10
Baligar VC, Fageria NK, He ZL (2001) Nutrient use efficiency in plants. Commun Soil Sci Plant
Anal 32:921–950
Bates BC, Kundzewicz ZW, Wu S, Palutikof JP (eds) (2008) Climate change and water. Technical
Paper of the Intergovernmental Panel on Climate Change, IPCC Secretariat, Geneva, 210 pp
Blum A (2009) Effective use of water (EUW) and not water-use efficiency (WUE) is the target of crop yield improvement under drought stress. Field Crop Res 112:119–123. https://doi.
org/10.1016/j.fcr.2009.03.009
Bunn SE (2016) Grand challenge for the future of freshwater ecosystems. Front Environ Sci 4:21.
https://doi.org/10.3389/fenvs.2016.00021
Capra A, Consoli S, Scicolone B (2008) Chapter 4: Deficit irrigation: Theory and practice. In:
Alonso D, Iglesias HJ (eds) Agricultural irrigation research progress. Nova Science Publishers,
Inc. ISBN 978-1-60456-579-9
Cerri CC, Bernoux M, Cerri CEP, Feller C (2004) Carbon cycling and sequestration opportunities
in South America: the case of Brazil. Soil Use Manag 20:248–254. https://doi.org/10.1079/
SUM2004237
Chai Q, Gan Y, Zhao C, Xu H, Waskom RM, Niu Y, Siddique KHM (2016) Regulated deficit irrigation for crop production under drought stress. A review. Agron Sustain Dev 36(3):2–21
Cisneros JBE, Oki T, Arnell NW, Benito G, Cogley JG, Döll P, Jiang T, Mwakalila SS (2014)
Fresh water resources. In: Field CB, Barros VR, Dokken DJ, Mach KJ, Mastrandrea MD, Bilir
TE, Chatterjee M, Ebi KL, Estrada YO, Genova RC et al (eds) Climate Change 2014: impacts,
adaptation, and vulnerability. Part A: global and sectoral aspects. Contribution of working
group II to the fifth assessment report of the Intergovernmental Panel on Climate Change.
Cambridge University Press, Cambridge/New York, pp 229–269
Cole MB, Augustin MA, Robertson MJ, Manners JM (2018) The science of food security. NPJ Sci
Food 2:14. https://doi.org/10.1038/s41538-018-0021-9
Davari A (2016) Effect of drought stress on protein contents, respiration and heat shock proteins in
crop plants. Int J Agric Biosci 5(5):264–271
De Fraiture C, Wichelns D (2010) Satisfying future water demands for agriculture. Agric Water
Manag 97:502–511
Dettinger MD (2005) From climate-change spaghetti to climate-change distributions for 21st century California. San Francisco Estuary Watershed Sci 3(1). http://repositories.cdlib.org/jmie/
sfews/vol3/iss1/art4
Dias LB (2008) Água nas plantas. Monograph, Universidade Federal de Lavras, Lavras-MG, 53 p
Dwivedi A, Dev I, Kumar V, Yadav RS, Yadav M, Gupta D, Singh A, Tomar SS (2015) Potential
role of maize-legume intercropping systems to improve soil fertility status under Smallholder
farming systems for sustainable agriculture in India. Int J Life Sci Biotechnol Pharma Res
4(3):334–340
Elsaeed G (2012) Effects of climate change on Egypt’s water supply. In: Fernando HJS et al (eds)
National security and human health implications of climate change, NATO cience for peace
and security series C: environmental security. https://doi.org/10.1007/978-94-007-2430-3_30,
© Springer Science+Business Media B.V. 2012
English M, Nuss GS (1982) Designing for deficit irrigation. J Irrig Drain Div 108:91–106
FAO (2003) Food and Agriculture Organization of the United Nations (FAO). Review of World
Water Resources by Country; Water Report No. 23; FAO, Rome, Italy
FAO (2005) Fertilizer use by crop in Egypt. Land and Plant Nutrition Management Service. Land
and Water Development Division. Rome, Italy
FAO (2007) Food and Agriculture Organization (FAO), climate change and food security: a dramework socument. FAO, Rome
FAO (2009) How to feed the world in 2050, high-level expert forum, 12–13 Oct, Rome, issue brief,
35 pp, Rome, Italy: Food and Agriculture Organization of the United Nations. http://www.fao.
