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169篇 您的检索式:作者名="Graham P W"
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1What is artificial meat and what does it mean for the future of the meat industry?显示文摘The meat industry cannot respond to increases in demand by ever increasing resource use. The industry must find solutions to issues regarding animal welfare, health and sustainability and will have to do so in the face of competition from emerging non-traditional meat and protein products in an increasingly complex regulatory environment. These novel meat and protein products, otherwise known as ‘artificial meat' are utilising ground breaking technologies designed to meet the issues facing the conventional meat industry. These artificial meats, in vitro or cultured meat and meat from genetically modified organisms have no real capacity to compete with conventional meat production in the present environment. However, meat replacements manufactured from plant proteins and mycoproteins are currently the biggest competitors and are gaining a small percentage of the market. Manufactured meats may push conventional meat into the premium end of the market, and supply the bulk, cheap end of the market if conventional meat products become more expensive and the palatability and versatility of manufactured meats improve. In time the technology for other artificial meats such as meat from genetic modified organisms or cultured meat may become sufficiently developed for these products to enter the market with no complexity of the competition between meat products. Conventional meat producers can assimilate agroecology ecology concepts in order to develop sustainable animal production systems. The conventional meat industry can also benefit from assimilating biotechnologies such as cloning and genetic modification technologies, using the technology to adapt to the changing environment and respond to the increasing competition from artificial meats. Although it will depend at least partly on the evolution of conventional meat production, the future of artificial meat produced from stem cells appears uncertain at this time.Sarah P F Bonny Graham E Gardner David W Pethick Jean-Franois Hocquette 2015Journal of Integrative Agriculture2015,14,2:15
2Virus resistance and gene silencing in plants can be induced by simultaneous expression of sense and antisense RNA 显示文摘Waterhouse P M Graham M W Wang M 1998Proc Natl Acad Sci USA1998,95,13:1
3Biomonitioning for Effective Management of Wastewater Discharges and the Health of the River Environment 显示文摘Dickens C W S Graham P M 1998Aquatic Ecosystem Health and Management1998,1,2:1
4Specific combinations of HLA-DR2 and DR3 class II haplotypes contribute graded risk for disease susceptibility and autoantibodies in human SLE显示文摘Graham R Ortmann W Rodine P 2007Euro- pean J Human Genetics2007,15,8:1
5Reactions of C2 and C4 alpha-hydroxy radicals with oxygen显示文摘CARTER W P L DARNALL K R GRAHAM R A 1979Journal of Chemical Physics1979,83,18:1
6Theoretical ecology for engineering biology 显示文摘CURBS T P HEAD L M GRAHAM D W 2003Environmental Science & Technology2003,37,3:1
7Holding up a mirror:Changing obstetric practice through criterion-based clinical audit in developing countries显示文摘Wagaarachchi P T Graham W J Penney G C 2001Int J Gynaecol Obstet2001,74,2:1
