Environmental Engineering Reference
In-Depth Information
Watanabe T, Ozaki N, Iwashita K, Fujii V, Iefuji H (2008)
Breeding of wastewater treatment yeasts that accumu-
late high concentrations of phosphorus. Appl Micro-
biol Biotechnol 80:331-338
Wild A (1988) Russell's soil condition and plant growth.
Longman Scientific & Technical, Harlow
Wodzinski RJ, Ullah AH (1996) Phytase. Adv Appl
Microbiol 42:263-302
Wu Z, Satter LD, Sojo R (2000) Milk production, repro-
ductive performance, and fecal excretion of phospho-
rus by dairy cows fed three amounts of phosphorus. J
Dairy Sci 83:1028-1041
Wyatt CL, Parr T, Bedford M (2008) Mechanisms of
action for supplemental NSP and phytase enzymes
in poultry diets. Carolina Feed Industry Association.
35th Poultry Nutrition Conference, USA, pp 12-22
Xiao K, Harrison MJ, Wang ZY (2005) Transgenic expres-
sion of a novel M. truncatula phytase gene results in
improved acquisition of organic phosphorus by Arabi-
dopsis. Planta 222:27-36
Yanke LJ, Bae HD, Selinger LB, Cheng KJ (1998) Phy-
tase activity of anaerobic ruminal bacteria. Microbiol-
ogy 144:1565-1573
Zhang R, Yang P, Huang H, Shi P, Yuan T, Yao B (2011)
Two types of phytases (histidine acid phytase and
ʲ-propeller phytase) in Serratia sp. TN49 from the
gut of Batocera horsfieldi (Coleoptera) larvae. Curr
Microbiol 63:408-415
Tyagi PK, Verma SVS (1998) Phytate phosphorus content
of some common poultry feed stuffs. Indian J Poult
Sci 33:86-88
Ullah AH, Gibson DM (1987) Extracellular phytase (EC
3.1.3.8) from Aspergillus ficuum NRRL 3135: purifi-
cation and characterization. Prep Biochem 17:63-91
Ullah AHJ, Sethumadhavan K, Mullaney EJ. (2008)
Unfolding and refolding of Aspergillus niger PhyB
phytase: role of disulfide bridges. J Agric Food Chem
56:8179-818.
Vats P, Banerjee UC (2004) Production studies and cata-
lytic properties of phytases (myo-inositolhexakispho-
sphate phosphohydrolases): an overview. Enzyme
Microb Technol 35:3-14
Vats P, Banerjee UC (2005) Biochemical characterization
of extracellular phytase (  myo -inositol hexakispho-
sphate phosphohydrolase) from a hyper-producing
strain of Aspergillus niger van Teighem. J Ind Micro-
biol Biotechnol 32:141-147
Veum TL, Bollinger DW, Buff CE, Bedford MR (2006)
A genetically engineered Escherichia coli phytase
improves nutrient utilization, growth performance,
and bone strength of young swine fed diets deficient
in available phosphorus. J Anim Sci 84:1147-1158
Vohra A, Satyanarayana T (2001) Phytase production by
the yeast Pichia anomala . Biotechnol Lett 23:551-554
Vohra A, Satyanarayana T (2003) Phytases: microbial
sources, production, purification, and potential bio-
technological applications. Crit Rev Biotechnol
23:29-60
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