons in regulation of physio-biochemical components of soybean (Glycine max L.). Indian J. Agric. Res. 37: 204-208.
  • Sadeghi, H., Khazaei, F., Yari, L. and Sheidaei, S. 2011. Effect of seed osmopriming on seed germination behavior and vigor of soybean (Glycine max L.). ARPN Journal of Agricultural and Biological Science 6: 39-43.
  • Trimble, L.A. and Fehr, W.R. 2010. Genetic improvement of seedling emergence of low-phytate soybean lines. Crop Sci. 50: 67-72.
  • Zhang, H., Zhou, D., Matthew, C., Wang, P. and Zheng, W. 2008. Photosynthetic contribution of cotyledons to early seedling development in Cynoglossum divaricatum and Amaranthus retroflexus. New Zeal. J. Bot. 46: 39-48.
  • Zhao, D.L., Atlin, G.N., Bastiaans, L. and Spiertz, J.H.J. 2006. Cultivar weed-competitiveness in aerobic rice: heritability, correlated traits, and the potential for indirect selection in weed-free environments. Crop Sci. 46: 372-380.
  • Zheng, W., Wang, P., Zhang, H. and Zhou, D. 2011. Photosynthetic characteristics of the cotyledon and first true leaf of castor (Ricinus communis L.). Aust. J. Crop Sci. 5: 702-708.