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  1. Rising starlet: the starlet sea anemone,Nematostella vectensis.John A. Darling, Adam R. Reitzel, Patrick M. Burton, Maureen E. Mazza, Joseph F. Ryan, James C. Sullivan & John R. Finnerty - 2005 - Bioessays 27 (2):211-221.
    In recent years, a handful of model systems from the basal metazoan phylum Cnidaria have emerged to challenge long-held views on the evolution of animal complexity. The most-recent, and in many ways most-promising addition to this group is the starlet sea anemone, Nematostella vectensis. The remarkable amenability of this species to laboratory manipulation has already made it a productive system for exploring cnidarian development, and a proliferation of molecular and genomic tools, including the currently ongoing Nematostella genome project, further enhances (...)
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  • Multicellular redox regulation: integrating organismal biology and redox chemistry.Neil W. Blackstone - 2006 - Bioessays 28 (1):72-77.
    Early in the 20th century, Charles Manning Child attributed organismal gradients in metabolism to interactions among groups of cells. Metabolic gradients are now firmly grounded in redox chemistry, yet modern work on metabolic signaling has consistently focused on the cellular level. Multicellular redox regulation, however, may occur when redox state is determined by the behavior of a group of cells. For instance, typically an abundance of substrate will shift the redox state of mitochondria in the direction of reduction, leading to (...)
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