Showing posts with label Synthetic_Biology. Show all posts
Showing posts with label Synthetic_Biology. Show all posts

23 August 2016

Scientists "rewiring" bacteria to feed the world

The Blog


In their task to unlock the infinite resources inherent in nature, scientists have achieved "the most far-reaching rewiring yet of a bacterial genome".


This may literally be a tiny task (microscopic, in fact), but the implications of it are enormous. By being able to re-engineer life with great skill and precision, scientists are on the path to eliminating scarcity and possibly reconstructing the world in a more humane and useful form.

According to Nature on 18 August, the breakthrough occurred with E. coli, as "scientists replaced 7 of its 64 genetic codons — sequences that code for amino acids — with others that produce the same components.".

Nature: ‘Radically rewritten’ bacterial genome unveiled

One synthetic biologist commented the breakthrough demonstrates "malleability of the genetic code and how entirely new types of biological functions and properties can be extracted from organisms through genomes that have been recoded". Nature also reported, "They can also be made entirely dependent on synthetic amino acids in their diets, to allay the fear that recoded bacteria could escape from a lab and wreak havoc in the wild."

Synthetic biology is one area in which science could produce a vast alternative supply of renewable energy. The world's leading synthetic biologist J. Craig Venter wrote in Life at the Speed of Light (2013), "the knowledge gained in doing this work would one day undoubtedly lead to a positive outcome for society".

Designer bacteria will be quickly "tailored to deal with pollution or to absorb excess carbon dioxide or even meet future fuel needs", Venter wrote. Overcoming the state of immense poverty affecting much of the world would therefore be dependent on sharing such gifts of science.


The clubof.info Blog


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26 April 2016

"Liberation technologies" to come?

The Blog


The following video is narrated by Harry J. Bentham, author of Catalyst: A Techno-Liberation Thesis (2013), using the introduction from that book as a taster of the audio version of the book in production.


As the book opens, "The gravest danger to hegemony and oppression lies at the transformational crossroads of liberation and technology".

In the book, the version of futurism used by the author to influence readers at the Beliefnet website's L'Ordre blog is presented in detail. Watch the clip below to get an idea of what it's all about.



Writing on the planned audio book release at Beliefnet, the author explained the grand vision for advanced technologies hidden in that short book:
I think new industrial refining and manufacturing technologies will emerge with the intent to keep certain (western) countries in economic favor. But these are going to become small enough (synthetic organisms, micromanufacturing devices, additive manufacturing machines, nano-factories) to be shared quickly with the world’s poorer countries, allowing the global poor to develop faster, achieve their aspirations and settle their score with the rich and exploitative countries.
This "techno-political" standpoint is also the main influence on The clubof.info Blog, which focuses on global injustices and the power of technology to change power relations for the better.


The clubof.info Blog

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5 April 2016

Prospects for Human Survival (review)

Harry J. Bentham at the Blog


As a mathematician, Willard Wells provides much of his thought in probabilities as in his other book, Apocalypse When?, in Prospects for Human Survival. As scientifically valid as it may seem, there is reason to be skeptical of such an approach. It is hard to account for the proliferation of unknowns using probabilities based on current data.


No study of existing firepower in 1943 or 1944 would have told you that bombs would be able to blow up entire cities in a single blast by 1945. The humanity-killing forces of the future will be equally sudden and unexpected. They may suddenly emerge and destroy us all tomorrow, or they may never emerge. They could be developed in secrecy, as the Manhattan Project was, making any predictions based on what we do know unhelpful. Often, such things impose themselves on civilization without any omens, invented and used recklessly before they are even known to be dangerous even to the wisest and most skilled thinkers.

In the domain of atomically precise manufacturing (APM) or nanotechnology (nanotech) as it is commonly called, Wells correctly predicts new means of assassination (p. 67-69) by programming tiny robots to kill with poison. Remarkably, he then fails to acknowledge that governments would be the biggest abusers of such technology, instead arguing that giving even more authoritarian powers and invasive surveillance technologies to states (p. 91-92) is the only solution to such threats.

Consider the behavior of governments in the modern day. Although it is not law, they seem bound by an instruction to seek out, possess and use to maximum lethality and invasiveness any technology they find. They did this with the internet. No-one who made the internet or smart phones possible saw them as a way of having a bug or a camera installed in everyone's home, a way of quickly judging who to detain or assassinate to protect a regime. But governments still managed to make this nightmare possible.

The "grey goo" ecophagy (ecosphere-eating) nanotech disaster scenario presented by Robert A. Freitas is given some attention by Wells (p. 69). This is the scenario in which microscopic robots are capable of reproducing independently using whatever matter they encounter, and proceed to "eat" the world - or more specifically the biosphere, bringing an end to life as we know it on Earth. He argues, correctly, that this danger exists (albeit extremely unlikely) but that it cannot be averted by any ban on nanotech. Such a ban might only encourage more dangerous activities to be undertaken covertly, without sufficient review or intervention by the scientific community.

Wells asserts that there must be regulation of emerging nanotechnology to prevent or detect early the formation of such a disaster. This position in itself can be rejected for the same reasons as the hypothetical ban. Heavy regulation would only have the same result of pushing risk-prone entrepreneurs to working covertly, thus the danger of "irresponsible development" proliferates exactly as it would under the nose of any government ban. More probably, having maximum freedom coupled with transparency in the development of nanotech would be the safest route, as this way everything may be seen and the "good guys" can create defenses in time, as Wells encourages.

