Innovations in Dryland Agriculture

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Bandick AK, Dick RP (1999) Field management effects on soil enzyme activities. Soil Biol
Biochem 31:1471–1147
Benites J, Castellanos A (2003) Improving soil moisture with conservation agriculture. LEISA
Magazine June 2003, 1–7
Beshir HM, Walley FL, Bueckert R, Taran B (2015) Response of snap bean cultivars to Rhizobium
inoculation under dryland agriculture in Ethiopia. Agronomy 5(3):291–308
Biari A, Gholami A, Rahmani HA (2008) Growth promotion and enhanced nutrient uptake of
maize (Zea mays L.) by application of plant growth promoting rhizobacteria in arid region of
lran. J Biol Sci 8(6):1015–1020
Caesar-TonThat T, Lenssen AW, Caesar AJ, Sainju UM, Gaskin JF (2010) Effects of tillage on
microbial populations associated to soil aggregation in dryland spring wheat system. Eur J Soil
Biol 46:119–127
Carter MR (1986) Microbial biomass as an index for tillage-induced changes in soil biological
properties. Soil Tillage Res 7:29–40
Castiglioni P, Warner D, Benson RJ, Anstrom DC et al (2008) Bacterial RNA chaperones confer
abiotic stress tolerance to plants and improved grain yield in maize under water-limited condi-
tions. Plant Physiol 147:446–455
Chakraborty U, Roy S, Chakraborty AP, Dey P, Chakraborty B (2011) Plant growth promotion and
amelioration of salinity stress in crop plants by a salt-tolerant bacterium. Recent Res Sci
Technol 3(11):61–70
Chen H, Hou R, Gong Y, Li H et al (2009) Effects of 11 years of conservation tillage on soil
organic matter fractions in wheat monoculture in Loess Plateau of China. Soil Tillage Res
106:85–94
Cho K, Toler H, Lee J, Ownley BH, Stutz JC, Moore LM (2006) Mycorrhizal symbiosis and
response of sorghum plants to combined drought and salinity stresses. J Plant Physiol
163(5):517–528
Collins HP, Rasmussen PE, Douglas CL (1992) Crop rotation and residue management effects on
soil carbon and microbial dynamics. Soil Sci Soc Am J 56:783–788
Depret G, Houot S, Allard MR, Breuil MC, Nouaïm R, Laguerre G (2004) Long-term effects of
crop management on Rhizobium leguminosarum biovar viciae populations. FEMS Microbiol
Ecol 51:87–97
Desai S, Grover M, Leo Daniel AE, Praveen Kumar G, Mir Hassan AS (2012a) Exploiting plant
growth promoting rhizomicroorganisms for enhanced crop productivity. In: Satyanarayana T,
Johri BN, Prakash A (ed) Microorganisms in sustainable agriculture and biotechnology,
pp 227–242
Desai S, Praveen Kumar G, Sultana U, Pinnisetty S, Mir Hassan AS, Leo Daniel AE, Reddy G
(2012b) Potential microbial candidate strains for management of nutrient requirements of
crops. Afr J Microbiol Res 6:3924–3931
Diáz-Zorita M, Fernández-Canigia MV (2009) Field performance of a liquid formulation of
Azospirillum brasilense on dryland wheat productivity. Eur J Soil Biol 45:3–11
Dick RP, Breakwell DP, Turco RF (1996) Soil enzyme activities and biodiversity measurements as
integrative microbiological indicators. In: Doran JW, Jones AJ (ed), Methods for assessing soil
quality. Soil Science Society of America, Madison, pp 247–271
Dubey SK (1996) Response of soybean to rock phosphate applied with Pseudomonas striata in a
typic chromustert. J Indian Soc Soil Sci 44(2):252–255
Egamberdieva D, Kucharova Z (2009) Selection for root colonizing bacteria stimulating wheat
growth in saline soils. Biol Fertil Soil 45(6):563–571
Erman M, Demir S, Ocak E, Tufenk S, Oğuza F, Akkoprub A (2011) Effects of Rhizobium, arbus-
cular mycorrhiza and whey applications on some properties in chickpea (Cicer arietinum L.)
under irrigated and rainfed conditions 1–Yield, yield components, nodulation and AMF colo-
nization. Field Crop Res 122:14–24
Faye A, Sarr A, Lesueur R (2006) Effect of inoculation with rhizobia on the gum-arabic production
of 10-year-old Acacia senegal trees. Arid Land Res Manag 20:79–85


Application of Microbiology in Dryland Agriculture

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