112
S. A. El.-M. M. Abd El-Azeem
19. Stres B, Danevˇ ciˇ c T, Pal L, Fuka MM, Resman L, Leskovec S, Hacin J, Stopar D, Mahne I,
Mandic-Mulec I (2008) Influence of temperature and soil water content on bacterial, archaeal
and denitrifying microbial communities in drained fen grassland soil microcosms. FEMS
Microbiol Ecol 66(1):110–122
20. Abdelrahman Abdalla M, Alavi Panah SK, Bationo A, Chude V, Comerma J, Gerasimova M,
Hempel J, Indraratne S, Krasilnikov P, McKenzie N, Mendonça Santos M, Norbu C, Ogunkunle
A, Pennock D, Reinsch T, Robinson D, Smith P, Taboada M, Yagi K, Erdogan E (2015) Status
of the world’s soil resources—main report
21. Alshaal T, El-Ramady H, Al-Saeedi AH, Shalaby T, Elsakhawy T, Omara AE-D, Gad A, Hamad
E, El-Ghamry A, Mosa A (2017) The rhizosphere and plant nutrition under climate change.
In: Essential plant nutrients. Springer, pp 275–308
22. Burns RG, Dick RP (2002) Enzymes in the environment: activity, ecology, and applications.
Marcel Dekker, Inc
23. Tabatabai M (1982) Soil enzymes. In: Methods of soil analysis. Part 2. Chemical and
microbiological properties (methods of soil analysis), pp 903–947
24. Yang L, Zhang Y, Li F (2012) Soil enzyme activities and soil fertility dynamics. In: Advances
in citrus nutrition. Springer, pp 143–156
25. Acosta-Martinez V, Tabatabai M (2000) Enzyme activities in a limed agricultural soil. Biol
Fertil Soils 31(1):85–91
26. Gianfreda L, Ruggiero P (2006) Enzyme activities in soil. In: Nannipieri P, Smalla K (eds)
Nucleic acids and proteins in soil. Springer Berlin Heidelberg, Berlin, Heidelberg, pp 257–311.
https://doi.org/10.1007/3-540-29449-x_12
27. Skujins J (1967) Enzymes in soil. Soil Biochem 1:371–414
28. El-Shinnawi M (1978) Urease activity in different soils of Egypt. Zentralbl Bakteriol B
133(6):483–492
29. Elsoury H, Shouman A, Abdelrazek S, Elkony H (2015) Soil enzymes and microbial activity
as influenced by tillage and fertilization in wheat production. Egypt J Soil Sci 55(1):53–65
30. Hasan H (2000) Ureolytic microorganisms and soil fertility: a review. Commun Soil Sci Plant
Anal 31(15–16):2565–2589
31. Abd-Alla MH, El-Enany A-WE, Nafady NA, Khalaf DM, Morsy FM (2014) Synergistic interaction of Rhizobium leguminosarum bv. viciae and arbuscular mycorrhizal fungi as a plant
growth promoting biofertilizers for faba bean (Vicia faba L.) in alkaline soil. Microbiol Res
169(1):49–58
32. El-Tarabily KA, Nassar AH, Sivasithamparam K (2008) Promotion of growth of bean (Phaseolus vulgaris L.) in a calcareous soil by a phosphate-solubilizing, rhizosphere-competent isolate of Micromonospora endolithica. Appl Soil Ecol 39(2):161–171. https://doi.org/10.1016/j.
apsoil.2007.12.005
33. Yasser MM, Mousa AS, Massoud ON, Nasr SH (2014) Solubilization of inorganic phosphate
by phosphate solubilizing fungi isolated from Egyptian soils. J Biol Earth Sci 4(1):83–90
34. Compant S, Van Der Heijden MG, Sessitsch A (2010) Climate change effects on beneficial
plant-microorganism interactions. FEMS Microbiol Ecol 73(2):197–214
35. Change IPOC (2007) Climate change 2007: The physical science basis. Agenda 6(07):333
36. DeAngelis KM, Pold G, Topçuo˘ glu BD, van Diepen LT, Varney RM, Blanchard JL, Melillo
J, Frey SD (2015) Long-term forest soil warming alters microbial communities in temperate
forest soils. Front Microbiol 104:1–13. https://doi.org/10.3389/fmicb.2015.00104 Article 6
37. Steinweg JM, Dukes JS, Paul EA, Wallenstein MD (2013) Microbial responses to multi-factor
climate change: effects on soil enzymes. Front Microbiol 4
38. Stone MM, Weiss MS, Goodale CL, Adams MB, Fernandez IJ, German DP, Allison SD (2012)
Temperature sensitivity of soil enzyme kinetics under N-fertilization in two temperate forests.
