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Phylogenetic Tree Template
Organism Genome Coding Scheme 1 st Codon – Chlorophyll 2 nd Codon – Size of Flower (small, medium, large) 3 rd Codon – Mature size 4 th Codon – Poison Gene 5 th Codon – Petal Color 6 th Codon – Number of Petals 7 th Codon – Shape of Petals
Common Ancestor AUG UGU AAG GCU CGC CAA AGU Organism 1 AUG UGU AAG ACU CCC CAC AAU Organism 2 AUG UUU AAG GCU GGC UAC AGU Organism 3 AUG UGU AAG GCU CGC GAC AGU Organism 4 AUG UGU AAG GCU CUC CAA AUU Organism 5 AUG UGG AAG GCU CCC CAA AGU Organism 6 AUG UGU AAG ACU CUC CAC AAU Organism 7 AUG UGU AAG GCU CUC CAA AGU Organism 8 AUG UUU AAG GCU CGC UAC AGU Organism 9 AUG UUU AAG ACU CUC CAC AAU Organism 10 AUG UGU AAG GCU CUC CAC AGU Organism 11 AUG UUU AAG GCU CGC CAC AGU Organism 12 AUG UUU AAG GCU CCC UAC AGU Organism 13 AUG UUU AAG GCU CGC GAC AGU Organism 14 AUG UGU AAG GCU CGC CAC AGU
ORGANISM 1 AUG UGU AAG ACU CCC CAC AAU
ORGANISM 2 AUG UUU AAG GCU GGC UAC AGU
ORGANISM 3 AUG UGU AAG GCU CGC GAC AGU
ORGANISM 4 AUG UGU AAG GCU CUC CAA AUU
ORGANISM 5 AUG UGG AAG GCU CCC CAA AGU
ORGANISM 6 AUG UGU AAG ACU CUC CAC AAU
ORGANISM 7 AUG UGU AAG GCU CUC CAA AGU
ORGANISM 8 AUG UUU AAG GCU CGC UAC AGU
ORGANISM 9 AUG UUU AAG ACU CUC CAC AAU
ORGANISM 10 AUG UGU AAG GCU CUC CAC AGU
ORGANISM 11 AUG UUU AAG GCU CGC CAC AGU
ORGANISM 12 AUG UUU AAG GCU CCC UAC AGU
ORGANISM 13 AUG UUU AAG GCU CGC GAC AGU
ORGANISM 14 AUG UGU AAG GCU CGC CAC AGU
11 2 8 12 14 13 3 7 4 5 6 1 9 10 CA Phylogenetic Tree Possible Answer
Translation By Josh Morris. First Base Second Base Third Base UCAG U UUU phenylalanine UCU serine UAU tyrosine UGU cysteine U UUC phenylalanine UCC serine.
Protein Synthesis Lab Click Here to Begin Your Lab.
ATG AAA AAC AAG GTA CAC ATC TAG UAC UUU UUG UUC CAU GUG UAG AUC DNA Triplet mRNA Codon Translation (In the cytoplasm) UAC UUU UUG UUC CAU GUG UAG AUC Ribosome.
Transcription & Translation Worksheet. 1. DNA: TAC TGA TCG ACC CCC ATA ATG AAA ATC mRNA: AUG ACU AGC UGG GGG UAU UAC UUU UAG tRNA: UAC UGA UCG ACC CCC.
Cell Division and Gene Expression The Need for Cell Reproduction - The Nature of Chromosomes - The Cell Cycle - Mitosis and Cytokinesis - Cancer Cells:
Chapter 14 Genetic Code and Transcription. You Must Know The differences between replication (from chapter 13), transcription and translation and the.
G Leucine Serine Tyrosine Stop Cysteine Stop Tryptophan Leucine Proline Histidine Glutamine Arginine Phenylalanine GlycineGlutamic acid Aspartic acid Alanine.
GENE EXPRESSION. Gene Expression Our phenotype is the result of the expression of proteins Different alleles encode for slightly different proteins Protein.
1 Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display. Human Biology Sylvia S. Mader Michael Windelspecht Chapter.
RNA Structure Like DNA, RNA is a nucleic acid. RNA is a nucleic acid made up of repeating nucleotides.
Parts is parts…. AMINO ACID building block of proteins contain an amino or NH 2 group and a carboxyl (acid) or COOH group PEPTIDE BOND covalent bond link.
Proteins are made by decoding the Information in DNA Proteins are not built directly from DNA.
©1998 Timothy G. Standish From DNA To RNA To Protein Timothy G. Standish, Ph. D.
Sec 5.1 / 5.2. One Gene – One Polypeptide Hypothesis early 20 th century – Archibald Garrod physician that noticed that some metabolic errors were found.
Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display Human Genetics Concepts and Applications Eighth Edition.
Genes to Proteins Transcription and Translation DNA RNA Protein DNA contains genes which provide the information necessary to make proteins Different.
Transcription and Translation Chapter Ten. Central Dogma DNA RNA Protein Transcription Translation.
FEATURES OF GENETIC CODE AND NON SENSE CODONS by mrs. Anita jain Pgt biology k.v. no.1 hindan ghaziabad.
Protein Synthesis Translation e.com/watch?v=_ Q2Ba2cFAew (central dogma song) e.com/watch?v=_ Q2Ba2cFAew.
Chapter 11 DNA and Genes. Analyze the structure of DNA Determine how the structure of DNA enables it to reproduce itself accurately. Section Objectives:
PowerPoint ® Lecture Slides prepared by Janice Meeking, Mount Royal College C H A P T E R Copyright © 2010 Pearson Education, Inc. 3 Cells: The Living.
Figure 17.4 DNA molecule Gene 1 Gene 2 Gene 3 DNA strand (template) TRANSCRIPTION mRNA Protein TRANSLATION Amino acid ACC AAACCGAG T UGG U UU G GC UC.
Today 14.2 & 14.4 Transcription and Translation /student_view0/chapter3/animation__p rotein_synthesis__quiz_3_.html.
Mutations. DNA mRNA Transcription Introduction of Molecular Biology Cell Polypeptide (protein) Translation Ribosome.
Sequence Analysis with Artemis and Artemis Comparison Tool (ACT) Carribean Bioinformatics Workshop 18 th -29 th January, 2010.
DNA. Traits A physical feature, or characteristic, a living thing can pass on to its young. Ex. Blood type, Eye color, Hair color, Facial features, and.
An Analogy of Gene Expression Transcribe (copy) a set of ingredients from the cookbook to make a recipe Translate the ingredients into a dish.
7. Protein Synthesis and the Genetic Code a). Overview of translation i). Requirements for protein synthesis ii). messenger RNA iii). Ribosomes and polysomes.
DNA The Secret of Life. Deoxyribonucleic Acid DNA is the molecule responsible for controlling the activities of the cell It is the hereditary molecule.
Wellcome Trust Workshop Working with Pathogen Genomes Module 2 Gene Prediction.
Gene Expression: From Gene to Protein Chapter 17 How does a single faulty gene result in the dramatic appearance of an albino animal? The albino deer has.
How Genes Work: From DNA to RNA to Protein Chapter 17.
Mutations. Mutation Permanent changes or errors in a DNA sequence Copied during DNA replication Therefore heritable OR may occur during transcription.
©2000 Timothy G. Standish Mutations Timothy G. Standish, Ph. D.
Gene Translation:RNA -> Protein How does a particular sequence of nucleotides specify a particular sequence of amino acids?nucleotidesamino acids The answer:
Copyright © 2005 Pearson Education, Inc. publishing as Benjamin Cummings Chapter 17: From Gene to Protein.
5.9 + = 10 a)3.6 b)4.1 c)5.3 Question 1: Good Answer!! Well Done!! = 10 Question 1:
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Chapter Intro-page 280 What You’ll Learn You will relate the structure of DNA to its function. You will explain the role of DNA in protein production.
Chapter 17 Membrane Structure and Function From Gene to Proteins.
Traducción. Molécula de aminoácido Sitio de fijación del aminoácido Adaptador (RNAt) RNAm Triplete nucleotídico que codifica un aminoácido + -O 2 C—C—NH.
Slide 1 Insert your own content. Slide 2 Insert your own content.
Gene to Protein Gene Expression. Figure 17.UN01 DNA RNA Protein.
Figure Figure 14.4a-2 mRNA DNA TRANSCRIPTION TRANSLATION Polypeptide Ribosome (a) Bacterial cell.
Introduction to Human Genetics Chapter One. What is DNA? Deoxyribonucleic Acid: –String of nucleotides Nucleotides made up of three parts: deoxyribose.
Chapter 17 From Gene to Protein. Protein Synthesis The information content of DNA Is in the form of specific sequences of nucleotides along the DNA.
Environmental Genomics and Biotechnology Lecture Note 1 March 4, 2015.
Copyright © 2005 Pearson Education, Inc. publishing as Benjamin Cummings PowerPoint Lectures for Biology, Seventh Edition Neil Campbell and Jane Reece.
Transcription & Translation 1.____ -> _____ -> ________ -> _______ 2.What is the sequence of the RNA molecule that you get from this strand of DNA? AATGCG.
1. What are the 3 components of this DNA nucleotide? 2. What is the function of DNA in the cell?
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