"All the World's a Stage We Pass Through" R. Ayana

Showing posts with label bruce lipton. Show all posts
Showing posts with label bruce lipton. Show all posts

Monday, 16 November 2015

Beyond Deterministic Genes: The Morphogenetic Field


Beyond Deterministic Genes:
The Morphogenetic Field

http://naturalsociety.com/wp-content/uploads/dna_spiritual_field.png




Our genes have long been ballyhooed as either a death-sentence or the Midas touch of genius, bestowing upon us pristine health and an agile mind, or the deterministic outcome of cancer, neurological disease, or various other birth defects. But what if there was something else helping to determine our fate?

What if our genes were merely building blocks, and a greater intelligence was in charge of whether or not we can throw a basketball from the free throw line and get nothing but net every time, or die at the age of 46 like every other person in our family’s history, due to a genetic predisposition for cardiac arrest?


Do Genes Make the Man – Entirely?


Genetic determinism is the idea that genes, to the exclusion of environment or the field of our awareness and experience, determine how an organism turns out. You could call it the extreme version of nature vs. nurture, wherein our DNA tells us everything about what something will be.

The aforementioned idea decides that generational programming accounts for everything. We’ve become so obsessed with genes, in fact, that we test for everything – from BRAC1 and BRAC2 genes for breast or ovarian cancer, to simply testing our DNA for clues into our ancestral roots. It isn’t as though this information isn’t useful, or even fun, but it can be deceptively limiting.

While we can learn if our great-great grandparents were likely to fish or have red hair, we can also find less savory ‘genes’ that foreshadow more somber outcomes.

One of the biggest intellectual roadblocks to overcome in healing ourselves, or even understanding the Universe fully, is based on this assumption: that our genes determine our reality, or the likelihood our lives and health will follow a predetermined path. This assumption is based on yet another erroneous fallacy – that we are just a combination of mechanical, chemical, and hormonal interactions – what Newtonian science would call ‘modern medicine.’

Even after mapping out 3.2 billion base pairs of DNA in the human genome project, we were no closer to figuring out how to heal aberrant DNA for one reason. While many scientists were looking at the four single letters in a protein recipe and how they carry out bodily functions, they forgot to make room for consciousness.


Consciousness, Thoughts, and Intentions


Instead of our lives being determined by our genes, they are more likely determined by what science now calls epigenetics. Our genes grow in a soup of resonant fields created by thoughts and intentions. Rupert Sheldrake, the noted biologist and author of over 80 scientific papers on the subject, has been railing against mainstream science, trying to break through its dogma on the subject for decades:

Morphic resonance is a process whereby self-organising systems inherit a memory from previous similar systems. In its most general formulation, morphic resonance means that the so-called laws of nature are more like habits. The hypothesis of morphic resonance also leads to a radically new interpretation of memory storage in the brain and of biological inheritance. Memory need not be stored in material traces inside brains, which are more like TV receivers than video recorders, tuning into influences from the past.

And biological inheritance need not all be coded in the genes, or in epigenetic modifications of the genes; much of it depends on morphic resonance from previous members of the species. Thus each individual inherits a collective memory from past members of the species, and also contributes to the collective memory, affecting other members of the species in the future.”

Sheldrake calls this field, ‘the extended mind’.  He has defended his theory over and over again from people who call him a crackpot or a whack job. His latest book, Science Set Free, discusses his theory to great extent, but for now, we can discuss it summarily.

Dr. Bruce Lipton, a controversial biologist, has pointed out that one set of gene blueprints can result in over 30,000 different possible outcomes. In multiple adoption studies conducted in the 1880s and 1990s, it was found that children in the same family have an important causal role in gene expression, regardless of their biological origins.


Genes Are Only a Piece of the Puzzle


Researchers found that even children who did not have particular gene combinations that would predispose them to certain types of cancer – but were adopted into families that had attitudes or prevalent emotions that resulted in this health outcome – also often developed the same cancers as their host families did. Social context also played a significant role in whether these adopted children developed a disease. It was surprisingly uncommon for the genes themselves to play out deterministic health scenarios.

