Angstroms to ecosystems: a model (2)
(click to enlarge)
Angstroms to ecosystems: a model (1)
Remember what intelligent serious scientists reported in MicroRNA-based regulation of epithelial–hybrid–mesenchymal fate determination 11/5/13 and Stability of the hybrid epithelial/mesenchymal phenotype 3/17/16
“We found that miR-200/ZEB forms a tristable circuit that acts as a ternary switch, driven by miR-34/SNAIL, that is a monostable module that acts as a noise-buffering integrator of internal and external signals.”
Do you know a human sexuality researcher who missed this fact?
See: Express yourself By Jessica Tollkuhn, S. Marc Breedlove Science 4/16/26
“The brain’s expression of more than 3000 genes differs between men and women”
S. Marc Breedlove and most other human sexuality researchers ignored claims about nutrient-dependent pheromone regulated ecological adaptations despite acceptance of our claims in The Scent of Eros: Mysteries of Odor in Human Sexuality 1995/2002, and everything else I published or presented since attending the “International Behavioral Development Symposium: Biological Basis of Sexual Orientation and Sex-typical Behavior” in 1995, 2000 and 2005. He and others continued to bastardize what was known about biologically-based cause and effect until the claims appeared in this abstract as:
Abstract
Men and women show striking differences in risk, prevalence, and progression of many psychiatric and neurological disorders. For example, schizophrenia, attention deficit hyperactivity disorder (ADHD), and Parkinson’s disease are more common in men, whereas mood disorders and Alzheimer’s disease affect women more frequently. Understanding the molecular mechanisms underlying such sex differences could help to identify the pathways that promote resilience to disease and thus might be targeted therapeutically. On page 274 of this issue, DeCasien et. al. (1) report a systematic examination of how sex influences neural gene expression at the single-cell level. They found that more than 3000 genes show sex-biased expression in at least one of six cortical regions. Most of these genes were not located on the sex chromosomes. The findings provide a resource for understanding why the sexes differ in susceptibility to many brain disorders.
My group published on energy-dependent changes in molecular distance in Hormones and Behavior From Fertilization to Adult Sexual Behavior 12/1/96, which attests to the fact that Breedlove and others fell 30 years behind the experimental evidence that all intelligent serious scientists linked to my claims in “Nutrient-dependent Pheromone-Controlled Ecological Adaptations: From Angstroms to Ecosystems“
“AI Overview” … a model by James V. Kohl detailing how nutrients metabolize into pheromones, influencing epigenetic effects on genes and controlling reproduction. It explains that ecological adaptations occur via pheromone-controlled, nutrient-dependent mechanisms from molecular levels (angstroms) to ecosystems.
The open access version of the article appears to be missing from the Journal of Genetics and DNA Research site.
“Articles published in Journal of Genetics and DNA Research have been cited by esteemed scholars and scientists all around the world. Journal of Genetics and DNA Research has got h-index 1 , which means every article in Journal of Genetics and DNA Research has got 1 average citations.”
Journal Highlights
Chromosomal Aberrations, DNA Mutations, Epigenetics. Gene–Gene Editing, Gene Expression, Genetic Disorders, Recombinant DNA Technology, Single Nucleotide Polymorphisms
“No volumes and issues found in database!!“
But see: “Nutrient-dependent pheromone-controlled ecological adaptations: from atoms to ecosystems” before it, or I get disappeared.
Want more on the same topic?
