96
S. Dhiman et al.
Carillo P, Carotenuto C, Cristofaro F, Kafantaris I, Lubritto C, Minale M, Woodrow P (2012) DGGE
analysis of buffalo manure eubacteria for hydrogen production: effect of pH, temperature and
pretreatments. Mol Biol Rep 39(12):10193–10200
Carotenuto C, Guarino G, Morrone B, Minale M (2016) Temperature and pH effect on methane
production from buffalo manure anaerobic digestion. Inter J Heat Technol 34(2):425–429
Carpenter-Boggs L, Reganold JP, Kennedy AC (2000) Biodynamic preparations: short term effect
on crops, soils, and weed populations. Am J Altern Agric 15(3):110–118
Chadwick D, Wei J, Yanan T, Guanghui Y, Qirong S, Qing C (2015) Improving manure nutrient
management towards sustainable agricultural intensification in China. Agri Eco Environ 209:34–
46
Chand S, Anwar M, Patra DD (2006) Influence of long-term application of organic and inorganic
fertilizer to build up soil fertility and nutrient uptake in mintmustard cropping sequence. Comm
Soil Sci Plant Anal 37(2):63–76
Charbonneau DM, Meddeb-Mouelhi F, Boissinot M, Sirois M, Beauregard M (2012) Identification of thermophilic bacterial strains producing thermotolerant hydrolytic enzymes from manure
compost. Ind J Microbiol 52(1):41–47
Chauhan HK, Singh K (2012) Effect of binary combinations of buffalo, cow and goat dung with
different agro wastes on reproduction and development of earthworm Eisenia fetida (Haplotoxida:
Lumbricidae). World J Zool 7(1):23–29
Chawla OP (1986) Advances in biogas technology. Adv Biogas Technol 136
Chen X, Li Z, Liu M, Jiang C, Che Y (2015) Microbial community and functional diversity associated with different aggregate fractions of a paddy soil fertilized with organic manure and/or NPK
fertilizer for 20 years. J Soils Sediments 15(2):292–301
Chitnis V, Patil S, Kant R (2000) Hospital effluent: a source of multiple drug resistant bacteria. Curr
Sci 79:83–89
Chynoweth DP, Turik CE, Owens JM, Jerger DE, Peck MW (1993) Biochemical methane potential
of biomass and waste feed stocks. Biomass Bioenerg 5(1):95–111
Compant S, Clément C, Sessitsch A (2010) Plant growth-promoting bacteria in the rhizo-and endosphere of plants: their role, colonization, mechanisms involved and prospects for utilization. Soil
Biol Biochemis 42(5):669–678
Croos AMB, Rajendran S, Ranganathan K (2019) Isolation of a cellulase producing Bacillus cereus
from cow dung and determination of the kinetic properties of the crude enzyme. J Nat Sci Found
Sri Lanka 47(2).
Darby HM, Stone AG, Dick R (2004) Compost and manure mediated impacts on soil borne
pathogens and soil quality. Soil Sci Soc Am J 70(2):347–358
Das S, Jeong ST, Das S, Kim PJ (2017) Composted cattle manure increases microbial activity and
soil fertility more than composted swine manure in a submerged rice paddy. Front Microbiol
8:1702
David OM, Odeyemi AT (2007) Antibiotic resistant pattern of environmental isolates of Listeria
monocytogenes from Ado-Ekiti. Nigeria Afr J Biotechnol 6(18):2135–2139
De Silva ASH, Cook HF (2003) Soil physical conditions and physiological performance of cowpea
following organic matter amelioration of sandy substrates. Comm Soil Sci Plant Anal 34:1039–
1058
Demetriades P (2008) Thermal pre-treatment of cellulose rich biomass for biogas production.
Swedish Uni Agri Sci ISSN:1101-8151
Dhiman S, Baliyan N, Maheshwari DK (2020) Buffalo dung-inhabiting bacteria enhance the nutrient
enrichment of soil and proximate contents of Foeniculum vulgare Mill. Arc Microbiol 1–10
Dhiman S, Dubey RC, Maheshwari DK, Kumar S (2019) Sulfur-oxidizing buffalo dung bacteria
enhance growth and yield of Foeniculum vulgare Mill. Can J Microbiol 65(5):377–386
Eastman BR, Kane PN, Edwards CA, Trytek L, Gunadi B, Stermer AL, Mobley JR (2001) The
effectiveness of vermiculture in human pathogen reduction for USEPA biosolids stabilization.
