BDNF, endurance activity, and mechanisms underlying the evolution of hominin brains
Datos Bibliográficos
| ID | 8318142 |
|---|---|
| Autores | Tyler Hill (0000-0002-9192-8327, Department of Anthropology University of Illinois Urbana‐Champaign Urbana Illinois), John D Polk (0000-0002-8977-6635, Department of Anthropology University of Illinois Urbana‐Champaign Urbana Illinois, autor de correspondencia) |
| Año | 2019 |
| Volumen | 168 |
| Número | S67 |
| Páginas | 47-62 |
| Fecha de publicación | 2019-01-01 |
| Peer Reviewed | Sí |
| Open Access | Sí |
| Tipo | ARTICLE |
| Revista | American Journal of Physical Anthropology (JOURNAL) |
| Identificadores de la revista | ISSN: 0002-9483 • E-ISSN: 1096-8644 |
| Editorial | Wiley (PUBLISHER • GB) |
| DOI | 10.1002/ajpa.23762 |
| PMID | 30575024 |
| OpenAlex | W2906447287 |
| Idioma | EN |
| Citas recibidas | 2 |
| Referencias citadas | 180 |
OBJECTIVES: As a complex, polygenic trait, brain size has likely been influenced by a range of direct and indirect selection pressures for both cognitive and non-cognitive functions and capabilities. It has been hypothesized that hominin brain expansion was, in part, a correlated response to selection acting on aerobic capacity (Raichlen & Polk, 2013). According to this hypothesis, selection for aerobic capacity increased the activity of various signaling molecules, including those involved in brain growth. One key molecule is brain-derived neurotrophic factor (BDNF), a protein that regulates neuronal development, survival, and plasticity in mammals. This review updates, partially tests, and expands Raichlen and Polk's (2013) hypothesis by evaluating evidence for BDNF as a mediator of brain size. DISCUSSION: We contend that selection for endurance capabilities in a hot climate favored changes to muscle composition, mitochondrial dynamics and increased energy budget through pathways involving regulation of PGC-1α and MEF2 genes, both of which promote BDNF activity. In addition, the evolution of hairlessness and the skin's thermoregulatory response provide other molecular pathways that promote both BDNF activity and neurotransmitter synthesis. We discuss how these pathways contributed to the evolution of brain size and function in human evolution and propose avenues for future research. Our results support Raichlen and Polk's contention that selection for non-cognitive functions has direct mechanistic linkages to the evolution of brain size in hominins.
Biology · Evolutionary biology · Neurogenesis and neuroplasticity mechanisms · Neuroscience · Pleistocene-Era Hominins and Archaeology · Primate Behavior and Ecology
Energy Expenditure in Humans and Other Primates
Endurance running and the evolution of Homo
Energetics and the evolution of human brain size
Exercise training increases size of hippocampus and improves memory
Chimpanzee locomotor energetics and the origin of human bipedalism
Detecting interregionally diversifying natural selection on modern human cranial form by using matched molecular and morphometric data
Be smart, exercise your heart
Brain growth, life history, and cognition in primate and human evolution
The social brain hypothesis
Brain Size Growth and Life History in Human Evolution
Dietary constraints on encephalization in primates
The Energetic Paradox of Human Running and Hominid Evolution [and Comments and Reply]
Brain Size, Cranial Morphology, Climate, and Time Machines [and Comments and Reply]
The thermoregulatory advantages of hominid bipedalism in open equatorial environments
The evolution of bipedality and loss of functional body hair in hominids
The energetic significance of cooking
Allomaternal care, life history and brain size evolution in mammals
The Evolution of Human Skin and Skin Color
Brain Plasticity and Human Evolution
The Expensive-Tissue Hypothesis
| Obras citantes distintas | 2 |
|---|---|
| Citas por año | 0,4 |
| Intervalo de citas | 2021 - 2021 (1) |
| Velocidad de citación | historical |
| Altamente citado | No |