Swipe/Drag Left and Right To Browse Related Posts:
Causal inference vs miRNA abundance (10)
2 MIN READ
0 comments
Causal inference vs miRNA abundance (9)
5 MIN READ
0 comments
Causal inference vs miRNA abundance (8)
3 MIN READ
0 comments
Causal inference vs miRNA abundance (7)
4 MIN READ
0 comments
Causal inference vs miRNA abundance (6)
9 MIN READ
0 comments
Causal inference vs miRNA abundance (5)
2 MIN READ
0 comments
Causal inference vs miRNA abundance (3)
2 MIN READ
0 comments
Causal inference vs miRNA abundance (2)
5 MIN READ
0 comments
@Grok ridicule, not humor (10)
5 MIN READ
0 comments
Causal inference vs miRNA abundance (1)
7 MIN READ
0 comments
@Grok ridicule, not humor (9)
1 MIN READ
0 comments
@Grok ridicule, not humor (8)
4 MIN READ
0 comments
@Grok ridicule, not humor (6)
12 MIN READ
0 comments
@Grok ridicule, not humor (7)
3 MIN READ
0 comments
@Grok ridicule, not humor (5)
4 MIN READ
0 comments
@Grok ridicule, not humor (4)
2 MIN READ
0 comments
@Grok ridicule, not humor (3)
14 MIN READ
0 comments
@Grok ridicule, not humor (2)
2 MIN READ
0 comments
@Grok ridicule, not humor (1)
5 MIN READ
0 comments
Always have hope (10)
3 MIN READ
0 comments
Always have hope (9)
2 MIN READ
0 comments
Always have hope (8)
3 MIN READ
0 comments
Always have hope (6)
3 MIN READ
0 comments
Always have hope (7)
2 MIN READ
0 comments
Always have hope (5)
3 MIN READ
0 comments
Always have hope (4)
3 MIN READ
0 comments
Always have hope (3)
2 MIN READ
0 comments
Always have hope (2)
4 MIN READ
0 comments
Always have hope (1)
4 MIN READ
0 comments
pH-dependent miRNA-mediated life (10)
2 MIN READ
0 comments
pH-dependent miRNA-mediated life (9)
1 MIN READ
0 comments
pH-dependent miRNA-mediated life (8)
3 MIN READ
0 comments
pH-dependent miRNA-mediated life (7)
3 MIN READ
0 comments
pH-dependent miRNA-mediated life (6)
2 MIN READ
0 comments
pH-dependent miRNA-mediated life (5)
3 MIN READ
0 comments
pH-dependent miRNA-mediated life (4)
4 MIN READ
0 comments
pH-dependent miRNA-mediated life (3)
5 MIN READ
0 comments
pH-dependent miRNA-mediated life (2)
3 MIN READ
0 comments
pH-dependent miRNA-mediated life (1)
5 MIN READ
0 comments
Angstroms to ecosystems: a model (10)
2 MIN READ
0 comments
Angstroms to ecosystems: a model (9)
9 MIN READ
0 comments
Angstroms to ecosystems: a model (8)
1 MIN READ
0 comments
Angstroms to ecosystems: a model (7)
2 MIN READ
0 comments
Angstroms to ecosystems: a model (6)
3 MIN READ
0 comments
Angstroms to ecosystems: a model (5)
3 MIN READ
0 comments
Angstroms to ecosystems: a model (4)
2 MIN READ
0 comments
Angstroms to ecosystems: a model (3)
2 MIN READ
0 comments
Angstroms to ecosystems: a model (1)
3 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (10)
3 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (9)
4 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (8)
3 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (7)
2 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (6)
2 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (5)
4 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (4)
3 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (3)
2 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (2)
7 MIN READ
0 comments
Questions vs facts about miRNAs (10)
2 MIN READ
0 comments
VA’s claims of “Disruptive behavior” (1)
3 MIN READ
0 comments
Questions vs facts about miRNAs (9)
1 MIN READ
0 comments
