Category:Genetic engineering
Buớc tưới chuyển hướng
Bước tới tìm kiếm
direct manipulation of an organism's genome using biotechnology | |||
Tải lên phương tiện | |||
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Là tập hợp con của | Kỹ thuật sinh học | ||
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Thể loại con
Thể loại này gồm 10 thể loại con sau, trên tổng số 10 thể loại con.
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Các tập tin trong thể loại “Genetic engineering”
188 tập tin sau nằm trong thể loại này, trong tổng số 188 tập tin.
- A-Smell-That-Causes-Seizure-pone.0041899.s004.ogv 1 min 9 s, 640×480; 5,91 MB
- A-Smell-That-Causes-Seizure-pone.0041899.s005.ogv 1 min 9 s, 640×480; 5,99 MB
- A-Smell-That-Causes-Seizure-pone.0041899.s006.ogv 1 min 9 s, 640×480; 6,31 MB
- A-Smell-That-Causes-Seizure-pone.0041899.s007.ogv 1 min 9 s, 640×480; 6,68 MB
- A-Smell-That-Causes-Seizure-pone.0041899.s008.ogv 1 min 9 s, 640×480; 6,03 MB
- A-Smell-That-Causes-Seizure-pone.0041899.s009.ogv 1 min 9 s, 640×480; 6,51 MB
- Agrobacterium-tumefaciens.png 187×237; 38 kB
- Algorithmic-Self-Assembly-of-DNA-Sierpinski-Triangles-pbio.0020424.sv001.ogv 20 s, 576×432; 15,23 MB
- Alimento transgénico.jpg 2.048×1.536; 777 kB
- Analyzing-Cold-Tolerance-Mechanism-in-Transgenic-Zebrafish-(Danio-rerio)-pone.0102492.s009.ogv 1 min 37 s, 320×240; 1,92 MB
- Analyzing-Cold-Tolerance-Mechanism-in-Transgenic-Zebrafish-(Danio-rerio)-pone.0102492.s010.ogv 1 min 35 s, 320×240; 2,16 MB
- Arabidopsis thaliana tissue culture in fingers.jpg 3.016×4.032; 2,38 MB
- Arabidopsis thaliana tissue culture in hand.jpg 3.016×4.032; 2,89 MB
- Aspartoacylase-LacZ-Knockin-Mice-An-Engineered-Model-of-Canavan-Disease-pone.0020336.s004.ogv 1 min 56 s, 768×576; 15,33 MB
- Aufbau Southern-Blot.jpg 994×416; 50 kB
- Bacteria used to make wheat seeds nearly immune to wheat take-all.jpg 2.131×2.953; 1,76 MB
- Biolumplate.jpg 180×174; 34 kB
- Bioreporter.jpg 361×164; 38 kB
- Blood-Platelets-in-the-Progression-of-Alzheimers-Disease-pone.0090523.s004.ogv 20 s, 640×480; 1,12 MB
- Blood-Platelets-in-the-Progression-of-Alzheimers-Disease-pone.0090523.s005.ogv 18 s, 640×480; 1,15 MB
- Blue white assay Ecoli.jpg 706×600; 41 kB
- Capture d’écran 2018-05-26 à 00.27.42.png 679×586; 63 kB
- Corneal epithelium whirlpool.jpg 380×366; 37 kB
- Cpf1.jpg 375×375; 56 kB
- Cre-lox common uses.svg 920×1.751; 39 kB
- Cre-lox insertion excision.svg 920×346; 12 kB
- Cre-lox inversion.svg 783×442; 13 kB
- Cre-lox stable insertion.svg 900×642; 18 kB
- Creacion por fragmentacion.gif 550×400; 309 kB
- CreLox1.jpg 835×797; 37 kB
- CreLox2.jpg 859×1.194; 52 kB
- Deleccion.png 464×490; 121 kB
- Density gradient.JPG 720×475; 32 kB
- Didesoxymethode.svg 620×455; 181 kB
- Figure 2 - D. radiodurans genetic engineering.png 1.360×1.562; 224 kB
- Flu Vaccine- Reverse Genetics (5102236843).jpg 500×606; 220 kB