Genes are not locked into a specific code. Gene activity can change on a daily basis, and does. The heretofore accepted scientific paradigm of genetic determinacy is being turned on its head. As Lipton explains in a lecture:

“The name protein means ‘primary element’ (proteios, Gr.) for proteins are the primary components of all plant and animal cells. A human is made of ~100,000 different proteins. Proteins are linear ‘chains,’ whose molecular ‘links’ are comprised of amino acid molecules. Each of the 20 different amino acids has a unique shape, so that when linked together in a chain, the resulting proteins fold into elaborate 3-dimensional ‘wire sculptures.’ The protein sculpture’s pattern is determined by the sequence of its amino acid links.

The balancing of electromagnetic charges along the protein’s chain serves to control the ‘final’ shape of the sculpture. The unique shape of a protein sculpture is referred to as its ‘conformation.’ In the manner of a lock and key, protein sculptures compliment the shape of environmental molecules (which include other proteins). When proteins interlock with the complementary environmental molecules, they assemble into complex structures (similar to the way cogged ‘gears’ intermesh to make a watch).”

This and other discoveries made in the last hundred years have allowed scientists willing to go against mainstream to understand that the ‘primary components’ of life are still orchestrated by something more.



Transhuman by R. Ayana


Bound Together, Appearing Separate


The morphic resonance theory postulates that we are bound together even though we appear separate, and it is in this field that communication (among cells, DNA, particles, etc.) takes place. While Newtonian science explained the theory of gravitation, outlining the invisible force which holds all things together, the same scientific reasoning also tended to divide everything into separate, mechanistic, material categories. Why is an apple different than a tomato, or a bee different from a persimmon flower? How does the DNA know to make a tree or an ant? A human being or a salamander?

The word ‘morphic’ comes from the Greek meaning ‘form,’ and the morphogentic field determines how things take form. It doesn’t just organize living things, but also inanimate, non-sentient matter. While genes play an important part in organizing us into things, they don’t explain how the organization itself happens. After all, apes and humans, fruit flies and worms are all very similar, genetically.

The theory of morphogenesis supposes that something imposes a pattern of organization on a field – producing specific outcomes in matter. These fields are not fixed; they evolve. This is part of the reason you can see a child that doesn’t have cancer in her genes develop cancer when she is exposed to a ‘field’ which consistently creates the disease. It is also why some people with cancer-causing genes don’t get cancer at all. Sheldrake thinks these messages in the field are passed down through a ‘non-local’ resonance, but ancients called this consciousness.

In another interesting experiment conducted recently, two bilaterally symmetric eyes arise from the anterior neural plate in vertebrate embryos. Those pose an interesting question – did both eyes share a common developmental origin or did they originate separately? Does all of nature spring forward in a ‘Big Bang’ moment, or does it exist as merely a possibility in a metaphysical realm waiting to become ‘real.’

Whatever is discovered to be the underlying cause, or pattern of development, it has been noted that morphic fields of social groups connect group members – even when they are far away – and provide channels of communication through which organisms can communicate at a distance, affecting the genome. This is also the foundation of distance healing, and may even possibly explain how entire forests communicate beyond the network of fungi found on a forest floor. In more than 61 studies on distance healing along with 120 additional randomized controlled studies involving thousands of miles of geographic distance, DNA changes as well as spontaneous healings occurred repeatedly.


 Dreamer by R. Ayana

DNA may be Fixed, but Epigenome is Flexible


It turns out that our DNA code is fixed for life, but the epigenome is flexible. Epigenomes react to signals from the outside world, such as diet and stress. Even in differentiated cells, signals fine-tune cell functions through changes in gene expression. A flexible epigenome allows us to adjust to changes in the world around us, and to learn from our experiences. This happens both singularly and collectively.

Epigenome signaling can happen from inside a cell, from neighboring cells, or from the environment entirely outside the cell.

  • In early life, our mother’s nutrition and state of mind helps to develop the epigenome. If she is flooded with stress hormones, or eats lots of kale and spinach, this will affect the genes.

