136
traditional cultivation. This high percentage of increase in wheat production
increased wheat self-sufficiency ratio to 85%, respectively. The highest water productivity values were found under application of deficit irrigation and implementing
intercropping systems.
References
Abd El-Zaher SR, Shams AS, Mergheny MM (2013) Effect of intercropping pattern and nitrogen
fertilization on intercropping wheat with tomato. Egypt J Appl Sci 28(9):474–489
Abdelraouf RE, El Habbasha SF, Taha MH, Refaie KM (2013) Effect of irrigation water requirements and fertigation levels on growth, yield and water use efficiency in wheat. Middle-East
J Sci Res 16(4):441–450. https://doi.org/10.5829/idosi.mejsr.2013.16.04.11733.
Abdrabbo MAA, Ouda S, Noreldin T (2013) Modeling effect of irrigation schedule on wheat
under climate change. Nat Sci 11(5):10–18
Aboelenein R, Sherif M, Karrou M, Oweis T, Benli B, Farahani H (2011) Towards sustainable and
improved water productivity in the old lands of Nile Delta. In: Water benchmarks of CWANA –
improving water and land productivities in irrigated systems
Abou-Elela AM (2012) Effect of intercropping system and sowing dates of wheat intercropping
with sugar beet. J Plant Prod 3(12):3101–3116
Abouelenein R, Oweis T, El Sherif M, Awad H, Foaad F, Abd El Hafez S, Hammam A, Karajeh F,
Karo M, Linda A (2009) Improving wheat water productivity under different methods of irrigation management and nitrogen fertilizer rates. Egypt J Appl Sci 24(12A):417–431
Aegic (2015) Global grain market series: Egypt. Australian Export Grain Innovation Center April
2015
Ahmed AM, Ahmed NR, Khalil SRA (2013) Effect of intercropping wheat on productivity and
quality of some promising sugarcane cultivars. Minia J Agric Res Develop 33(4):557–583
Ahmad IM, Qubal B, Ahmad G, Shah NH (2009) Maize yield, plant tissue and residual soil N as
affected by nitrogen management and tillage system. J Agric Biol Sci 1(1):19–29
Andersen MK (2005) Competition and complementarily in annual intercrops—the role of plant
available nutrients. PhD thesis, Department of Soil Science, Royal Veterinary and Agricultural
University, Copenhagen, Denmark. SamfundslitteraurGrafik, Frederiksberg, Copenhagen.
Batista TMV, Bezerra FN, Silva IN, Da Silva ML, De Oliveira EQ, Junior APB (2016) Agronomic
efficiency of the intercropping of arugula with carrot under different population combinations.
Rev Caatinga Mossoró 29(1):76–84
Bray EA (1993) Molecular responses to water deficit. Plant Physiol 103:1035–1040
Chai Q, Gan Y, Zhao C, Xu H-L, Waskom RM, Niu Y, Siddique KH (2016) Regulated deficit irrigation for crop production under drought stress. A review. Agron Sustain Dev 36:3
Cunha GR, Pires JLF, Dalmago GA, Caierão E, Pasinato A (2009) Trigo. In: Monteiro JEBA
(Org). Agrometeorologia dos cultivos: o fator meteorológico na produção agrícola. Brasília,
530 p
del Pozo A, Yanez A, Matus IA, Tapia G, Castillo D, Sanchez-Jardon L et al (2016) Physiological
traits associated with wheat yield potential and performance under water-stress in a
Mediterranean environment. Front Plant Sci 7:987. https://doi.org/10.3389/fpls.2016.00987
Dey D, Nath D, Jamatia PB (2015) Effect of raised bed planting method of maize under sandy
loam soil of West Tripura. Int J Appl Res 1(7):561–563
Dias LB (2008) Água nas plantas. Monograph, Universidade Federal de Lavras, Lavras-MG, 53 p
Dunn F, Williams J, Verberg K, Keating BA (1999) Can agricultural catchment emulate natural
ecosystems in recharge control in southeastern Australia? Agrofor Syst 45:343–364
Fernandez-Munoz R, Gonzalez-Fernandez JJ, Cuartero J (1995) Variability of pollen tolerance to
low temperatures in tomato and related with species. J Hortic Sci 70:41–49
A. E.-H. Zohry and S. Ouda
traditional cultivation. This high percentage of increase in wheat production
increased wheat self-sufficiency ratio to 85%, respectively. The highest water productivity values were found under application of deficit irrigation and implementing
intercropping systems.
