Agriculture Reference
In-Depth Information
Sabaou N, Boudjella H, Bennadji A, Mostefaoui A, Zitouni A, Lamari L, Bennadji H (1998) Les
sols des oasis du Sahara alg´rien, source d'actinomyc´tes rares producteurs d'antibiotiques.
S´ıcheresse 9:147-153
Sahu MK, Sivakumar K, Kannan L (2007) Phosphate solubilizing actinomycetes in the estuarine
environment: an inventory. J Environ Biol 28:795-798
Salcedo LDP, Prieto C, Correa MF (2014) Screening phosphate solubilizing actinobacteria
isolated from the rhizosphere of wild plants from the Eastern Cordillera of the Colombian
Andes. Afr J Microbiol Res 8:734-742
Shen J, Yuan L, Zhang J, Li H, Bai Z, Chen X, Zhang W, Zhang F (2011) Phosphorus dynamics:
from soil to plant. Plant Physiol 156:997-1005
Sheng XF, He LY, Zhou L, Shen YY (2009) Characterization of Microbacterium sp. F10a and its
role in polycyclic aromatic hydrocarbon removal in low-temperature soil. Can J Microbiol
55:529-535
Smil V (2000) Phosphorus in the environment: natural flows and human interferences. Annu Rev
Energy Environ 25:53-88
Solans M (2007) Discaria trinervis-Frankia symbiosis promotion by saprophytic actinomycetes. J
Basic Microbiol 47:243-250
Solans M, Vobis G (2003) Actinomycetes saprof ´ ticos asociados a la riz ´ sfera y rizoplano de
Discaria trinervis. Ecol Aust 13:97-107
Sowmya B, Gomathi D, Kalaiselvi M, Ravikumar G, Arulraj C, Uma C (2012) Production and
purification of chitinase by Streptomyces sp. from soil. J Adv Sci Res 3:25-29
Sreevidya M, Gopalakrishnan S (2012) Bacteria and actinomycetes as biocontrol agents for the
control of fungal pathogens of chickpea and sorghum. In: International conference on plant
health management for food security, 28-30 November 2012, Hyderabad, India
Strap JL (2011) Actinobacteria-plant interactions: a boon to agriculture. In: Maheshwari DK
(ed) Bacteria in agrobiology: plant growth responses. Springer, Berlin, pp 285-307. doi: 10.
1007/978-3-642-20332-9_13
Syers JK, Johnston AE, Curtin D (2008) Efficiency of soil and fertiliser phosphorus use: recon-
ciling changing concepts of soil phosphorus behaviour with agronomic information. FAO
Fertiliser and Plant Bulletin 18. Food and Agricultural Organization of the United Nations.
Rome, ISBN 978-92-5-105929-6
Takahashi S, Anwar MR (2007) Wheat grain yield, phosphorus uptake and soil phosphorus
fraction after 23 years of annual fertilizer application to an Andosol. Field Crops Res
101:160-171
Takahashi Y, Omura S (2003) Isolation of new actinomycete strains for the screening of new
bioactive compounds. J Gen Appl Microbiol 49:141-154
Takisawa M, Colwell RR, Hill RT (1993) Isolation and diversity of actinomycetes in the Ches-
apeake Bay. Appl Environ Microbiol 59:997-1002
Tao G, Tian S, Cai M, Xie G (2008) Phosphate solubilizing and mineralizing abilities of bacteria
isolated from soils. Pedosphere 18:515-523
Tarafdar JC, Claassen N (1988) Organic phosphorus compounds as a phosphorus source for higher
plants through the activity of phosphatases produced by plant roots and microorganisms. Biol
Fertil Soils 5:308-312
Tarafdar JC, Claassen N (2001) Comparative efficiency of acid phosphatase originated from plant
and fungal sources. J Plant Nutr Soil Sci 164:279-282
Thangapandian V, Ponmuragan P, Ponmuragan K (2007) Actinomycetes diversity in the rhizo-
sphere soil of different medicinal plants in Kolly Hills Tamil Nadu, India, for secondary
metabolite production. Asian J Plant Sci 6:66-70
Thomas L, Crawford DL (1998) Cloning of clustered S. viridosporus T7A lignocellulose catab-
olism genes encoding peroxidase and endoglucanase and their extracellular expression in
Pichia pastoris . Can J Microbiol 44:364-372
Tirado R, Allsopp M (2012) Phosphorus in agriculture problems and solutions; Greenpeace
Research Laboratories Technical Report
Search WWH ::




Custom Search