  • As life continues, a wider variety of environmental influences shape the epigenome, from social interactions, physical activity, diet, and emotional reactions to stimulus.

  • Progressing into old age, and throughout life, epigenomic activity is triggered by what is happening in the outside world, shutting down or activating certain sets of genes.

To summarize: eat right, create a loving, peaceful environment, and challenge your societal assumptions if they don’t serve you. Your genes could very well be changed in the process.


Additional Sources:

Noetic
Extension.Berkeley.edu




About Christina Sarich:
Author Image
Christina Sarich is a humanitarian and freelance writer helping you to Wake up Your Sleepy Little Head, and See the Big Picture. Her blog is Yoga for the New World. Her latest book is Pharma Sutra: Healing the Body And Mind Through the Art of Yoga.








Rupert Sheldrake + Bruce Lipton - Frontiers Beyond the Limits of Ordinary Biology



(1:34:52)


For more information about morphogenetic fields see http://nexusilluminati.blogspot.com/search/label/morphogenetic%20fields
For more information about epigenetics see http://nexusilluminati.blogspot.com/search/label/epigenetics

- Scroll down through ‘Older Posts’ at the end of each section


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Thursday, 13 August 2015

How Our Thoughts Control Our DNA


How Our Thoughts Control Our DNA

 

How Our Thoughts Control Our DNA




The common idea that DNA determines so much of who we are — not only our eye or hair color, for example, but also our addictions, disorders, or susceptibility to cancer — is a misconception.  This concept “says you are less powerful than your genes.”

The problem with that belief system is that it extends to another level … You find yourself to be more or less a victim of your heredity.  You become irresponsible. You say, “I can’t do anything about it, so why try?”

In reality, a  person’s perception, not genetic programming, is what spurs all action in the body.  It is actually our beliefs that select our genes, that select our behavior.

The human body is comprised of 50 to 65 trillion cells. Cell functions independent of DNA and its perceptions of environmental stimuli affect DNA. This also applies the same principles to the human body as a whole, showing the power our perceptions, our beliefs, have over DNA.


5-Step Explanation


1.The cell is like a human body and it functions without DNA

 

The cell is like a human body. It is capable of respiration, digestion, reproduction, and other life functions. The nucleus, which contains the genes, has traditionally been viewed as the control center — the brain of the cell.

Yet, when the nucleus is removed, the cell continues with all of its life functions and it can still recognize toxins and nutrients. It appears the nucleus — and the DNA it contains — does not control the cell.

Scientists assumed some 50 years ago that genes control biology. It just seemed so correct, we bought the story. We don’t have the right assumptions.

2. DNA is controlled by the environment

 

Proteins carry out the functions in cells and they are building blocks of life. It has long been thought that DNA controls or determines the actions of proteins.

Here I propose a different model. Environmental stimuli that come into contact with the cell membrane are perceived by receptor proteins in the membrane. This sets off a chain reaction of proteins passing on what could be described as messages to other proteins, motivating action in the cell.

DNA is coated in a protective sleeve of protein. The environmental signals act on that protein, causing it to open up and to select certain genes for use — genes specifically needed to react to the current environment.

Basically, DNA is not the beginning of the chain reaction. Instead, the cell membrane’s perception of the environment is the first step.

If there are no perceptions, the DNA is inactive.

Genes can’t turn themselves on or off … they can’t control themselves. If a cell is cut off from any environmental stimuli, it doesn’t do anything. Life is due to how the cell responds to the environment.

3. Perception of the environment is not necessarily the reality of the environment

 

In a 1988 study done by John Cairns, published in the journal Nature titled “The Origin of Mutants,” he showed that mutations in DNA were not random, but happened in a predetermined way in response to environmental stresses.

In every one of your cells, you have genes whose function it is to rewrite and adapt genes as necessary. In a chart illustrating Cairns findings in the journal, environmental signals were shown to be separate from the organism’s perception of environmental signals.

