Study Guide for Campbell Biology
11th Edition
ISBN: 9780134443775
Author: Lisa A. Urry, Michael L. Cain, Steven A. Wasserman, Peter V. Minorsky, Jane B. Reece, Martha R. Taylor, Michael A. Pollock
Publisher: PEARSON
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Chapter 32, Problem 4IQ
Summary Introduction
To fill: The following table to review some of the differences in protostome and deuterostome development.
Introduction: Animals are multicellular eukaryotes and have heterotrophic (ingest food and digest it by certain digestive enzymes) mode of nutrition. Based on the embryonic development, metazoans are divided into deuterostomes and protostomes.
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List the advantages of evolving a deuterostome pattern of development.
Compare and contrast the embryonic development of protostomes and deuterostomes
Identify the characteristics of protostome development:
Select one or more:
O spiral cleavage pattern
indeterminate cleavage
radial cleavage pattern
O blastopore becomes the anus
O blastopore becomes the mouth
Chapter 32 Solutions
Study Guide for Campbell Biology
Ch. 32 - a. What is a larva? b. How does a larva differ...Ch. 32 - Describe the three hypotheses for the rapid...Ch. 32 - Prob. 3IQCh. 32 - Prob. 4IQCh. 32 - Fill in the blanks in the following simplified...Ch. 32 - Prob. 1TYKCh. 32 - The process during which the germ layers are...Ch. 32 - Prob. 3TYKCh. 32 - Prob. 4TYKCh. 32 - Prob. 5TYK
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- Developmental patterns between protostomes and deuterostomes Developmental Pattern Protostomes Deuterostomes Cleavage pattern Coelom development Fate of blastoporearrow_forwardWhich combination of characteristics is typical of the development of a deuterostome? Question 9 options: Radial and indeterminate segmentation; solid masses of mesoderm split to form the coelom; mouth formed from the blastopore. Spiral and determinate segmentation; formation of the coelom from mesodermal outpocketing of the archenteron; anus formed from the blastopore. Radial and indeterminate segmentation; formation of the coelora from mesodermal outpocketing of the archenteron; anus formed from the blastopore. Spiral and determinate segmentation; solid masses of mesoderm split and form the coelom; mouth formed from the blastopore. Which words fill the open spaces in the following sentences. Let's assume that hair might have originally arisen in the context of selection for loss of heat, and only later was co-opted (used) to preserve heat. In this case, hair would should be considered an (word 1) for heat loss and an (word 2) to preserve heat. Question 10 options: Word 1 =…arrow_forwardEssay on (2 pages): Describe the radiation in vertebrate forms from phylotypic stage by focusing on three groups of vertebrates and then tracing the development of several homologous features in each group. Connect specific embryological structures in the phylotypic stage to divergent morphological structures in the adults of each of these groups.arrow_forward
- 1 page: Describe the radiation in vertebrate forms from phylotypic stage by focusing on three groups of vertebrates and then tracing the development of several homologous features in each group. Connect specific embryological structures in the phylotypic stage to divergent morphological structures in the adults of each of these groups.arrow_forwardDescribe the development of the notochord. Include the terms primitive pit, notochordal process, notochordal canal, neurenteric canal, notochordal plate, ectoderm, mesoderm, and endoderm in your descriptions. Include labeled diagrams in your description. With respect to the developing notochord, where is the cloacal membrane, allantois, embryonic ectoderm, embryonic endoderm, and embryonic mesoderm with reference to the developing notochord.arrow_forwardDescribe the radiation in vertebrate forms from phylotypic stage by focusing on three groups of vertebrates and then tracing the development of several homologous features in each group. Connect specific embryological structures in the phylotypic stage to divergent morphological structures in the adults of each of these groups. (Answer all questions, if possible)arrow_forward
- A synapomorphy and symplesiomorphy for the vertebrates (respectively) would be; True tissues, Deuterostome development True tissues, Dorsal hollow nerve chord Eukaryotic, Dueterostome development Vertebral column, True tissuesarrow_forwardIn your own words, describe information from Figure 4.2. Give examples of different organisms covered in lab that fall into each category (you can exclude deuterostomes, since we cover that in the next lab).arrow_forwardGive typed full explanationarrow_forward
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