- Genegun.jpg 614×819; 169 kB
- GeneTargeting.png 1.403×1.057; 48 kB
- Genetic engineering logo.png 459×432; 99 kB
- Genetic Manipulation.png 128×128; 8 kB
- Genetically Engineered Animals (23533118540).jpg 4.173×5.400; 4,42 MB
- Genetically Engineered Animals (5411462664).jpg 791×1.024; 295 kB
- Genome gradient.jpg 685×1.024; 470 kB
- GURT process diagram.png 844×472; 37 kB
- Hachure orange.png 46×54; 262 byte
- Incorporacion de genes.jpg 1.198×1.178; 121 kB
- Janela principal do programa Genes.png 1.093×696; 288 kB
- MAGE.jpg 419×326; 30 kB
- Master Mix with Primers form PCR.jpg 1.200×1.600; 368 kB
- Methods of Plant Breeding (8737954801).jpg 2.668×2.374; 1,68 MB
- Mito-priming-as-a-method-to-engineer-Bcl-2-addiction-ncomms10538-s2.ogv 9,3 s, 768×576; 1,86 MB
- Mito-priming-as-a-method-to-engineer-Bcl-2-addiction-ncomms10538-s3.ogv 3,0 s, 1.024×1.024; 2,04 MB
- Mito-priming-as-a-method-to-engineer-Bcl-2-addiction-ncomms10538-s4.ogv 2,3 s, 1.024×1.024; 1,28 MB
- Morphological Abnormalities in the Dcx KO Hippocampus.png 951×717; 1,33 MB
- No chimera SSCs.jpg 720×540; 809 kB
- Operono laktozo.gif 708×256; 9 kB
- Overlap extension polymerase chain reaction.svg 603×416; 5 kB
- Pamela Ronald at Pop!Tech 2008.jpg 683×1.024; 396 kB
- PDS 1000-He Biolistic Particle Delivery System ("Gene Gun").jpg 3.000×3.254; 3,19 MB
- PGLO ambient.jpg 937×913; 245 kB
- PGLO UV.jpg 1.555×1.632; 422 kB
- PGlo-UltraViolet.jpg 1.530×1.467; 245 kB
- Plasmidi R com a vector de clonació del DNA.jpg 720×540; 68 kB
- PLGO under ambient light.jpg 1.461×1.446; 216 kB
- Porcine-Model-of-Hemophilia-A-pone.0049450.s002.ogv 14 s, 320×240; 440 kB
- Programa Genes.png 381×223; 147 kB
- Protoplast fusion.jpg 800×600; 267 kB
- PRTFDC1-Is-a-Genetic-Modifier-of-HPRT-Deficiency-in-the-Mouse-pone.0022381.s008.ogv 1 min 14 s, 640×480; 7,12 MB
- Przeciwcialo geny8.svg 255×250; 17 kB
- Reassortment de.svg 2.159×3.735; 1,79 MB
- Recombinant DNA.JPG 746×575; 54 kB
- Recombination cloning.svg 467×469; 12 kB
- RMSCEditingOurEvolution.jpg 4.048×3.036; 4,03 MB
- Rnai phenotype.png 1.363×1.258; 1,82 MB
- Simple transcription elongation2-fr.svg 769×138; 41 kB
- Stofnaval.png 426×327; 39 kB
- Syn3 genome.svg 340×203; 211 kB
- T4-DNA-Polymerase.png 2.400×2.400; 1,15 MB
- Targeting-vectors-2005-onwards.jpg 730×531; 100 kB
- The development and the ways to rejuvenate cells - en.svg 2.339×1.629; 871 kB
- The development and the ways to rejuvenate cells - ru.svg 2.339×1.629; 881 kB
- Thermocycler.jpg 1.200×1.600; 422 kB
- Ti plasmid gl.svg 1.035×783; 108 kB
- Transformation2.png 426×327; 47 kB
- Transgenic hydra endo.gif 200×227; 36 kB
- Wereldwijde ophef om genetische modificatie in China.webm 2 min 34 s, 1.280×720; 17,86 MB
- ZyFISH-A-Simple-Rapid-and-Reliable-Zygosity-Assay-for-Transgenic-Mice-pone.0037881.s005.ogv 2 min 0 s, 384×288; 3,29 MB
- Безлигазное клонирование.png 844×854; 30 kB