Questions vs facts about miRNAs (8)
3 MIN READ
0 comments
Questions vs facts about miRNAs (7)
3 MIN READ
0 comments
Questions vs facts about miRNAs (6)
5 MIN READ
0 comments
Questions vs facts about miRNAs (5)
2 MIN READ
0 comments
Questions vs facts about miRNAs (4)
6 MIN READ
0 comments
Questions vs facts about miRNAs (3)
2 MIN READ
0 comments
Questions vs facts about miRNAs (2)
12 MIN READ
0 comments
Questions vs facts about miRNAs (1)
3 MIN READ
0 comments
miRNA-mediated neural interfaces (10)
9 MIN READ
0 comments
miRNA-mediated neural interfaces (9)
5 MIN READ
0 comments
miRNA-mediated neural interfaces (8)
4 MIN READ
0 comments
miRNA-mediated neural interfaces (7)
5 MIN READ
0 comments
miRNA-mediated neural interfaces (6)
11 MIN READ
0 comments
miRNA-mediated neural interfaces (5)
2 MIN READ
0 comments
miRNA-mediated neural interfaces (4)
3 MIN READ
0 comments
miRNA-mediated neural interfaces (3)
7 MIN READ
0 comments
miRNA-mediated neural interfaces (2)
2 MIN READ
0 comments
miRNA-mediated neural interfaces (1)
6 MIN READ
0 comments
Grok AI appreciates the nuance (10)
3 MIN READ
0 comments
Grok AI appreciates the nuance (9)
7 MIN READ
0 comments
Grok AI appreciates the nuance (8)
3 MIN READ
0 comments
Grok AI appreciates the nuance (7)
4 MIN READ
0 comments
Grok AI appreciates the nuance (6)
2 MIN READ
0 comments
Grok AI appreciates the nuance (5)
5 MIN READ
0 comments
Grok AI appreciates the nuance (4)
7 MIN READ
0 comments
Grok AI appreciates the nuance (3)
5 MIN READ
0 comments
Grok AI appreciates the nuance (2)
5 MIN READ
0 comments
Grok AI appreciates the nuance (1)
2 MIN READ
0 comments
Grok AI: killing without a care (10)
4 MIN READ
0 comments
Grok AI: killing without a care (9)
2 MIN READ
0 comments
Grok AI: killing without a care (8)
3 MIN READ
0 comments
Grok AI: killing without a care (7)
2 MIN READ
0 comments
Grok AI: killing without a care (6)
3 MIN READ
0 comments
Grok AI: killing without a care (5)
5 MIN READ
0 comments
Grok AI: killing without a care (4)
3 MIN READ
0 comments
Grok AI: killing without a care (3)
4 MIN READ
0 comments
Grok AI: killing without a care (2)
2 MIN READ
0 comments
Grok AI: killing without a care (1)
3 MIN READ
0 comments
miRNAs, SNPs & biodiversity (10)
4 MIN READ
0 comments
miRNAs, SNPs & biodiversity (9)
3 MIN READ
0 comments
miRNAs, SNPs & biodiversity (8)
3 MIN READ
0 comments
miRNAs, SNPs & biodiversity (7)
2 MIN READ
0 comments
miRNAs, SNPs & biodiversity (6)
5 MIN READ
0 comments
miRNAs, SNPs & biodiversity (5)
5 MIN READ
0 comments
miRNAs, SNPs & biodiversity (4)
4 MIN READ
0 comments
miRNAs, SNPs & biodiversity (3)
2 MIN READ
0 comments
miRNAs, SNPs & biodiversity (2)
3 MIN READ
0 comments
miRNAs, SNPs & biodiversity (1)
3 MIN READ
0 comments
miRNA-mediated human occupation (10)
3 MIN READ
0 comments
miRNA-mediated human occupation (9)
3 MIN READ
0 comments
miRNA-mediated human occupation (8)
5 MIN READ
0 comments
miRNA-mediated human occupation (7)
5 MIN READ
0 comments
miRNA-mediated human occupation (6)
3 MIN READ
0 comments
miRNA-mediated human occupation (5)
3 MIN READ
0 comments
miRNA-mediated human occupation (3)
4 MIN READ
0 comments
miRNA-mediated human occupation (2)
3 MIN READ
0 comments
miRNA-mediated cell types (9)
4 MIN READ
0 comments
miRNA-mediated cell types (7)
2 MIN READ
0 comments
miRNA-mediated cell types (8)
16 MIN READ
0 comments
miRNA-mediated cell fate (1)
4 MIN READ
0 comments