A being’s perception of the environment acts as a filter between the reality of the environment and the biological reaction to it.

Perception rewrites genes!

4. Human beliefs, choosing to perceive a positive or negative environment

 

Just as a cell has receptor proteins to perceive the environment outside the cell membrane, humans have the five senses.

These are what help a person determine which genes need to be activated for a given situation.

The genes are like programs on a computer disk. These programs can be divided into two classes: the first relates to growth, or reproduction; the second relates to protection.

When a cell encounters nutrients, the growth genes are activated and used. When a cell encounters toxins, the protection genes are activated and used.

When a human being encounters love, the growth genes are activated. When a human being encounters fear, the protection genes are activated.

A person may perceive a negative environment where there is actually a supportive or positive environment. When this negative perception activates the protection genes, the body’s response is the programmed “fight or flight.”

5. ‘Fight or Flight’

 

Blood flow is directed away from the vital organs to the limbs, which are used for fighting and running. The immune system becomes of lesser importance. If you picture the responses we once needed for running from a lion, for example, the legs would have been infinitely more important in that immediate situation than the immune system. Thus, the body favors the legs and neglects the immune system.

So, when a person perceives a negative environment, the body tends to neglect the immune system and vital organs. Stress also makes us less intelligent, less clear-minded. The part of the brain related to reflexes is given more prominence in fight or flight mode than the part related to memory and other mental functions.

When a person perceives a loving environment, the body activates growth genes and nurtures the body.

For example, in Eastern European orphanages where children are given lots of nutrients, but little love these types of institutions have found to have stunted development in terms of height, learning, and other areas. There is also a high incidence of autism. Autism in this case is a symptom of protection genes being activated, like walls being put up.

Beliefs act as a filter between the real environment and your biology. Thus, people have the power to change their biology. It is important to keep a clear perception because otherwise you  won’t develop the right things biologically for the real environment around you.

You are not victims of genes. What beliefs are you choosing for your genes to be expressed?


Please note: The above  is a simplistic summary of “The Biology of Belief”. For more details, you may visit www.brucelipton.com


The Human Genome – Perception Directly Controls Gene Activity


DNA Bases Alignment


When scientific discovery  undermines a “core belief” that is part of the fabric of the entire society, the course of human history is radically altered. Consider how the course of human history changed when the belief that the world was flat was challenged by the circumnavigation of the globe?

In 1893, the chairman of physics at Harvard University warned students that there was no more need for additional PhD’s in the field of physics. He boasted that science had established the fact that the universe was a matter machine, comprised of physical, indivisible atoms that fully obeyed the laws of Newtonian Mechanics. Since all the descriptive laws of physics were “known”, the future of physics would be relegated to making finer and finer measurements.

Two years later, the Newtonian concept of a matter-only universe was toppled by the discovery of subatomic particles, X-rays and radioactivity.

Within ten years, physicists had to discard their fundamental belief in a material universe for it was recognized that the universe was actually made of energy whose mechanics obeyed the laws of Quantum Physics. That discovery  profoundly altered the course of civilization, taking us from steam engines to rocket ships, from telegraphs to computers.


The Human Genome Project


In all the hoopla over the sequencing of the human genetic code and being caught up in the brilliant technological feat, we have not focused on the actual “meaning” of the results.

One of the most important and fundamental core beliefs in conventional biology is that the traits and character of organisms are “controlled” by their genes. This belief is couched in the concept of genetic determinacy, the conventional dogma provided in virtually every textbook and biology course. How do genes manage to “control” life? It is based upon the concept that genes are self-emergent, meaning that they are able to “turn themselves on and off.” Self-actualizing genes would provide for computer-like programs that would control organismal structure and function. Accordingly, our belief in genetic determinacy implies that “complexity” (evolutionary stature) of an organism would be proportional to the number of genes it possessed.

Before the Human genome Project was underway, scientists had estimated that human complexity would necessitate a genome in excess of 100,000 genes. Genes are primarily blueprints encoding the chemical structure of proteins, the molecular “parts” that comprise the cell. It was thought that there was one gene to code for each of the 70,000 to 90,000 proteins that make up our bodies.