Glob Change Biol 18(3):1173–1184
39. Wallenstein MD, McMahon SK, Schimel JP (2009) Seasonal variation in enzyme activities
and temperature sensitivities in Arctic tundra soils. Glob Change Biol 15(7):1631–1639
40. Heinemeyer A, Ineson P, Ostle N, Fitter A (2006) Respiration of the external mycelium in
the arbuscular mycorrhizal symbiosis shows strong dependence on recent photosynthates and
acclimation to temperature. New Phytol 171(1):159–170
S. A. El.-M. M. Abd El-Azeem
19. Stres B, Danevˇ ciˇ c T, Pal L, Fuka MM, Resman L, Leskovec S, Hacin J, Stopar D, Mahne I,
Mandic-Mulec I (2008) Influence of temperature and soil water content on bacterial, archaeal
and denitrifying microbial communities in drained fen grassland soil microcosms. FEMS
Microbiol Ecol 66(1):110–122
20. Abdelrahman Abdalla M, Alavi Panah SK, Bationo A, Chude V, Comerma J, Gerasimova M,
Hempel J, Indraratne S, Krasilnikov P, McKenzie N, Mendonça Santos M, Norbu C, Ogunkunle
A, Pennock D, Reinsch T, Robinson D, Smith P, Taboada M, Yagi K, Erdogan E (2015) Status
of the world’s soil resources—main report
21. Alshaal T, El-Ramady H, Al-Saeedi AH, Shalaby T, Elsakhawy T, Omara AE-D, Gad A, Hamad
E, El-Ghamry A, Mosa A (2017) The rhizosphere and plant nutrition under climate change.
In: Essential plant nutrients. Springer, pp 275–308
22. Burns RG, Dick RP (2002) Enzymes in the environment: activity, ecology, and applications.
Marcel Dekker, Inc
23. Tabatabai M (1982) Soil enzymes. In: Methods of soil analysis. Part 2. Chemical and
microbiological properties (methods of soil analysis), pp 903–947
24. Yang L, Zhang Y, Li F (2012) Soil enzyme activities and soil fertility dynamics. In: Advances
in citrus nutrition. Springer, pp 143–156
25. Acosta-Martinez V, Tabatabai M (2000) Enzyme activities in a limed agricultural soil. Biol
Fertil Soils 31(1):85–91
26. Gianfreda L, Ruggiero P (2006) Enzyme activities in soil. In: Nannipieri P, Smalla K (eds)
Nucleic acids and proteins in soil. Springer Berlin Heidelberg, Berlin, Heidelberg, pp 257–311.
https://doi.org/10.1007/3-540-29449-x_12
27. Skujins J (1967) Enzymes in soil. Soil Biochem 1:371–414
28. El-Shinnawi M (1978) Urease activity in different soils of Egypt. Zentralbl Bakteriol B
133(6):483–492
29. Elsoury H, Shouman A, Abdelrazek S, Elkony H (2015) Soil enzymes and microbial activity
as influenced by tillage and fertilization in wheat production. Egypt J Soil Sci 55(1):53–65
30. Hasan H (2000) Ureolytic microorganisms and soil fertility: a review. Commun Soil Sci Plant
Anal 31(15–16):2565–2589
31. Abd-Alla MH, El-Enany A-WE, Nafady NA, Khalaf DM, Morsy FM (2014) Synergistic interaction of Rhizobium leguminosarum bv. viciae and arbuscular mycorrhizal fungi as a plant
growth promoting biofertilizers for faba bean (Vicia faba L.) in alkaline soil. Microbiol Res
169(1):49–58
32. El-Tarabily KA, Nassar AH, Sivasithamparam K (2008) Promotion of growth of bean (Phaseolus vulgaris L.) in a calcareous soil by a phosphate-solubilizing, rhizosphere-competent isolate of Micromonospora endolithica. Appl Soil Ecol 39(2):161–171. https://doi.org/10.1016/j.
apsoil.2007.12.005
33. Yasser MM, Mousa AS, Massoud ON, Nasr SH (2014) Solubilization of inorganic phosphate
by phosphate solubilizing fungi isolated from Egyptian soils. J Biol Earth Sci 4(1):83–90
34. Compant S, Van Der Heijden MG, Sessitsch A (2010) Climate change effects on beneficial
plant-microorganism interactions. FEMS Microbiol Ecol 73(2):197–214
35. Change IPOC (2007) Climate change 2007: The physical science basis. Agenda 6(07):333
36. DeAngelis KM, Pold G, Topçuo˘ glu BD, van Diepen LT, Varney RM, Blanchard JL, Melillo
J, Frey SD (2015) Long-term forest soil warming alters microbial communities in temperate
forest soils. Front Microbiol 104:1–13. https://doi.org/10.3389/fmicb.2015.00104 Article 6
37. Steinweg JM, Dukes JS, Paul EA, Wallenstein MD (2013) Microbial responses to multi-factor
climate change: effects on soil enzymes. Front Microbiol 4
38. Stone MM, Weiss MS, Goodale CL, Adams MB, Fernandez IJ, German DP, Allison SD (2012)
Temperature sensitivity of soil enzyme kinetics under N-fertilization in two temperate forests.
Glob Change Biol 18(3):1173–1184
39. Wallenstein MD, McMahon SK, Schimel JP (2009) Seasonal variation in enzyme activities
and temperature sensitivities in Arctic tundra soils. Glob Change Biol 15(7):1631–1639
40. Heinemeyer A, Ineson P, Ostle N, Fitter A (2006) Respiration of the external mycelium in
the arbuscular mycorrhizal symbiosis shows strong dependence on recent photosynthates and
acclimation to temperature. New Phytol 171(1):159–170
