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Tag: insects

Nature vs Science and Autophagy.pro

Dec 15, 2017James KohlAdaptations, Alternative Splicings, Autophagy, base editing, biophotonics, Diseases & Disorders, Ecology, Light Energy, microRNA editing, Model Organisms, Nutrigenomics, Physics, RNA Directed, RNA editing, RNA interference, RNA-mediated epigenetic regulation of gene expression, RNA–Mediated Epigenetic Heredity, Variationsautophagy, biophysically constrained biodiversity, Calcium, Chloride, epistasis, feedback loops, fertility, Glucose, GnRH, gonadotropin-releasing hormone, healthy longevity, Hematocrit, Hemoglobin, hydrogen-atom transfer in DNA base pairs in solution, innate immune system, insects, intracellular signaling, intranuclear interactions, Lactic Acid, LH secretion, light, mammals, microbes, microRNA/messenger RNA balance, molecular epigenetics, nematodes, network of hydrogen bonds, nutritional epigenetics, pCO2, pH, pheromone-controlled, pO2, Potassium, potential of hydrogen, replication of viruses, selection for phenotype, single amino acid substitution, Sodium, stochastic gene expression, Virus-driven energy theft

Conclusion: The anti-entropic virucidal energy of sunlight links food energy directly from the innate immune system to all morphological and behavioral diversity. It all about energy. It’s all about the creation of enzymes. It’s all about the base pairs. Until the day that I launched Autophagy.pro, I had only one or two Facebook posts that […]

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About J.V. Kohl

James Vaughn KohlJames V. Kohl was the first to accurately conceptualize human pheromones, and began presenting his findings to the scientific community in 1992. He continues to present to, and publish for, diverse scientific and lay audiences, while constantly monitoring the scientific presses for new information that is relevant to the development of his initial and ongoing conceptualization of human pheromones.

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amino acid substitutions angstroms to ecosystems anti-entropic virucidal energy atoms to ecosystems autophagy biodiversity biophysically constrained cell type differentiation chemotaxis chirality chromosomal rearrangements Codon optimality conditions of life de novo Creation ecological adaptations ecological variation endogenous RNA interference energy-dependent energy as information feedback loops G-protein-coupled receptors gene expression healthy longevity hydrogen-atom transfer in DNA base pairs in solution innate immune system microRNA/messenger RNA balance microRNAs mutations natural selection nutrient-dependent pathology pheromone-controlled pheromones phototaxis physiology of reproduction pre-mRNA protein folding chemistry RNA-mediated RNA-mediated amino acid substitutions sunlight supercoiled DNA transgenerational epigenetic inheritance viral latency virus-driven degradation of messenger RNA Virus-driven energy theft
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