Visual Anatomy & Physiology Plus Mastering A&P withPearson eText -- Access Card Package (3rd Edition) (New A&P Titles by Ric Martini and Judi Nath)
Visual Anatomy & Physiology Plus Mastering A&P withPearson eText -- Access Card Package (3rd Edition) (New A&P Titles by Ric Martini and Judi Nath)
3rd Edition
ISBN: 9780134396408
Author: Frederic H. Martini, William C. Ober, Judi L. Nath, Edwin F. Bartholomew, Kevin F. Petti
Publisher: PEARSON
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Chapter 17.2, Problem 5LO
Summary Introduction

To describe: The hemolytic disease of the newborn also describes the clinical importance of the cross-reaction between maternal and fetal blood types and cite preventive measures.

Introduction: Hemolytic disease of the newborn is a red blood cell (RBC)–related disorder. It is usually caused by a cross-reaction between maternal and fetal blood types.

RhoGAM is a medicine used to inhibit Rh immunization. Rh immunization is a condition in which a person with Rh- blood generates antibodies against Rh-positive blood after exposure.

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Question #3: In the KeyGene paper, the authors state that it would be useful if pollen from an apomict would transmit apomixis-inducing genes to the female in the cross (assuming the pollen is viable). Assuming there was just one gene conferring gametophytic obligate apomixis, and that the two parents are inbreds, what would be the consequences of such a cross if: a) The apomixis was a dominant trait? Indicate the genotypes and phenotypes (apomict or non- apomict) of the parents, F1 and F2 generations. Remember to include the expected genotypic and phenotypic ratios (or percentages) in the F1 and F2 generations, and to position the female first (left side) in the parental cross. b) The apomixis was a recessive trait? Indicate the genotypes and phenotypes (apomict or non- apomict) of the parents, F1 and F2 generations. Remember to include the expected genotypic and phenotypic ratios (or percentages) in the F1 and F2 generations, and to position the female first (left side) in the…
Question #5: Assume that two genes are identified that confer gametophytic facultative apomixis in soybean. The genes show independent assortment. Recessive alleles at both loci are required for the facultative apomixis. Facultative apomixis is triggered when the temperature at pollination is above 20 degrees C. At temperatures below 20 degrees C, all reproduction is sexual, independent of genotype. A facultative apomict male, capable of producing viable pollen, was crossed with a sexually reproducing female. Assuming the parents are completely inbred, what are the predicted phenotypic ratios (apomict: non-apomict) for the F1, F2, and DH (F1-derived) generations at each of the following temperatures*: a) 15°C? b) 25°C? *for full credit, show crosses and genotypes where appropriate. Remember to position the female first (left side) in the cross. Type your answer here:

Chapter 17 Solutions

Visual Anatomy & Physiology Plus Mastering A&P withPearson eText -- Access Card Package (3rd Edition) (New A&P Titles by Ric Martini and Judi Nath)

Ch. 17.1 - Prob. 1SRCh. 17.1 - Prob. 2SRCh. 17.1 - Prob. 3SRCh. 17.1 - Prob. 4SRCh. 17.1 - Prob. 5SRCh. 17.1 - Prob. 6SRCh. 17.1 - Prob. 7SRCh. 17.1 - Prob. 8SRCh. 17.1 - Prob. 9SRCh. 17.1 - Prob. 10SRCh. 17.1 - Prob. 11SRCh. 17.1 - Prob. 12SRCh. 17.1 - Prob. 13SRCh. 17.1 - Prob. 14SRCh. 17.1 - Prob. 15SRCh. 17.2 - Prob. 1RCh. 17.2 - Prob. 2RCh. 17.2 - Prob. 3RCh. 17.2 - Prob. 4RCh. 17.2 - Prob. 5RCh. 17.2 - Prob. 6RCh. 17.2 - Prob. 7RCh. 17.2 - Prob. 8RCh. 17.2 - Prob. 9RCh. 17.2 - Prob. 10RCh. 17.2 - Prob. 11RCh. 17.2 - Prob. 12RCh. 17.2 - Prob. 13RCh. 17.2 - Prob. 14RCh. 17.2 - Prob. 15RCh. 17.2 - Prob. 16RCh. 17.2 - Prob. 17RCh. 17.2 - Prob. 1LOCh. 17.2 - Prob. 2LOCh. 17.2 - Prob. 3LOCh. 17.2 - Prob. 4LOCh. 17.2 - Prob. 5LOCh. 17.2 - Prob. 6LOCh. 17.2 - Prob. 7LOCh. 17.2 - Prob. 8LOCh. 17.2 - Prob. 1ICh. 17.2 - Prob. 2ICh. 17.2 - Prob. 3ICh. 17.2 - Prob. 4ICh. 17.2 - Prob. 5ICh. 17.2 - Prob. 1SRCh. 17.2 - Prob. 19SRCh. 17.2 - Prob. 20SRCh. 17.2 - Prob. 21SRCh. 17.2 - Prob. 22SRCh. 17.2 - Prob. 23SRCh. 17.2 - Prob. 24SRCh. 17.2 - Prob. 25SRCh. 17.2 - Prob. 26SRCh. 17.2 - Prob. 27SRCh. 17.2 - Prob. 28SRCh. 17.2 - Prob. 29SRCh. 17.2 - Prob. 30SRCh. 17.2 - Prob. 31SRCh. 17 - Prob. 1CRQCh. 17 - Prob. 2CRQCh. 17 - Prob. 3CRQCh. 17 - Prob. 4CRQCh. 17 - Prob. 5CRQCh. 17 - Prob. 6CRQCh. 17 - Prob. 7CRQCh. 17 - Prob. 8CRQCh. 17 - Prob. 9CRQCh. 17 - Prob. 10CRQCh. 17 - Prob. 11CRQCh. 17 - Prob. 12CRQCh. 17 - Prob. 13CRQCh. 17 - Prob. 14CRQCh. 17 - Prob. 15CRQCh. 17 - Prob. 16CRQCh. 17 - Prob. 17CRQCh. 17 - Prob. 18CRQCh. 17 - Describe the various types of leukemias. Ch. 17 - Prob. 20CRQCh. 17 - Prob. 21CRQCh. 17 - Prob. 1CICh. 17 - Prob. 2CICh. 17 - Prob. 3CICh. 17 - Prob. 4CICh. 17 - Prob. 5CICh. 17 - Prob. 6CICh. 17 - Prob. 7CI
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