Compost Sci Utilization 9:38–49
S. Dhiman et al.
Carillo P, Carotenuto C, Cristofaro F, Kafantaris I, Lubritto C, Minale M, Woodrow P (2012) DGGE
analysis of buffalo manure eubacteria for hydrogen production: effect of pH, temperature and
pretreatments. Mol Biol Rep 39(12):10193–10200
Carotenuto C, Guarino G, Morrone B, Minale M (2016) Temperature and pH effect on methane
production from buffalo manure anaerobic digestion. Inter J Heat Technol 34(2):425–429
Carpenter-Boggs L, Reganold JP, Kennedy AC (2000) Biodynamic preparations: short term effect
on crops, soils, and weed populations. Am J Altern Agric 15(3):110–118
Chadwick D, Wei J, Yanan T, Guanghui Y, Qirong S, Qing C (2015) Improving manure nutrient
management towards sustainable agricultural intensification in China. Agri Eco Environ 209:34–
46
Chand S, Anwar M, Patra DD (2006) Influence of long-term application of organic and inorganic
fertilizer to build up soil fertility and nutrient uptake in mintmustard cropping sequence. Comm
Soil Sci Plant Anal 37(2):63–76
Charbonneau DM, Meddeb-Mouelhi F, Boissinot M, Sirois M, Beauregard M (2012) Identification of thermophilic bacterial strains producing thermotolerant hydrolytic enzymes from manure
compost. Ind J Microbiol 52(1):41–47
Chauhan HK, Singh K (2012) Effect of binary combinations of buffalo, cow and goat dung with
different agro wastes on reproduction and development of earthworm Eisenia fetida (Haplotoxida:
Lumbricidae). World J Zool 7(1):23–29
Chawla OP (1986) Advances in biogas technology. Adv Biogas Technol 136
Chen X, Li Z, Liu M, Jiang C, Che Y (2015) Microbial community and functional diversity associated with different aggregate fractions of a paddy soil fertilized with organic manure and/or NPK
fertilizer for 20 years. J Soils Sediments 15(2):292–301
Chitnis V, Patil S, Kant R (2000) Hospital effluent: a source of multiple drug resistant bacteria. Curr
Sci 79:83–89
Chynoweth DP, Turik CE, Owens JM, Jerger DE, Peck MW (1993) Biochemical methane potential
of biomass and waste feed stocks. Biomass Bioenerg 5(1):95–111
Compant S, Clément C, Sessitsch A (2010) Plant growth-promoting bacteria in the rhizo-and endosphere of plants: their role, colonization, mechanisms involved and prospects for utilization. Soil
Biol Biochemis 42(5):669–678
Croos AMB, Rajendran S, Ranganathan K (2019) Isolation of a cellulase producing Bacillus cereus
from cow dung and determination of the kinetic properties of the crude enzyme. J Nat Sci Found
Sri Lanka 47(2).
Darby HM, Stone AG, Dick R (2004) Compost and manure mediated impacts on soil borne
pathogens and soil quality. Soil Sci Soc Am J 70(2):347–358
Das S, Jeong ST, Das S, Kim PJ (2017) Composted cattle manure increases microbial activity and
soil fertility more than composted swine manure in a submerged rice paddy. Front Microbiol
8:1702
David OM, Odeyemi AT (2007) Antibiotic resistant pattern of environmental isolates of Listeria
monocytogenes from Ado-Ekiti. Nigeria Afr J Biotechnol 6(18):2135–2139
De Silva ASH, Cook HF (2003) Soil physical conditions and physiological performance of cowpea
following organic matter amelioration of sandy substrates. Comm Soil Sci Plant Anal 34:1039–
1058
Demetriades P (2008) Thermal pre-treatment of cellulose rich biomass for biogas production.
Swedish Uni Agri Sci ISSN:1101-8151
Dhiman S, Baliyan N, Maheshwari DK (2020) Buffalo dung-inhabiting bacteria enhance the nutrient
enrichment of soil and proximate contents of Foeniculum vulgare Mill. Arc Microbiol 1–10
Dhiman S, Dubey RC, Maheshwari DK, Kumar S (2019) Sulfur-oxidizing buffalo dung bacteria
enhance growth and yield of Foeniculum vulgare Mill. Can J Microbiol 65(5):377–386
Eastman BR, Kane PN, Edwards CA, Trytek L, Gunadi B, Stermer AL, Mobley JR (2001) The
effectiveness of vermiculture in human pathogen reduction for USEPA biosolids stabilization.
Compost Sci Utilization 9:38–49
