By J. Todd Streelman
Supplying impressive breadth of insurance in evo-devo, Advances in Evolutionary Developmental Biology provides a entire evaluate of the milestones of analysis in evolution and improvement and descriptions the fascinating learn schedule for the sector going ahead. Compiling the viewpoints of a various crew of box specialists, this well timed textual content expands the now-mature technological know-how of evo-devo into extra advanced parts of analysis. This crucial reference is destined to develop into the go-to resource for ideas and hypotheses for a brand new iteration of graduate scholars in evolutionary and developmental biology.Content:
Chapter 1 “The Genetic Tool‐Kit”: The Life‐History of a tremendous Metaphor (pages 1–14): Adam S. Wilkins
Chapter 2 The Evolution of intercourse decision in Animals (pages 15–36): Judith E. Mank and Tobias Uller
Chapter three The Evolution and improvement of Eusocial Insect habit (pages 37–57): Adam G. Dolezal, Kevin B. Flores, Kirsten S. Traynor and Gro V. Amdam
Chapter four Evo‐Devo on Chip (pages 59–79): Mei Zhan and hold Lu
Chapter five From Black and White to colors of grey: Unifying Evo‐Devo throughout the Integration of Molecular and Quantitative ways (pages 81–109): Kevin J. Parsons and R. Craig Albertson
Chapter 6 Advances in figuring out Limb Regeneration in a Developmental and Evolutionary Context (pages 111–131): Jessica A. Lehoczky and Clifford J. Tabin
Chapter 7 Ectodermal Organ Stem Cells: Morphogenesis, inhabitants Regenerative habit, and Evo‐Devo (pages 133–150): Ping Wu, Li Ang, Yin Jun, Widelitz Randall and Chuong Cheng‐Ming
Chapter eight views in Evo‐Devo of the Vertebrate mind (pages 151–172): Sylvie Rétaux, Franck Bourrat, Jean‐Stéphane Joly and Hélène Hinaux
Chapter nine Evolution and improvement of Language (pages 173–201): Daniel J. Miller and Genevieve Konopka
Chapter 10 Advancing Evolutionary Developmental Biology (pages 203–217): Jeffrey T. Streelman
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Additional resources for Advances in Evolutionary Developmental Biology
Sex determination in C. elegans shares many elements with Drosophila, both in terms of the X chromosome dosage that initiates regulation of the gene xol-1, as well as conserved genes such as tra (Conradt and Horvitz 1999). However, sex determination in C. elegans does not seem to involve sex-specific splicing, which thus far appears to be limited to the insects. Finally, C. elegans is interesting in that XX individuals develop as hermaphrodites, which sequentially produce first male, then female gametes.
Transcription factors) II. g. SOX9) III. 2. Generalized model of a sex determination network based on current understanding from GSD species. The GSD network often is located at the convergence of the gonadal differentiation network, which integrates several different inputs (maternal, environmental, genetic; Panel I) into a single element or multiple hierarchically ordered elements occupying a central node in the network (Panel II). The central node then in turn switches on multiple other genes.
Sex determination in honeybees: Two separate mechanisms induce and maintain the female pathway. Plos Biology 7. , Prud’homme, B. (2009). The causes of repeated genetic evolution. Developmental Biology 332, 36–47. Goodwin, E. , Okkema, P. , Evans, T. , Kimble, J. (1993). Translational regulation of tra-2 by its 3′ untranslated region controls sexual identity in C. elegans. Cell 75, 329–339. Graves, J. A. M. (2006). Sex chromosome specialization and degeneration in mammals. Cell 124, 901–914. Graves, J.
Advances in Evolutionary Developmental Biology by J. Todd Streelman