Determine the sequence of genes along a chromosome based on the following recombination frequencies A-C 20% A-D 10% B-C 15% B-D 5%

Slides:



Advertisements
Similar presentations
Because this product is composed of the
Advertisements

Session 25 Warm-up 1.Name a segment tangent to circle A. 2.What is the 3.If BD = 36, find BC. 4.If AC = 10 and BD = 24, find AB. 5.If AD = 7 and BD = 24,
A B Q Chord AB is 18. The radius of Circle Q is 15. How far is chord AB from the center of the circle? 9 15 (family!) 12 x.
Chromosome Disorders. Classification of genetic disorders  Single-gene disorders (2%)  Chromosome disorders (
Chapter 5.2 Factoring by Grouping. 3y (2x – 7)( ) (2x – 7) (2x – 7) – 8 3y 1. Factor. GCF = (2x – 7) Find the GCF. Divide each term by the GCF. (2x –
AB 11 22 33 44 55 66 77 88 99 10  20  19  18  17  16  15  14  13  12  11  21  22  23  24  25  26  27  28.
Mutant phenotypes Short aristae Black body Cinnabar eyes Vestigial wings Brown eyes Long aristae (appendages on head) Gray body Red eyes Normal wings Red.
The Chromosomal Basis for Inheritance. Thomas Hunt Morgan Early 1900s Columbia University (New York) Studied genetics of Drosophila melangaster (the common.
The Chromosomal Basis of Inheritance Connecting Mendel's Work to Chromosomes.
GENETICS PRACTICE. O T T F F S S E __ What comes next?
Selected Problems from Chapter 12. 1) 2) 240 N T BC cos(30) T BC sin(30) T AB.
Warm-up 1.Name a segment tangent to circle A. 2.What is the 3.If BD = 36, find BC. 4.If AC = 10 and BD = 24, find AB. 5.If AD = 7 and BD = 24, find BE.
Recall the distributive property of multiplication over addition... symbolically: a × (b + c) = a × b + a × c and pictorially (rectangular array area model):
5.4 Factor and Solve Polynomial Equations Day 2 Algebra 2.
GENETICS PRACTICE.
Copyright © 2012, 2009, 2005, 2002 Pearson Education, Inc. Section 5.4 Multiplying Polynomials.
9.3 Altitude-On-Hypotenuse Theorems (a.k.a Geometry Mean)
R r Y y WHAT ARE THE POSSIBLE GAMETES THIS PARENT CAN MAKE?
Copyright © 2014, 2010, and 2006 Pearson Education, Inc. Chapter 4 Polynomials.
Chromosomal Genetic. Linked genes Morgan: studied eye color in Drosophila (flies) P1 true breeding white eyed males mated with P1 true breeding red eye.
Warm Up Find the missing side. In the diagram, ΔABC is equilateral, CD is an altitude, and AC = 12. What relationship exists between Δ ADC and Δ BDC?
Using Coordinate Geometry to Prove Parallelograms
Recombination Frequency and Gene Linkage Mapping
ALGEBRA 1 SECTION 10.4 Use Square Roots to Solve Quadratic Equations Big Idea: Solve quadratic equations Essential Question: How do you solve a quadratic.
Adding SubtractingMultiplyingDividingMiscellaneous.
Parallelograms – Part 2 Geometry Chapter 6 A BowerPoint Presentation Proving quadrilaterals are parallelograms.
Geometry 6-6 Trapezoids Only one pair of parallel sides (called bases) Non-parallel sides are called legs Base angles share a common base.
Geometry: Plane Figures Chapter. point A point marks a location. A A B B line segment the part of the line between 2 points endpoints.
Lines and Segments SY Source: Geometry (2007) by Ron Larson et al.
The Chromosomal Theory of Inheritance: Chromosomes and genes are present as ______________________ homologous chromosomes ___________during meiosis ________________.
Properties Objective: To use the properties of numbers. Do Now 1.) = 3.) ( 2  1 )  4 = 2.) =4.) 2  ( 1  4 ) =
