Agriculture Reference
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Khan MS, Zaidi A, Wani PA (2007) Role of phosphate-solubilizing microorganisms in sustainable
agriculture—a review. Agron Sustain Dev 27:29-43
Khiari L, Parent LE (2005) Phosphorus transformations in acid light-textured soils treated with dry
swine manure. Can J Soil Sci 85:75-87
Kim KY, Jordan D, Mc Donald GA (1998) Effect of phosphate-solubilizing bacteria and vesic-
ular-arbuscular mycorrhizae on tomato growth and soil microbial activity. Biol Fertil Soils
26:79-87
Kpomblekou K, Tabatabai MA (1994) Effect of organic acids on release of phosphorus from phos-
phate rocks. Soil Sci 158:442-453
Kucey RMN, Janzen HH, Leggett ME (1989) Microbially mediated increases in plant-available
phosphorus. Ad Agron 42:199-228
Kumar SR, Bhaskara Rao KV (2012) Biological nitrogen fixation: a review. IJALS 1:1-9
Lee KD, Bai Y, Smith D, Han HS, Supanjani S (2005) Isolation of plant growth promoting endo-
phytic bacteria from bean nodule. Res J Agric Biol Sci 1(3):232-236
Lugtenberg B, Kamilova F (2009) Plant-growth-promoting rhizobacteria. Ann Rev Microbiol
63:541-546
Mader P, Kaiser F, Adholeya A, Singh R, Uppal HS, Sharma AK, Srivastava R, Sahai V, Aragno
M, Wiemken A, Johri BN, Fried PM (2011) Inoculation of root microorganisms for sustainable
wheat-rice and wheat-black gram rotations in India. Soil Biol & Biochem. 43:609-619
Mahdi SS, Hassan GI, Samoon SA, Rather HA, Showkat AD, Zehra B (2010) Bio-fertilizers in
organic agriculture. J Phytol 2(10):42-54
Malik KA, Mirza MS, Hassan U, Mehnaz S, Rasul G, Haurat J, Bally R, Normand P (2002) The
role of plant-associated beneficial bacteria in rice-wheat cropping system. In: Kennedy IR,
Choudhury ATMA (eds) Biofertilisers in action. Rural Industries Research and Development
Corporation, Canberra, pp 73-83
Malliga PL, Uma L, Subramanian G (1996) Lignolytic activity of the cyanobacterium Anabae-
na Azolla ML2 and the value of coir waste as a carrier for BGA bio-fertilizers. Microbios
86:175-183
Mandon K, Michel-Reydellet N, Encarnacion S, Kaminski PA, Leija A, Cevallos MA, Elmerich C,
Mora J (1998) Poly- β -hydroxybutyrate turnover in Azorhizobium caulinodans is required for
growth and affects nifA expression. J Bacteriol 180:5070-5076
Manoharan G, Chitra Devi K, Malliga P (2011) Effect of cyanopith and cyanospray biofertilizer on
Amaranthus Dubius . Int J Env Sci 2(1):352-360
Martyniuk S, Martyniuk M (2003) Occurrence of Azotobacter Spp . In Some Polish Soils. J Envi-
ron Stud 12(3):371-374
Mirza MS, Rasul G, Mehnaz S, Ladha JK, Ali S, Malik KA (2000) Beneficial effects of inoculated
nitrogen-fixing bacteria on rice. International Rice Research Institute, Los Baos, Philippines,
pp 191-204
Mishra BK, Dadhich SK (2010) Methodology of nitrogen biofertilizer production. J Adv Dev Res
1(1):3-6
Mohammadi K (2010) Ecophysiological response of canola (  Brassica napus L.) to different fertil-
ity systems in crop rotation. Ph.D thesis. Agronomy Department. Tarbiat Modares University,
Tehran, Iran. p. 354
Mohammadi K, Ghalavand A, Aghaalikhani M, Heidari GR, Sohrabi Y (2011) Introducing the
sustainable soil fertility system for chickpea (Cicer arietinum L.). Afr J Biotech 10(32):6011-
6020
Mohammadi K, Ghalavand A, Aghaalikhani M, Sohrabi Y, Heidari GR (2010) Impressibility of
chickpea seed quality from different systems of increasing soil fertility. Electronic J Crop Prod
3(1):103-119
Mohammadi K, Sohrabi Y (2012) Bacterial bio-fertilizers for sustainable crop production: a re-
view. J Agri Bio Sci 7:307-316
Murty MG, Ladha JK (1988) Influence of Azospirillum inoculation on the mineral uptake and
growth of rice under hydroponic conditions. Plant Soil 108:281-285
Mylona P, Pawlowski K, Bisseling T (1995) Symbiotic nitrogen fixation. Plant Cell 7:869-885
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