화학공학소재연구정보센터
검색결과 : 16건
No. Article
1 Inhibition of hydrogen sulfide, methane, and total gas production and sulfate-reducing bacteria in in vitro swine manure by tannins, with focus on condensed quebracho tannins
Whitehead TR, Spence C, Cotta MA
Applied Microbiology and Biotechnology, 97(18), 8403, 2013
2 Microbial production of volatile sulphur compounds in the large intestine of pigs fed two different diets
Poulsen HV, Jensen BB, Finster K, Spence C, Whitehead TR, Cotta MA, Canibe N
Journal of Applied Microbiology, 113(1), 143, 2012
3 Development and comparison of SYBR Green quantitative real-time PCR assays for detection and enumeration of sulfate-reducing bacteria in stored swine manure
Spence C, Whitehead TR, Cotta MA
Journal of Applied Microbiology, 105(6), 2143, 2008
4 Structure-function relationships of a catalytically efficient beta-D-xylosidase
Jordan DB, Li XL, Dunlap CA, Whitehead TR, Cotta MA
Applied Biochemistry and Biotechnology, 141(1), 51, 2007
5 beta-D-xylosidase from Selenomonas ruminantium of glycoside hydrolase family 43
Jordan DB, Li XL, Dunlap CA, Whitehead TR, Cotta MA
Applied Biochemistry and Biotechnology, 137, 93, 2007
6 Engineering of the gut commensal bacterium Bacteroides ovatus to produce and secrete biologically active murine interleukin-2 in response to xylan
Farrar MD, Whitehead TR, Lan J, Dilger P, Thorpe R, Holland KT, Carding SR
Journal of Applied Microbiology, 98(5), 1191, 2005
7 Isolation and identification of hyper-ammonia producing bacteria from swine manure storage pits
Whitehead TR, Cotta MA
Current Microbiology, 48(1), 20, 2004
8 Sequence analyses of a broad host-range plasmid containing ermT from a tylosin-resistant Lactobacillus sp isolated from swine feces
Whitehead TR, Cotta MA
Current Microbiology, 43(1), 17, 2001
9 Identification of a broad-specificity xylosidase/arabinosidase important for xylooligosaccharide fermentation by the ruminal anaerobe Selenomonas ruminantium GA192
Whitehead TR, Cotta MA
Current Microbiology, 43(4), 293, 2001
10 Xylooligosaccharide utilization by the ruminal anaerobic bacterium Selenomonas ruminantium
Cotta MA, Whitehead TR
Current Microbiology, 36(4), 183, 1998