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(Triticum aestivum L.)

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REFERENCES

1.Ahmadi, A., & A, A, Sio-Semardeh. 2004. The effect of water stress on soluble carbohydrates chlorophyll and proline content of four Iranian wheat cultivars and different moisture regimes.

Iranian Journal of Agricultural Science. 35 (3): 776-784.

2.Badrruuddin, M., M. Reynelds., & O. Ageeb. 1999. Wheat management in warm environments: Effect of organic and inorganic fertilizers, irrigation frequency and mulching. Agron. J. 91:975-983.

3.Entez, M. H., & D. B. Flower. 1990. Differential agronomic response of wheat cultivars to environmental stress. Crop Sci. 30:1119-1123.

4.Fernandez, G. J. 1992. Effective selection criteria for assessing plant stress tolerance. pp. 257-270.

In: Proceeding of the International Symposium on Adaptation of vegetables and other food crops In

Temperate and water stress. Taiwan.

5.Fischer, R. A., & Maurer. 1978. Drought resistance in spring wheat cultivars. I. Grain yield response.

Australian Journal of Agricultural Res. 29:897-912.

6.Hashemi-Dezfoli, A., & A. Marashi. 1995. Assimilate changes in flowering growth stage and its effect on grain growth, grain yield and yield components. Science and Agricultural Industries Journal. Mashhad, Iran. 9 (1): 16-32.

7.Hesami, A. 2000. A study of the correlation between grain filling period, grain yield and other agronomic characters of barley. 6th Iranian Agronomy and Plant Breeding Conference. Babolsar.

Iran.

8.Ma, Y. Z., C. Mackown, & D. A. Van Sanford. 1996. Differential effects of partial spikelet removal and defoliation on kernel growth and assimilate partitioning among wheat cultivars. Field Crops Res.

47 : 201 - 209.

9.Ma, Y. Z, C. T. Mackown, & D. A. Van Sanford. 1990. Sink manipulation in wheat: Compensatory changes in kernel size. Crop Sci. 30:l099-1105.

10.McCaig, T. N., & J. M. Clark. 1982. Seasonal changes in nonstructural carbohydrates levels of wheat and out grown in semiarid environment. Crop Sci. 22:963-970.

11.Modhej. A., & A. Banisaidi. 2007. Evaluation of source restriction intensifying of wheat spring heat (Triticum aestivum L.) genotypes under post-anthesis heat stress. International Journal of Applied Agricultural Research. 2 (1): 1- 11.

12.Modhej, A., & G. Fathi. 2008. Wheat Physiology. Islamic Azad University Press, Shoushtar, Iran.

13.Modhej, A., and S. Zakernejad. 2004. Effect of spikelet removal on grain weight of wheat and triticale genotypes. Annual Research Report of Islamic Azad University, Ahvaz, Iran.

14.Modhej, A., A. Naderi., Y. Emam., G. Normohamadi., & A. Ayenehband. 2008. Effects of post- anthesis heat stress and nitrogen levels on grain yield in wheat (T. durum and T. aestivum) genotypes.

International Journal of Plant Production. 2 (3): 257-267.

15.Naderi, A. 2000. A study of genetic diversity and modeling of assimilates and nitrogen

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16.Panozzo, J. F., & H. A. Eagles. 1999. Rate and duration of grain filling and grain nitrogen accumulation of wheat cultivars grown in different environments. Aust. J. of Agric. Res.

50(60):1007-1015.

17.Radmehr, M. 1997. Effect of heat stress on physiology of growth and development of wheat.

Ferdowsi University Press, Mashhad, Iran.

18.Radmehr, M., A. Lotfali-Ayeneh., & A, Naderi. 2004. A study of source-sink relationship of wheat genotypes under optimum and post-anthesis heat stress conditions. Iranian Agronomy Journal. 6 (2):

101-113.

19.Rawson H.M. 1988. Effect of high temperatures on the development and yield of wheat and practices to reduce deleterious effects. In: Klatt A.R., ed. Wheat production constrains in tropical environments. Mexico City: CIMMYT, 44-62.

20. Siadat, A., A. Modhej., & A. Naderi. 2004. Effect of post-anthesis heat stress on source restriction of wheat genotypes under Ahvaz conditions. 8th Iranian Agronomy and Breeding Conference, Karaj, Iran.

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