In addition to protein-coding genes, the cell contains genes that determine the character of an organism by “controlling” the activity of other genes. Genes that “program” the expression of other genes are called regulatory genes. Regulatory genes encode information about complex physical patterns that provide for specific anatomies, which represent the structures that characterize each cell type (muscle versus bone) or organism (a chimp from a human). In addition, a subset of regulatory genes is associated with the “control” of specific behavioral patterns. Regulatory genes orchestrate the activity of a large numbers genes whose actions collectively contribute to the expression of such traits as awareness, emotion, and intelligence. It was estimated that there were more than 30,000 regulatory genes in the human genome.

In considering the minimal number of genes needed to make a human: we would start with a base number of over 70,000 genes, one for each of the over 70,000 proteins found in a human. Then we include the number of regulatory genes needed to provide for the complexity of patterns expressed in our anatomy, physiology and behavior. Lets round-off the number of human genes to a total of an even 100,000, by including a minimalist number of 30,000 regulatory genes.

The results of the Genome project reveal that there are only about 34,000 genes in the human genome. Two thirds of the anticipated genes do not exist! How can we account for the complexity of a genetically-controlled human when there are not even enough genes to code just for the proteins?

More humiliating to the dogma of our belief in genetic determinacy is the fact that there is not much difference in the total number of genes found in humans and those found in primitive organisms populating the planet. Recently, biologists completed mapping the genomes of two of the most studied animal models in genetic research, the fruit fly and a microscopic roundworm (Caenorhabditis elegans).

The primitive Caenorhabditis worm serves as a perfect model to study the role of genes in development and behavior. This rapidly growing and reproducing primitive organism has a precisely patterned body comprised of exactly 969 cells, a simple brain of about 302 ordered cells, it expresses a unique repertoire of behaviors, and most importantly, it is amenable to genetic experimentation. The Caenorhabditis genome is comprised of over 18,000 genes. The 50+ trillion-celled human body has a genome with only 15,000 more genes than the lowly, spineless, microscopic roundworm.

Obviously, the complexity of organisms is not reflected in the complexity of its genes. For example the fruit fly genome was recently defined to consist of 13,000 genes. The eye of the fruit fly is comprised of more cells than are found in the entire Caenorhabditis worm. Profoundly more complex in structure and behavior than the microscopic roundworm, the fruit fly has 5000 fewer genes!!

The Human Genome Project was a global effort dedicated to deciphering the human genetic code. It was thought the completed human blueprint would provide science with all the necessary information to “cure” all of mankind’s ills. It was further assumed that an awareness of the human genetic code mechanism would enable scientists to create a Mozart or another Einstein.

The “failure” of the genome results to conform to our expectations reveals that our expectations of how biology “works” are clearly based upon incorrect assumptions or information. Our “belief” in the concept of genetic determinism is fundamentally…flawed! We can not truly attribute the character of our lives to be the consequence of genetic “programming.” The genome results force us to reconsider the question: “From whence do we acquire our biological complexity?”

In a commentary on the surprising results of the Human Genome study, David Baltimore, one of the world’s most prominent geneticists and Nobel prize winner, addressed this issue of complexity:

“But unless the human genome contains a lot of genes that are opaque to our computers, it is clear that we do not gain our undoubted complexity over worms and plants by using more genes. Understanding what does give us our complexity-our enormous behavioral repertoire, ability to produce conscious action, remarkable physical coordination, precisely tuned alterations in response to external variations of the environment, learning, memory…need I go on?-remains a challenge for the future.” (Nature 409:816, 2001)

Scientists have continuously touted that our biological fates are written in our genes. Now, in the face of that belief, the Universe humors us with a cosmic joke: The “control” of life is not in the genes. Of course the most interesting consequence of the project’s results is that we must now face that “challenge for the future” Baltimore alluded to. What does “control” our biology, if not the genes?

