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Neil W. Blackstone [9]Neil Blackstone [1]
  1.  12
    The enigmatic Placozoa part 1: Exploring evolutionary controversies and poor ecological knowledge.Bernd Schierwater, Hans-Jürgen Osigus, Tjard Bergmann, Neil W. Blackstone, Heike Hadrys, Jens Hauslage, Patrick O. Humbert, Kai Kamm, Marc Kvansakul, Kathrin Wysocki & Rob DeSalle - 2021 - Bioessays 43 (10):2100080.
    The placozoan Trichoplax adhaerens is a tiny hairy plate and more simply organized than any other living metazoan. After its original description by F.E. Schulze in 1883, it attracted attention as a potential model for the ancestral state of metazoan organization, the “Urmetazoon”. Trichoplax lacks any kind of symmetry, organs, nerve cells, muscle cells, basal lamina, and extracellular matrix. Furthermore, the placozoan genome is the smallest (not secondarily reduced) genome of all metazoan genomes. It harbors a remarkably rich diversity of (...)
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  2.  35
    Why Do Corals Bleach? Conflict and Conflict Mediation in a Host/Symbiont Community.Neil W. Blackstone & Jeff M. Golladay - 2018 - Bioessays 40 (8):1800021.
    Coral bleaching has attracted considerable study, yet one central question remains unanswered: given that corals and their Symbiodinium symbionts have co‐evolved for millions of years, why does this clearly maladaptive process occur? Bleaching may result from evolutionary conflict between the host corals and their symbionts. Selection at the level of the individual symbiont favors using the products of photosynthesis for selfish replication, while selection at the higher level favors using these products for growth of the entire host/symbiont community. To hold (...)
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  3.  16
    The evolution of a mechanism of cell suicide.Neil W. Blackstone & Douglas R. Green - 1999 - Bioessays 21 (1):84-88.
  4. Evolution of individuality revisited.Arunas Radzvilavicius & Neil Blackstone - 2018 - Biological Reviews 3 (93):1620-1633.
    Evolutionary theory is formulated in terms of individuals that carry heritable information and are subject to selective pressures. However, individuality itself is a trait that had to evolve - an individual is not an indivisible entity, but a result of evolutionary processes that necessarily begin at the lower level of hierarchical organisation. Traditional approaches to biological individuality focus on cooperation and relatedness within a group, division of labour, policing mechanisms and strong selection at the higher level. Nevertheless, despite considerable theoretical (...)
     
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  5.  24
    Redox control and the evolution of multicellularity.Neil W. Blackstone - 2000 - Bioessays 22 (10):947-953.
  6.  1
    Can natural selection and druggable targets synergize? Of nutrient scarcity, cancer, and the evolution of cooperation.Neil W. Blackstone & Jordan U. Gutterman - 2021 - Bioessays 43 (2):2000160.
    Since the dawn of molecular biology, cancer therapy has focused on druggable targets. Despite some remarkable successes, cell‐level evolution remains a potent antagonist to this approach. We suggest that a deeper understanding of the breakdown of cooperation can synergize the evolutionary and druggable‐targets approaches. Complexity requires cooperation, whether between cells of different species (symbiosis) or between cells of the same organism (multicellularity). Both forms of cooperation may be associated with nutrient scarcity, which in turn may be associated with a chemiosmotic (...)
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  7.  20
    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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  8.  7
    The enigmatic Placozoa part 2: Exploring evolutionary controversies and promising questions on earth and in space.Bernd Schierwater, Hans-Jürgen Osigus, Tjard Bergmann, Neil W. Blackstone, Heike Hadrys, Jens Hauslage, Patrick O. Humbert, Kai Kamm, Marc Kvansakul, Kathrin Wysocki & Rob DeSalle - 2021 - Bioessays 43 (10):2100083.
    The placozoan Trichoplax adhaerens has been bridging gaps between research disciplines like no other animal. As outlined in part 1, placozoans have been subject of hot evolutionary debates and placozoans have challenged some fundamental evolutionary concepts. Here in part 2 we discuss the exceptional genetics of the phylum Placozoa and point out some challenging model system applications for the best known species, Trichoplax adhaerens.
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  9.  5
    Review of Invertebrate Zoology: A Tree of Life Approach, by Bernd Schierwater and Rob DeSalle. [REVIEW]Neil W. Blackstone - 2022 - Bioessays 44 (4):2200012.
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