Pheromone-regulated genetic processes (5)

By: James V. Kohl | Published on: September 20, 2022

See first: Pheromone-regulated genetic processes (3) and Pheromone-regulated genetic processes (4)

3: Food energy-dependent pheromone-regulated genetic processes of hormone-dependent reproduction have since been linked to miRNA-mediated constraints on cell type differentiation via messenger RNA (mRNA) therapy.

4: “This links light-activated microRNA-mediated protein folding chemistry from microRNA biogenesis in plants to pheromone-regulated sympatric speciation across kingdoms via… claims about chromosomal rearrangements.”

For comparison, see: Carlo Rovelli’s: Helgoland: Making Sense of the Quantum Revolution 3/25/21

We and everything around us exist only in our interactions with one another.

But wait, he cites the Mūlamadhyamakakārikā,

[A]ll experienced phenomena are empty (sunya). This did not mean that they are not experienced and, therefore, non-existent; only that they are devoid of a permanent and eternal substance (svabhava) because, like a dream, they are mere projections of human consciousness. Since these imaginary fictions are experienced, they are not mere names (prajnapti).[31]

Thank God, the clarification of pseudoscientific nonsense was placed into the context of Olfaction Warps Visual Time Perception 5/1/18 and Pheromone effects on the human hypothalamus in relation to sexual orientation and gender 7/17/21

Quantum interference was again linked to coherently organized biology across kingdoms via epigenetic effects of sunlight and humidity on: A Synbiotic Combination of Lactobacillus gasseri 505 and Cudrania tricuspidata Leaf Extract Prevents Stress-Induced Testicular Dysfunction in Mice 4/20/22

…transcription levels of gonadotropin-releasing hormone (GnRH), GnRH receptor, and gonadotropins, moreover, testicular development (i.e., Adam5, Adam29, and Spam1) – and steroidogenesis (i.e., Lhr, Egfr, and StAR) -related genes were significantly downregulated by UCMS

For context, see Photoperiods induced the circRNA differential expression in the thyroid gland of OVX+E2 ewes 8/29/22 and McEwen et al., (1964).

Circular RNAs (circRNAs) are non-coding RNAs newly identified and play important roles in RNA regulation. However, little is known regarding photoperiods induced circRNAs in the thyroid gland.

McEwen et al., (1964).  Dependence of RNA synthesis in isolated thymus nuclei on glycolysis, oxidative carbohydrate catabolism and a type of “oxidative phosphorylation”

The synthesis of RNA in isolated thymus nuclei is ATP dependent.


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