Campbell Biology in Focus (2nd Edition)
2nd Edition
ISBN: 9780321962751
Author: Lisa A. Urry, Michael L. Cain, Steven A. Wasserman, Peter V. Minorsky, Jane B. Reece
Publisher: PEARSON
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Textbook Question
Chapter 25.3, Problem 1CC
Briefly describe the organisms found in each of the four eukaryotic supergroups.
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Chapter 25 Solutions
Campbell Biology in Focus (2nd Edition)
Ch. 25.1 - Describe major events in the evolution of early...Ch. 25.1 - Explain why eukaryotes are said to be combination...Ch. 25.1 - Prob. 3CCCh. 25.2 - Summarize the evidence that choanoflagellates are...Ch. 25.2 - MAKE CONNECTlONS Describe how the origin of...Ch. 25.2 - Prob. 3CCCh. 25.3 - Briefly describe the organisms found in each of...Ch. 25.3 - MAKE CONNECTIONS Review Figures 7.2 and 8.5...Ch. 25.3 - Prob. 3CCCh. 25.4 - Justify the claim that photosynthetic protists are...
Ch. 25.4 - Prob. 2CCCh. 25.4 - Prob. 3CCCh. 25 - The oldest fossil eukaryote that can be resolved...Ch. 25 - Prob. 2TYUCh. 25 - Plastids that are surrounded by more than two...Ch. 25 - Prob. 4TYUCh. 25 - Prob. 5TYUCh. 25 - Based on the phylogenetic tree in Figure 25.9,...Ch. 25 - MAKE CONNECTIONS The bacterium Wolbachia is a...Ch. 25 - FOCUS ON EVOLUTION DRAW IT Medical researchers...Ch. 25 - FOCUS ON INTERACTIONS Organisms interact with each...Ch. 25 - SYNTHESIZE YOUR KNOWLEDGE These micrographs show...
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- Describe in detail how organisms of the Domain Eukarya are classified into four Kingdoms. What are the four Eukaryotic Kingdoms and what criteria are used to sort Eukaryotic organisms into each Kingdom.arrow_forwardDescribe the evidence that supports the endosymbiotic theory of evolution of eukaryotes.arrow_forwardDifferentiate the following groups of organisms : Archaebacteria (ancient bacteria), Eubacteria (true bacteria), Protista, Fungi, Plantae, Animalia.arrow_forward
- Explain the fates of the ancestral prokaryotes.arrow_forwardThis chapter shows a phylogenetic tree for the three domains of life, which is based on DNA sequence data for rRNA and other genes. Which of the following answers concerning the phylogenetic relationships found within this tree is incorrect? View Available Hint(s)for Part A Euryarcheotes are found in the Archaea Diatoms, Tubulinids, and Euglenozoans belong to the domain Eukarya Forams, Fungi, and Chlamydias belong to the domain Eukarya. Spirochetes belong to the domain Bacteria Ciliates, Red Algae, and Plants belong to the domain Eukarya.arrow_forwardName the seven superkingdoms of eukaryotes and anorganism in each one.arrow_forward
- How have molecular data informed prokaryotic phylogeny?arrow_forwardDraw a simple cladogram illustrating the relationships among the following: Common ancestor of all organisms, domain Eukarya, domain Bacteria, domain Archaea. To which domain do the organisms informally known as protists belong? To which domain do you belong?arrow_forwardList 5 features of Archaea that clearly differentiate the members of this domain from Bacteria (as it relates to replication, transcription, and translation).arrow_forward
- Name several general characteristics that could be used to define the prokaryotes.arrow_forwardIsoprene serves as a building block not only for the hydrocarbons observed in archaeal membranes but also for sterols, carotenoids, retinal, and quinones. Use any resources necessary to identify the function of these other isoprene-based molecules and to determine their distribution in nature. What does the use of isoprene to make this diverse array of molecules suggest about the nature of the last universal common ancestor (LUCA)?arrow_forwardThe Archaeal glycerol stoichiometry is different from the Bacteria and Eukarya. This may suggest that: * Archaea use entirely different enzymes for synthesizing phospholipids Archaean membranes are protected from leaking at high temperatures. Archaean membranes can survive extreme temperatures Archean membranes are not weakened by very acidic or alkaline environments The aim of the supergroup system of classification is to: unite the microbial and macroscopic eukaryotes based on phylogenetic inference reflect the differences between the three domain system based on their 16S rRNA sequences distinguish the clade of the Prokaryotes from the Eukaryotes show the phylogenetic relationships of the different Eukaryotic groups based on molecular dataarrow_forward
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