By E. M. Eisenstein (auth.), Edward M. Eisenstein (eds.)
This quantity had its inception at a symposium entitled Aneura1 Organisms: Their value for Neurobiology held on the wintry weather convention on mind study in Vail, Colorado, in January, 1972. the unique contributors have been Drs. Epstein, Hamilton, Kung, wooden and myself. besides the fact that, due to the fact that point numerous different authors (Drs. Applewhite, Chen, Diehn and Ettienne) have been requested to contri bute papers and all have been requested to replace their shows that allows you to current a extensive standpoint as to the position and importance of aneura1 platforms for investigating neurobiological difficulties. This quantity is the results of that attempt. I desire to thank Dr. Claude F. Baxter, this system chairman of the wintry weather convention, and his employees for his or her aid, in addition to the members for his or her efforts. nice appreciation is due Mrs. Sharon Loomis for her first-class paintings in getting ready the manuscript for booklet. it really is our desire that this quantity will show the usefulness and merits in exploiting aneura1 structures for the insights they could yield in answering the various basic neurobiological questions dealing with us. E.M. Eisenstein v Contents Aneural platforms and Neurobiology: some extent of View . • . 1 E.M. Eisenstein (Introduction) Protozoa as versions of Stimulus Transduction five David C. wooden Genetic Dissection - An method of Neurobiology 25 Ching Kung Cybernetics and the habit of Microorganisms forty-one Bodo Diehn keep an eye on of Ciliary task in Aneural Organisms fifty nine Miles Epstein Membrane capability and behaviour: idea of a version procedure • . . . . . . . .
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Such knowledge often permits one to make inferences about the normal mechanisms of behavior in the wild type. (4) Identification of the gene products. , only one gene product difference, although the gene product may have mUltiple functional effects and expressions (pleiotropism). Such a difference provides a clue which can be used to track down the molecular species of special interest. Unless a molecular 28 CHING KUNG species has a certain enzyme activity or has unique binding properties it cannot be tagged and recognized.
Flow diagram of interactions within the sensory transduction chain involved in photomovement of Euglena. system is characterized by the flow of information between its components, there exists another feedback loop, between the motor and the photosynthetic apparatus, which is characterized by the flow of energy: When Euglena is illuminated with white light of moderate intensity, the linear swimming velocity increases within about 15 minutes (Wolken and Shin, 1958). This type of photokinesis can be explained by movement to the flagellum of highenergy compounds produced in photosynthesis.
1973. Chemotaxis toward sugars in Escherichia coli. ~. , 115, 824-847. B. and Adler, J. 1967. Genetics of motility in Escherichia coli: complementations of paralyzed mutants. , 363-373. B. and Adler, J. 1969. Complementation of nonchemotactic mutants of Escherichia coli. Genetics, 61, 61-66. , Adler, J. M. 1967. Nonchemotactic mutants of Escherichia coli. ~. , ll, 390-398. Benzer, S. 1967. Behavioral mutants of Drosophila isolated by counter-current distribution. Proc. Natl. Acad. Sci. , 58 1112-1119.
Aneural Organisms in Neurobiology by E. M. Eisenstein (auth.), Edward M. Eisenstein (eds.)