TY - JOUR
T1 - Configurations of Proto-Cell Aggregates with Anisotropy
T2 - Gravity Promotes Complexity in Theoretical Biology
AU - Flores, Juan César
N1 - Publisher Copyright:
© 2022 by the author.
PY - 2022/11
Y1 - 2022/11
N2 - This contribution considers proto-cell structures associated with asymmetries, mainly gravity, in the framework of reaction–diffusion. There are equivalent solutions for defined morphogen parameters in the equations that allow for defining proto-tissue complexity and configurational entropy. Using RNA data, improvements to the complexity and entropy due to the Earth’s gravity are presented. The theoretical proto-tissues complexity estimation, as a function of arbitrary surface gravity, is likewise proposed. In this sense, hypothetical aggregates of proto-cells on Mars would have a lower complexity than on Earth, which is equally valid for the Moon. Massive planets, or exoplanets like BD+20594b, could have major proto-tissue complexity and, eventually, rich biodiversity.
AB - This contribution considers proto-cell structures associated with asymmetries, mainly gravity, in the framework of reaction–diffusion. There are equivalent solutions for defined morphogen parameters in the equations that allow for defining proto-tissue complexity and configurational entropy. Using RNA data, improvements to the complexity and entropy due to the Earth’s gravity are presented. The theoretical proto-tissues complexity estimation, as a function of arbitrary surface gravity, is likewise proposed. In this sense, hypothetical aggregates of proto-cells on Mars would have a lower complexity than on Earth, which is equally valid for the Moon. Massive planets, or exoplanets like BD+20594b, could have major proto-tissue complexity and, eventually, rich biodiversity.
KW - morphogens
KW - planets and exo-planets
KW - proto-cells
UR - https://www.scopus.com/pages/publications/85141780582
U2 - 10.3390/e24111598
DO - 10.3390/e24111598
M3 - Article
AN - SCOPUS:85141780582
SN - 1099-4300
VL - 24
JO - Entropy
JF - Entropy
IS - 11
M1 - 1598
ER -