Over the last number of years, science and the press’ emphasis on the “power” of genes has overshadowed the brilliant work of many biologists that reveal a radically different understanding concerning organismal expression. Emerging at the cutting edge of cell science is the recognition that the environment, and more specifically, our perception of the environment, directly controls our behavior and gene activity.

The molecular mechanisms by which animals, from single cells to humans, respond to environmental stimuli and activate appropriate physiological and behavioral responses have recently been identified. Cells utilize these mechanisms in order to dynamically “adapt” their structure and function to accommodate ever-changing environmental demands. The process of adaptation is mediated by the cell membrane (the skin of the cell), which serves as the equivalent of the cell’s “brain.” Cell membranes recognize environmental “signals” through the activity of receptor proteins. Receptors recognize both physical (e.g., chemicals, ions) and energetic (e.g., electromagnetic, scalar forces) signals.

Environmental signals “activate” receptor proteins causing them to bind with complementary effector proteins. Effector proteins are “switches” that control the cell’s behavior. Receptor-effector proteins provide the cell with awareness through physical sensation. By strict definition, these membrane protein complexes represent molecular units of perception. These membrane perception molecules also control gene transcription (the turning on and off of gene programs) and have recently been linked to adaptive mutations (genetic alterations that rewrite the  DNA code in response to stress).

The cell membrane is a structural and functional homologue (equivalent) of a computer chip, while the nucleus represents a read-write hard disk loaded with genetic programs. Organismal evolution, resulting from increasing the number of membrane perception units, would be modeled using fractal geometry. Reiterated fractal patterns enable a cross-referencing of structure and function among three levels of biological organization: the cell, the multicellular organism and societal evolution. Through fractal mathematics we are provided with valuable insight into the past and future of evolution.

The environment, through the act of perception, controls behavior, gene activity and even the rewriting of the genetic code. Cells “learn” (evolve) by creating new perception proteins in response to novel environmental experiences. “Learned” perceptions, especially those derived from indirect experiences (e.g., parental, peer and academic education), may be based upon incorrect information or faulty interpretations. Since they may or may not be “true,” perceptions are in reality-beliefs!

Our new scientific knowledge is returning to an ancient awareness of the power of belief. Beliefs are indeed powerful… whether they are true or false. While we have always heard of the “power of positive thinking,” the problem is negative thinking is just as powerful, though in the “opposite” direction. Problems encountered in health and in the unfolding of our lives are generally connected to the “misperceptions” acquired in our learning experiences. The wonderful part of the story is that perceptions can be relearned! We can reshape our lives in retraining our consciousness. This is a reflection of the ageless wisdom that has been passed down to us and is now being recognized in cellular biology.

An understanding of the newly described cell-control mechanisms will cause as profound a shift in biological belief as the quantum revolution caused in physics. The strength of the emerging new biological model is that it unifies the basic philosophies of conventional medicine, complementary medicine and spiritual healing.


About the author:


Bruce LiptonBruce H. Lipton, PhD is an internationally recognized leader in bridging science and spirit. Stem cell biologist, bestselling author of The Biology of Belief and recipient of the 2009 Goi Peace Award, he has been a guest speaker on hundreds of TV and radio shows, as well as keynote presenter for national and international conferences.

Dr. Lipton has taken his award-winning medical school lectures to the public and is currently a sought after keynote speaker and workshop presenter. He lectures to conventional and complementary medical professionals and lay audiences about leading-edge science and how it dovetails with mind-body medicine and spiritual principles.

Dr. Lipton’s books include:

  • 2005 The Biology of Belief – Unleashing the Power of Consciousness, Matter & Miracles
  • 2006 The Wisdom of Your Cells – How Your Beliefs Control Your Biology
  • 2009 Spontaneous Evolution: Our Positive Future and a Way to Get There from Here
  • 2013 The Honeymoon Effect: The Science of Creating Heaven on Earth
Bruce Lipton’s  catalogue of books are available here.





For more information about DNA see http://nexusilluminati.blogspot.com/search/label/dna
- Scroll down through ‘Older Posts’ at the end of each section


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