References
Abd El-Zaher SR, Shams AS, Mergheny MM (2013) Effect of intercropping pattern and nitrogen
fertilization on intercropping wheat with tomato. Egypt J Appl Sci 28(9):474–489
Abdelraouf RE, El Habbasha SF, Taha MH, Refaie KM (2013) Effect of irrigation water requirements and fertigation levels on growth, yield and water use efficiency in wheat. Middle-East
J Sci Res 16(4):441–450. https://doi.org/10.5829/idosi.mejsr.2013.16.04.11733.
Abdrabbo MAA, Ouda S, Noreldin T (2013) Modeling effect of irrigation schedule on wheat
under climate change. Nat Sci 11(5):10–18
Aboelenein R, Sherif M, Karrou M, Oweis T, Benli B, Farahani H (2011) Towards sustainable and
improved water productivity in the old lands of Nile Delta. In: Water benchmarks of CWANA –
improving water and land productivities in irrigated systems
Abou-Elela AM (2012) Effect of intercropping system and sowing dates of wheat intercropping
with sugar beet. J Plant Prod 3(12):3101–3116
Abouelenein R, Oweis T, El Sherif M, Awad H, Foaad F, Abd El Hafez S, Hammam A, Karajeh F,
Karo M, Linda A (2009) Improving wheat water productivity under different methods of irrigation management and nitrogen fertilizer rates. Egypt J Appl Sci 24(12A):417–431
Aegic (2015) Global grain market series: Egypt. Australian Export Grain Innovation Center April
2015
Ahmed AM, Ahmed NR, Khalil SRA (2013) Effect of intercropping wheat on productivity and
quality of some promising sugarcane cultivars. Minia J Agric Res Develop 33(4):557–583
Ahmad IM, Qubal B, Ahmad G, Shah NH (2009) Maize yield, plant tissue and residual soil N as
affected by nitrogen management and tillage system. J Agric Biol Sci 1(1):19–29
Andersen MK (2005) Competition and complementarily in annual intercrops—the role of plant
available nutrients. PhD thesis, Department of Soil Science, Royal Veterinary and Agricultural
University, Copenhagen, Denmark. SamfundslitteraurGrafik, Frederiksberg, Copenhagen.
Batista TMV, Bezerra FN, Silva IN, Da Silva ML, De Oliveira EQ, Junior APB (2016) Agronomic
efficiency of the intercropping of arugula with carrot under different population combinations.
Rev Caatinga Mossoró 29(1):76–84
Bray EA (1993) Molecular responses to water deficit. Plant Physiol 103:1035–1040
Chai Q, Gan Y, Zhao C, Xu H-L, Waskom RM, Niu Y, Siddique KH (2016) Regulated deficit irrigation for crop production under drought stress. A review. Agron Sustain Dev 36:3
Cunha GR, Pires JLF, Dalmago GA, Caierão E, Pasinato A (2009) Trigo. In: Monteiro JEBA
(Org). Agrometeorologia dos cultivos: o fator meteorológico na produção agrícola. Brasília,
530 p
del Pozo A, Yanez A, Matus IA, Tapia G, Castillo D, Sanchez-Jardon L et al (2016) Physiological
traits associated with wheat yield potential and performance under water-stress in a
Mediterranean environment. Front Plant Sci 7:987. https://doi.org/10.3389/fpls.2016.00987
Dey D, Nath D, Jamatia PB (2015) Effect of raised bed planting method of maize under sandy
loam soil of West Tripura. Int J Appl Res 1(7):561–563
Dias LB (2008) Água nas plantas. Monograph, Universidade Federal de Lavras, Lavras-MG, 53 p
Dunn F, Williams J, Verberg K, Keating BA (1999) Can agricultural catchment emulate natural
ecosystems in recharge control in southeastern Australia? Agrofor Syst 45:343–364
Fernandez-Munoz R, Gonzalez-Fernandez JJ, Cuartero J (1995) Variability of pollen tolerance to
low temperatures in tomato and related with species. J Hortic Sci 70:41–49
A. E.-H. Zohry and S. Ouda