8Virus resistance and gene silencing in plants can be induced by simultaneous expre-ssion of sense and antisense RNA显示文摘Waterhouse P M Graham M W Wang M B 1998Proceedings of the National Academy of the Sciences of the United States of America1998,95,:1
9Lithosphere rheology and sedimentary basins显示文摘Graham J P Melosh J Sassi W 1993Tectonophysics1993,226,:1
10The major genetic determinants of HIV-1control affect HLA class I peptide presentation显示文摘International HIV Controllers Study Pereyra F Jia X McLaren P J Telenti A de Bakker P I Walker B D Ripke S Brumme C J Pulit S L Carrington M Kadie C M Carlson J M Heckerman D Graham R R Plenge R M Deeks S G Gianniny L Crawford G Sullivan J Gonzalez E Davies L Camargo A Moore JM Beattie N Gupta S Crenshaw A Burtt N P Guiducci C Gupta N Gao X Qi Y Yuki Y Piechocka-Trocha A Cutrell E Rosenberg R Moss K L Lemay P O'Leary J Schaefer T Verma P Toth I Block B Baker B Rothchild A Lian J Proudfoot J Alvino D M Vine S Addo M M Allen T M Altfeld M Henn M R Le Gall S Streeck H Haas D W Kuritzkes D R Robbins G K Shafer R W Gulick R M Shikuma C M Haubrich R Riddler S Sax P E Daar E S Ribaudo H J Agan B Agarwal S Ahern R L Allen B L Altidor S Altschuler E L Ambardar S Anastos K Anderson B Anderson V Andrady U Antoniskis D Bangsberg D Barbaro D Barrie W Bartczak J Barton S Basden P Basgoz N Bazner S Bellos N C Benson A M Berger J Bernard N F Bernard A M Birch C Bodner S J Bolan R K Boudreaux E T Bradley M Braun J F Brndjar J E Brown S J Brown K Brown S T Burack J Bush LM Cafaro V Campbell O Campbell J Carlson R H Carmichael J K Casey K K Cavacuiti C Celestin G Chambers S T Chez N Chirch L M Cimoch P J Cohen D Cohn LE Conway B Cooper D A Cornelson B Cox D T Cristofano M V Cuchural G Jr Czartoski J L Dahman J M Daly J S Davis B T Davis K Davod S M DeJesus E Dietz C A Dunham E Dunn M E Ellerin T B Eron J J Fangman J J Farel C E Ferlazzo H Fidler S Fleenor-Ford A Frankel R Freedberg K A French N K Fuchs JD Fuller J D Gaberman J Gallant J E Gandhi R T Garcia E Garmon D Gathe J C Jr Gaultier C R Gebre W Gilman F D Gilson I Goepfert P A Gottlieb M S Goulston C Groger R K Gurley T D Haber S Hardwicke R Hardy W D Harrigan P R Hawkins T N Heath S Hecht F M Henry W K Hladek M Hoffman R P Horton J M Hsu R K Huhn G D Hunt P Hupert M J Illeman M L Jaeger H Jellinger R M John M Johnson J A Johnson K L Johnson H Johnson K Joly J Jordan W C Kauffman C A Khanlou H Killian R K Kim A Y Kim D D Kinder C A Kirchner J T Kogelman L Kojic E M Korthuis P T Kurisu W Kwon D S LaMar M Lampiris H Lanzafame M Lederman M M Lee D M Lee J M Lee M J Lee E T Lemoine J Levy J A Llibre J M Liguori M A Little S J Liu A Y Lopez A J Loutfy M R Loy D Mohammed D Y Man A Mansour M K Marconi V C Markowitz M Marques R Martin J N Martin H L Jr Mayer K H McElrath M J McGhee T A McGovern B H McGowan K McIntyre D Mcleod GX Menezes P Mesa G Metroka CE Meyer-Olson D Miller A O Montgomery K Mounzer K C Nagami E H Nagin I Nahass R G Nelson M O Nielsen C Norene D L O'Connor D H Ojikutu B O Okulicz J Oladehin O O Oldfield E C Olender S A Ostrowski M Owen WF Jr Pae E Parsonnet J Pavlatos A M Perlmutter A M Pierce M N Pincus J M Pisani L Price L J Proia L Prokesch R C Pujet H C Ramgopal M Rathod A Rausch M Ravishankar J Rhame F S Richards C S Richman D D Rodes B Rodriguez M Rose R C 3rd Rosenberg E S Rosenthal D