![]() |
![]() |
Your cart is empty |
||
Showing 1 - 2 of 2 matches in All Departments
"Genomic Control Process" explores the biological phenomena around genomic regulatory systems that control and shape animal development processes, and which determine the nature of evolutionary processes that affect body plan. Unifying and simplifying the descriptions of development and evolution by focusing on the causality in these processes, it provides a comprehensive method of considering genomic control across diverse biological processes. This book is essential for graduate researchers in genomics,
systems biology and molecular biology seeking to understand deep
biological processes which regulate the structure of animals during
development. Covers a vast area of current biological research to
produce a genome oriented regulatory bioscience of animal life
Places gene regulation, embryonic and postembryonic development,
and evolution of the body plan in a unified conceptual
frameworkProvides the conceptual keys to interpret a broad
developmental and evolutionary landscape with precise experimental
illustrations drawn from contemporary literatureIncludes a range of
material, from developmental phenomenology to quantitative and
logic models, from phylogenetics to the molecular biology of gene
regulation, from animal models of all kinds to evidence of every
relevant typeDemonstrates the causal power of system-level
understanding of genomic control process
Gene Regulatory Networks, Volume 139 in the Current Topics in Developmental Biology series, highlights new advances in the field, with this new volume presenting interesting chapters written by an international board of authors. Topics in this release include Mouse hindbrain GRN, Xenopus endoderm GRN - organogenesis, Vertebrate limb GRN, The notochord gene regulatory network in chordate evolution: conservation and divergence from Ciona to vertebrates, Ciona early embryo GRNs, Boolean logic models, Modeling GRN response to morphogen gradient, GRN architecture, Theory of GRN evolution, Evolution of fly segmentation GRNs, GRN evolution in echinoderms, Evolution of network specificity, and more.
|
![]() ![]() You may like...
|