Environmental Engineering Reference
In-Depth Information
Sheppy C (2001) The current feed enzyme market and
likely trends. In Bedford MR, Partridge GG (edn)
Enzymes in farm animal nutrition, 5. CAB Interna-
tional 2001
Shieh TR, Ware JH (1968) Survey of microorganisms for
the production of extracellular phytase. Appl Environ
Microbiol 16:1348-1351
Shigaki F, Sharpley A, Prochnow L (2006) Animal-based
agriculture, phosphorus management and water quality
in Brazil: options for the future. Sci Agric 63:194-209
Shim YH, Chae BJ, Lee JH (2003) Effects of phytase and
carbohydrases supplementation to diet with a partial
replacement of soybean meal with rapeseed meal and
cottonseed meal on growth performance and nutrient
digestibility of growing pigs. Asian Aust J Anim Sci
16:1339-1347
Shim YH, Chae BJ, Lee JH (2004) Effects of phytase
and enzyme complex supplementation to diets with
different nutrient levels on growth performance and
ileal nutrient digestibility of weaned pigs. Asian Aust
J Anim Sci 17:523-532
Shimizu M (1993) Purification and characterization of
phytase and acid phosphatase produced by Aspergillus
oryzae K1. Biosci Biotechnol Biochem 56:1266-1269
Shivanna GB, Govindarajulu V (2009) Screening of aspo-
rogenic mutants of phytase-producing Aspergillus
niger CFR-335 strain. Microb Ecol Health Dis 21:57
Singh B, Satyanarayana T (2008) Phytase production by
a thermophilic mould Sporotrichum thermophile in
solid state fermentation and its potential applications.
Bioresour Technol 99:2824-2830
Singh B, Satyanarayana T (2011) Microbial phytases in
phosphorus acquisition and plant growth promotion.
Physiol Mol Biol Plants 17(2):93-103
Singh PK, Khatta VK, Thakur RS, Dey S, Sangwan MK
(2003) Effects of phytase supplementation on the per-
formance of broiler chickens fed maize and wheat
based diets with different levels of non-phytate phos-
phorus. Asian Aust J Anim Sci 16:1642-1649
Singh B, Kunze G, Satyanarayana T (2011) Develop-
ments in biochemical aspects and biotechnological
applications of microbial phytases. Biotechnol Mol
Biol Rev 6(3):69-87
Sapna SB, Singh D, Sharma KK (2013) Microbial phy-
tases in skirmishing and management of environmen-
tal phosphorus pollution. In Kuhad RC, Singh A (eds)
Biotechnology for environmental management and
resource recovery. Springer, India, pp 239-260
Soni SK, Khire JM (2007) Production and partial char-
acterization of two types of phytase from Aspergillus
niger NCIM 563 under submerged fermentation con-
ditions. World J Microbiol Biotechnol 23:1585-1593
Sreeramulu G, Srinivasa D, Nand K, Joseph R (1996)
Lactobacillus amylovorus as a phytase producer in
submerged culture. Lett Appl Microbiol 23:385-388
Suzuki U, Yoshimura K, Takaishi M. (1907) Ueber ein
Enzym “Phytase” das “Anhydro-oxy-methylen
diphosphorsaure” Spaltet. Tokyo Imperal Univ Coll
Agric Bull 7:503-512
Tseng YH, Fang T, Tseng SM (2000) Isolation and charac-
terization of a novel phytase from Penicillium simpli-
cissimum . Folia Microbiol 45:121-127
Ramachandran S, Roopesh K, Nampoothiri KM, Szakacs
G, Pandey A (2005) Mixed substrate fermentation for
the production of phytase by Rhizopus spp. using oil
cakes as substrates. Process Biochem 40:1749-1754
Rao DE, Rao KV, Reddy TP, Reddy VD (2009) Molecular
characterization, physicochemical properties, known
and potential applications of phytases: an overview.
Crit Rev Biotechnol 29(2):182-198
Rapoport S, Leva E, Guest GM. (1941) Phytase in plasma
and erythrocytes of various species of vertebrates. J
Biol Chem 139:621-632
Raun A, Cheng E, Burroughs W (1956) Ruminant nutri-
tion, phytate phosphorus hydrolysis and availabil-
ity to rumen microorganisms. J Agric Food Chem
4:869-871
Reddy NR, Sathe SK, Salunkhe DK (1982) Phytases in
legumes and cereals. Adv. Food Res 82:1-92
Roopesh K, Ramachandran S, Nampoothiri KM, Szakacs
G, Pandey A (2006) Comparison of phytase production
on wheat bran and oilcakes in solid-state fermentation
by Mucor racemosus . Bioresour Technol 97:506-511
Rosen G (2002) Microbial phytase in broiler nutrition. In
Garnsworthy PC, Wiseman J (eds) Recent advances in
animal nutrition. Nottingham University Press, Not-
tingham, pp 105-117
Rosu M, Sărăndan H, Jula A, Sarandan R, Ognean L
(2012) The environmental pollution level with excre-
tory phosphorus at laying hens in Romania bulletin
UASMV. Vet Med 69:1-2
Sajidan A, Farouk A, Greiner R, Jungblut P, Muller E,
Borriss R (2004) Molecular and physiological char-
acterisation of a 3-phytase from soil bacterium Klebsi-
ella sp . ASR1. Appl Microbiol Biotechnol 65:110-118
Sano K, Fukuhara H, Nakamura Y (1999) Phytase of the
yeast Arxula adeninivorans . Biotechnol Lett 21:33-38
Satter LD, Wu Z (2001) New strategies in ruminant nutri-
tion: getting ready for the next millennium. Southwest
Nutrition and Management Conference Proceedings,
Tucson, AZ
Satyanarayana T, Kunze G (2009) Acid phosphatases and
phytases: characterization and commercial prospects.
In Satyanarayana T, Kunze G (eds) Yeast biotechnol-
ogy: diversity and applications. Springer Netherlands,
Dordrecht, pp 693-714
Schlemmer U, Jany KD, Berk A, Schulz E, Rechkem-
mer G (2001) Degradation of phytate in the gut of
pigs: pathway of gastro-intestinal inositol phosphate
hydrolysis and enzymes involved. Arch Anim Nutr
55:255-280
Segueilha L, Moulin G, Galzy P (1993) Reduction of phy-
tate content in wheat bran and glandless cotton flour
by Schwanniomyces castellii . J Agric Food Chem
41:2451-2454
Selle PH, Ravindran V (2007) Microbial phytase in poul-
try nutrition. Anim Feed Sci Technol 135:1-41
Selle PH, Ravindran V, Pittolo PH, Bryden WL (2003)
Effects of phytase supplementation of diets with two
tiers of nutrient specifications on growth performance
and protein efficiency ratios of broiler chickens. Asian
Aust J Anim Sci 16:1158-1164
Search WWH ::




Custom Search