Ross P E Rubin D S Rumbaugh E Saenz L Salvaggio M R Sanchez WC Sanjana V M Santiago S Schmidt W Schuitemaker H Sestak P M Shalit P Shay W Shirvani V N Silebi V I Sizemore J M Jr Skolnik P R Sokol-Anderson M Sosman J M Stabile P Stapleton J T Starrett S Stein F Stellbrink H J Sterman FL Stone V E Stone D R Tambussi G Taplitz R A Tedaldi E M Telenti A Theisen W Torres R Tosiello L Tremblay C Tribble M A Trinh P D Tsao A Ueda P Vaccaro A Valadas E Vanig T J Vecino I Vega V M Veikley W Wade B H Walworth C Wanidworanun C Ward D J Warner D A Weber R D Webster D Weis S Wheeler D A White D J Wilkins E Winston A Wlodaver C G van't Wout A Wright D P Yang O O Yurdin D L Zabukovic B W Zachary K C Zeeman B Zhao M 2010Science2010,330,6010:1
11Evaluation of candidate vaccine approaches for mers-cov显示文摘Wang L Shi W Joyce M G Modjarrad K Zhang Y Leung K Lees C R Zhou T Yassine H M KanekiyoM Yang Z Y Chen X Becker M M Freeman M Vogel L Johnson J C Olinger G Todd J P Bagci U Solomon J Mollura D J Hensley L Jahrling P Deni- son M R Rao S S Subbarao K Kwong P D Mascola J R Kong W P Graham B S 2015Nat Commun2015,6,:1
12Xenon purity analysis for exo-200 via mass spectrometry 显示文摘Dobi A Hall C Slutsky S Yen Y R Aharmin B Auger M Barbeau P S Benitez-Medina C Breidenbach M Cleveland B Conley R Cook J Cook S Counts I Craddock W Daniels T Davis C G Davis J Devoe R Dixit M Dolinski M J Donato K Fairbank Jr W Farine J Fierlinger P Franco D Giroux G Gornea R Graham K Gratta G Green C Hagemann C Hall K Hallman D Hargrove C Herrin S Hughes M Hodgson J Juget F Karelin A Kaufman L J Kuchenkov A Kumar K Leonard D S Lutter G Mackay D Maclellan R Marino M Mong B Montero Diez M Morgan P MUller A R Neilson R Odian A Oullivan K Piepke A Pocar A Prescott C Y Pushkin K Rivas A Rollin E Rowson P C Sabourov A Sinclair D Skarpaas K Stekhanov V Strickland V Swift M Twelker K Vuilleumier J L Vuilleumier J M Weber M Wichoski U Wodin J Wright J D Yang L 2012Nuclear Instruments and Methods in Physics Research Section A: Accelerators Spectrometers Detectors and Associated Equipment2012,675,:1
13An in vitro method for studying digestion in the pig and comparison with in vivo ileal and faecal digestibility显示文摘Graham H Lowgren W Aman P 1989Br J Nutr1989,61,:1
14Are plant species inherently harder to discriminate than animal species using DNA barcoding markers? 显示文摘Fazekas A J Kesanakurti P R Burgess K S Percy D M Graham S W Barrett S C H New- master S G Hajibabaei M Husband B C 2009Mol Ecol Resour2009,9,:1
15Effect of vortex shedding on the coupled roll response of bodies in raves显示文摘WNIE M J BEARMAN P W GRAHAM J M R 1988Journal of Fluid Mechanics1988,189,:1
16An in vitro method for studying digestion in the pig 显示文摘Lowgren B Y Graham W H Aman P 1989Br J Nutr1989,61,:1
17Choosing and Using a Plant DNA Barcode显示文摘HOLLINGSWORTH P M GRAHAM S W LITTLE D P 2011PLoS One2011,6,:1
18Choosing and using a plant DNA barcode显示文摘Hollingsworth P M Graham S W Little D P 2011PLo S ONE2011,6,19:1
19Formation of secondary organic aerosols through photooxidation of isoprene 显示文摘Claeys M Graham B Vas G Wang W Vermeylen R Pashynska V Cafmeyer J Guyon P Andreae M O Artaxo P Maenhaut W 2004Science2004,303,5661:1
20An in vitro method for studying digestibility显示文摘Graham H Lowgren W Aman P 1989Br J Nutr1989,61,:1
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