is an archetype. In 1976 Richard Dawkins wrote “Selfish Gene”‚ proposing a gene centered view of evolution rather than an organism or group centered one. The reason he describes the gene as « selfish » and not altruistic is that the gene’s ’agenda’ is to survive as a gene through replication and that the replication of the genes is at the gene level ; a gene of type A‚ when it replicates‚ will only make copies of gene A‚ and not of gene B. In this ground-breaking book‚ Dawkins has also coined the
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Transposon-mediated Insertional Mutagenesis in Gene Discovery and Cancer This dissertation is submitted for the degree of Doctor of Philosophy By Jun Kong Team 113‚ Experimental Caner Genetics Group The Wellcome Trust Sanger Institute Wellcome Trust Genome Campus Hinxton‚ Cambridge CB10 1SA Darwin College University of Cambridge Silver Street Cambridge CB3 9EU DECLARATION I hereby declare that this dissertation is the results of my own work and includes nothing which is the outcome of work
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Could gene therapy be too much for us to handle? Extended Project Qualification (EPQ) Introduction The title for my Extended Project Qualification (EPQ) will be ‘Could gene therapy too much for us to handle?’ I have chosen this for my project because gene therapy is advancing every day in modern medicine‚ and has brought up many ethical‚ legal and religious issues throughout various communities. Consequently‚ it is a topic which raises much debate within society. Due to the arguments
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Identification and characterization of Pierisin gene in P. napi The strategy was followed to amplify the Pierisin-6 gene was given in the supplementary Fig. 1. The mRNA of pierisin-6 gene was purified from the total RNA of fifth instar larvae of P. napi‚ the conserved region was amplified using gene specific primers (supplementary table-1)‚ cloned into pGEM®-T vector and sequenced. Further‚ 3’ and 5’ untranslated regions of pierisin-6 gene were identified by 3’/5’ RACE-PCR. The amplified cDNA sequence
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As stated above the androgen receptor-coding gene is located in band Xq11-q12 on the long arm of the (X) chromosome. This portion of the X chromosome is about 90kb and contains 8 exons that code 919 amino acids with a mass of approximately 110kDa. These many amino acids determine the structure of the transcription factor protein involved in steroid-hormone activation. The androgen receptor has several functional domains‚ which are inconsistently classified among various literature. In general the
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HUMAN GENE THERAPY 22:1–10 (August 2011) ª Mary Ann Liebert‚ Inc. DOI: 10.1089/hum.2011.087 Review Zinc-Finger Nucleases for Somatic Gene Therapy: The Next Frontier 1 Shamim H. Rahman‚ Morgan L. Maeder‚2‚3 J. Keith Joung‚2‚3‚4 and Toni Cathomen1 Abstract Zinc-finger nucleases (ZFNs) are a powerful tool that can be used to edit the human genome ad libitum. The technology has experienced remarkable development in the last few years with regard to both the target site specificity and the
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Gregor Mendel believed that genes followed “natural laws” and could be expressed in simple mathematical terms (Brooker 19). He was mostly intrigued by how genes varied as they pass from generation to generation (Brooker 18). Mendel decided to test his mathematical hypothesis using pea plants since they came “in several varieties‚ which varied in height and in the appearance of their flowers‚ seeds‚ and pods‚” (Brooker 19). He also decided to use self-fertilization and cross-fertilization to see which
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This paper is an attempt to show why it is a mistake to believe that characteristics that are influenced by genes cannot be changed except by modifying genes. Key terms will be explained Genes are how living organisms inherit features from their ancestors; for example‚ children usually look like their parents because they have inherited their parents’ genes. Genetics tries to identify which features are inherited‚ and explain how these features pass from generation to generation. A feature of a
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Identifying cis-regulatory motif in co-expressed Tribolium castaneum genes and inspection of immunity conferring genes in females post-mating Amrita Pal (Master’s Non-thesis candidate) Demuth Lab April 18‚ 2011 Acknowledgement: I am highly obliged to be able to perform tests and learn new techniques and concepts in the lab of Prof. Jeff Demuth‚ University of Texas at Arlington. He also allowed me work as a Research Assistant through a semester and was an excellent teacher. I
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The essay “Building Baby from the Genes Up” by Ronald M. Green explains how in the future‚ parents might be able to design the genes of their future baby. Green supports genetic engineering of embryos‚ “why not improve our genome?” (549). He thinks that with the process of in vitro and preimplantation‚ it could eliminate disease or confer desirable features onto our future. Some medical professionals is concerned about the effect of genetic selection in parenting‚ Green said “The critics concerns
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