A tall pea plant is crossed with a recessive dwarf pea plant
Review In groups of 2-4 AT YOUR TABLE Draw/Show the chromosomes, in metaphase 1 of meiosis, for each parent Show the gametes from each parent.
8.4 Proportionality Theorems. Geogebra Investigation 1)Draw a triangle ABC. 2)Place point D on side AB. 3)Draw a line through point D parallel to BC.
Chapter 12 Linkage Maps. You Must Know The pattern of inheritance for linked and unlinked genes.
Step one Two gene loci: A & B What will your first cross be in an experiment to test for possible meiotic crossing over? Hint: what condition do you have.
Session 25 Warm-up 1.Name a segment tangent to circle A. 2.What is the 3.If BD = 36, find BC. 4.If AC = 10 and BD = 24, find AB. 5.If AD = 7 and BD = 24,
Fractions Addition, Subtraction, Multiplication and Division June 25, 2016June 25, 2016June 25, 2016.
南亚和印度.
Bio 130 – Quiz April 11. Q. 1 - Chromosomal rearrangements can occur after chromosomes break. Which of the following statements are most accurate with.
7.3 Gene Linkage and Mapping KEY CONCEPT Genes can be mapped to specific locations on chromosomes.
definition of a midpoint
Properties of Parallelograms
Warm-Up 3) 1) 4) Name the dimensions 2).
Using Coordinate Geometry to Prove Parallelograms
Aim: Full House Grid: 9 Grid Play: Calculate answer & cross it off
= 12x4 + 20x2 = 6x3 + 7x2 – x = – 16x5 + 72x4 = 24x3 – 6x2 + 48x
Algebraic Properties.
Using Coordinate Geometry to Prove Parallelograms
2. Definition of congruent segments AB = CD 2.
تصنيف التفاعلات الكيميائية
10.3 – Gene Linkage and Polyploidy
Gene Linkage and Genetic Mapping
Gene Linkage and Genetic Mapping
A Wild type fruit fly (heterozygous for gray body and normal wings) is mated with a black fly with vestigial wings. OFFSPRING: 778- wild type 785- black-vestigial.
Multi-Gene Inheritance
Fractional Factorial Design
AB AC AD AE AF 5 ways If you used AB, then, there would be 4 remaining ODD vertices (C, D, E and F) CD CE CF 3 ways If you used CD, then, there.
Algebra Jeopardy!.
Quadrilaterals (quads)
Advanced Biology Genetics
Adding with 9’s.
Adding with 10’s.
Structure Analysis II.
PD NPD T AB aB Ab ab Random assortment 1 : 4 Linkage >1 : <1 ?
Determine the sequence of genes along a chromosome based on the following recombination frequencies A-D 10% B-C 15% B-D 5%
Chances of having a child totally normal
Vectors (2).
Adding ____ + 10.
A Wild type fruit fly (heterozygous for gray body and normal wings) is mated with a black fly with vestigial wings. OFFSPRING: 778- wild type 785- black-vestigial.
Presentation transcript:

Determine the sequence of genes along a chromosome based on the following recombination frequencies A-C 20% A-D 10% B-C 15% B-D 5%

Determine the sequence of genes along a chromosome based on the following recombination frequencies A-C 10% A-D 30% B-C 24% B-D 16%

Determine the sequence of genes along a chromosome based on the following recombination frequencies A-B 8% A-C 28% A-D 25% B-C 20% B-D 33%

Determine the sequence of genes along a chromosome based on the following recombination frequencies A-C 20% A-D 10% B-C 15% B-D 5%

Determine the sequence of genes along a chromosome based on the following recombination frequencies A-C 10% A-D 30% B-C 24% B-D 16%

Determine the sequence of genes along a chromosome based on the following recombination frequencies A-B 8% A-C 28% A-D 25% B-C 20% B-D 33%