org/wsfs/forum2050/wsfs-backgrounddocuments/hlef-issues-briefs/en/
S. Ouda and A. E.-H. Zohry
Baligar VC, Fageria NK, He ZL (2001) Nutrient use efficiency in plants. Commun Soil Sci Plant
Anal 32:921–950
Bates BC, Kundzewicz ZW, Wu S, Palutikof JP (eds) (2008) Climate change and water. Technical
Paper of the Intergovernmental Panel on Climate Change, IPCC Secretariat, Geneva, 210 pp
Blum A (2009) Effective use of water (EUW) and not water-use efficiency (WUE) is the target of crop yield improvement under drought stress. Field Crop Res 112:119–123. https://doi.
org/10.1016/j.fcr.2009.03.009
Bunn SE (2016) Grand challenge for the future of freshwater ecosystems. Front Environ Sci 4:21.
https://doi.org/10.3389/fenvs.2016.00021
Capra A, Consoli S, Scicolone B (2008) Chapter 4: Deficit irrigation: Theory and practice. In:
Alonso D, Iglesias HJ (eds) Agricultural irrigation research progress. Nova Science Publishers,
Inc. ISBN 978-1-60456-579-9
Cerri CC, Bernoux M, Cerri CEP, Feller C (2004) Carbon cycling and sequestration opportunities
in South America: the case of Brazil. Soil Use Manag 20:248–254. https://doi.org/10.1079/
SUM2004237
Chai Q, Gan Y, Zhao C, Xu H, Waskom RM, Niu Y, Siddique KHM (2016) Regulated deficit irrigation for crop production under drought stress. A review. Agron Sustain Dev 36(3):2–21
Cisneros JBE, Oki T, Arnell NW, Benito G, Cogley JG, Döll P, Jiang T, Mwakalila SS (2014)
Fresh water resources. In: Field CB, Barros VR, Dokken DJ, Mach KJ, Mastrandrea MD, Bilir
TE, Chatterjee M, Ebi KL, Estrada YO, Genova RC et al (eds) Climate Change 2014: impacts,
adaptation, and vulnerability. Part A: global and sectoral aspects. Contribution of working
group II to the fifth assessment report of the Intergovernmental Panel on Climate Change.
Cambridge University Press, Cambridge/New York, pp 229–269
Cole MB, Augustin MA, Robertson MJ, Manners JM (2018) The science of food security. NPJ Sci
Food 2:14. https://doi.org/10.1038/s41538-018-0021-9
Davari A (2016) Effect of drought stress on protein contents, respiration and heat shock proteins in
crop plants. Int J Agric Biosci 5(5):264–271
De Fraiture C, Wichelns D (2010) Satisfying future water demands for agriculture. Agric Water
Manag 97:502–511
Dettinger MD (2005) From climate-change spaghetti to climate-change distributions for 21st century California. San Francisco Estuary Watershed Sci 3(1). http://repositories.cdlib.org/jmie/
sfews/vol3/iss1/art4
Dias LB (2008) Água nas plantas. Monograph, Universidade Federal de Lavras, Lavras-MG, 53 p
Dwivedi A, Dev I, Kumar V, Yadav RS, Yadav M, Gupta D, Singh A, Tomar SS (2015) Potential
role of maize-legume intercropping systems to improve soil fertility status under Smallholder
farming systems for sustainable agriculture in India. Int J Life Sci Biotechnol Pharma Res
4(3):334–340
Elsaeed G (2012) Effects of climate change on Egypt’s water supply. In: Fernando HJS et al (eds)
National security and human health implications of climate change, NATO cience for peace
and security series C: environmental security. https://doi.org/10.1007/978-94-007-2430-3_30,
© Springer Science+Business Media B.V. 2012
English M, Nuss GS (1982) Designing for deficit irrigation. J Irrig Drain Div 108:91–106
FAO (2003) Food and Agriculture Organization of the United Nations (FAO). Review of World
Water Resources by Country; Water Report No. 23; FAO, Rome, Italy
FAO (2005) Fertilizer use by crop in Egypt. Land and Plant Nutrition Management Service. Land
and Water Development Division. Rome, Italy
FAO (2007) Food and Agriculture Organization (FAO), climate change and food security: a dramework socument. FAO, Rome
FAO (2009) How to feed the world in 2050, high-level expert forum, 12–13 Oct, Rome, issue brief,
35 pp, Rome, Italy: Food and Agriculture Organization of the United Nations. http://www.fao.
org/wsfs/forum2050/wsfs-backgrounddocuments/hlef-issues-briefs/en/
S. Ouda and A. E.-H. Zohry