The best defense against runaway nanotechnology may be the fact that there is no rationale for someone in search of profit to produce self-replicating robots, as Wells himself points out:

"No sane robot manufacturer working for profit would make a self-replicant on their own because their market vanishes the moment their customers start giving away surplus units (just as people give away surplus kittens)." (p. 70)

So there is no reason for corporations to make the "grey goo" creating robots, at least when we look at it as a problem of self-replicating machines. It is perhaps possible, though, that some tiny refining or mining robots could uncontrollably malfunction and begin mining or cutting up everything they come into contact with, in a belief they are collecting minerals. If they had been deployed on a large scale by a mining company to process tons of ore, they might not need the ability to replicate in order to cause massive destruction in the surrounding environment.

Wells repeatedly imagines "terrorists" being the ultimate agents behind any possible technological threat emerging in the future, but often this seems close-minded or ignores far more obvious culprits. He writes, "Terrorists want self-replicators; legitimate users want factories making factories". This is based on the assumption that "legitimate" means commercially-minded, and anything else must be irrational terrorism. However, what of state agencies? The most powerful scientific end engineering corps today, those making the greatest strides in technology and paving the way for the corporations, are not profit-hungry corporations but state agencies. Self-replicators would almost certainly be needed in space colonization, so NASA (not ISIS) are the most likely ones to place an order for self-replicating robots.

Genetic engineering and its more advanced cousin, synthetic biology, could present similar threats of consumption or infestation of the environment. Wells offers a fascinating hypothetical scenario in which some type of manmade infestation (whether biological or technological) causes the destruction of vital marine ecosystems and destroys more than half the world's oxygen supply (p. 74-78). Wells postulates "conspirators" might seek to do this intentionally. It is such a specific event that an accident seems unlikely to cause it. However, this belief in exceedingly nasty and yet highly capable inventors ought to be rejected. It is not even clear how any terrorist would benefit from doing this. No extremist ideology exists, or has existed, that would want to destroy the world's oceans and make everyone sluggish through lack of oxygen, so it seems strange to theorize about this scenario at all.

Much like the above unlikely scenario is the "mad scientist" germ attack hypothesis, which is hardly valid from any historical perspective. The idea holds that a "mad scientist" might plot to destroy humanity by engineering a virus (p. 79). However, there is no real-life example of an evil scientist of the kind found in movies and comic books, so it does not make sense to ever expect there to be any in the future.

Within Prospects for Human Survival, little attention is given to biological threats. Biological agents have been intentionally designed to destroy entire continents' food supplies, and could be a very real threat to human survival if ever used, even coming back to wipe out the side that deployed the weapon in the first place. J. Craig Venter's discovery of how to artificially synthesize entire new genomes and invent and patent new living organisms is possibly the most consequential discovery of the century, and is not mentioned at all.

Wells' attitude towards surviving nuclear war and disaster seems ill considered. The talk of preserving humanity's seed using underground survival bunkers stocked with plenty of women for breeding purposes is something right out of Dr Strangelove. Wells argues that it doesn't matter if the wealthiest one percent (likely the ones who started the war) are the only ones who get to escape into these bunkers.

The political rationale for expenditures to save humanity's genetic future in the first place is not shared by Wells. Who told him anyone wants to save humanity? Most people actually have no interest in it, and would only be concerned by the more unpleasant scenarios in which they would personally undergo pain (e.g. shredded by a swarm of malfunctioning nanorobots). Couples voluntarily exterminate their genetic future all the time using contraceptives, and for worry over finance and the world's overpopulation. Wells (and for that matter Steven Hawking, who also comments that humanity must avoid extinction) have offered no argument for why human genes are special enough to be worth saving. For most people, whether humanity endures as a species is just irrelevant, and Prospects for Human Survival fails to appeal against their philosophy.

Although I concur with Wells on a number of issues about science, I disagree with many of the book's recommendations and fail to see the rationale behind others. Although there is no good reason to fear the development of artificial intelligence at this stage, Wells' kind of authoritarian artificial intelligence appointed to watch over and farm humanity for its safety is not enticing and seems dystopian (p. 91-92).

Futurism should not be about making excuses for concentrated authority, controlled scarcity, and hubs of control and supervision. We should be making excuses for total equality, total abundance, total freedom, and humanity's ultimate achievement of technological adulthood. If humanity is "irresponsible", it should not be treated like a group of children, but raised to adulthood, even at grave risk.


Harry J. Bentham

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22 March 2016

Synthetic biology: here be dragons?

The Blog


Talking of the possibilities of synthetic biology (synbio), one blog post at Beliefnet speculates that dragons could exist someday, created and bred by scientists.


While many fans of Jurassic Park may be disappointed to know that dinosaur DNA is lost forever, weathered away by time, fans of high fantasy need not be so disappointed. The mythical serpents known as dragons are make-believe animals. Ironically, this would give geneticists and synthetic biologists free reign to write their genetic material almost from scratch, where they would simply lack enough information to create a dinosaur.

As the Beliefnet blog notes, "Dragons were invented by people in the first place. Inventing them again, in the great tapestry of their very DNA, is just an extension of what fantasy writers have already been doing for years and George R. R. Martin tries to accomplish using ink these days."

Of course, while it makes its point clear, this post is only semi-serious. It acknowledges that the the real benefit of synthetic biology will rest in the creation of renewable fuel sources and new unlimited varieties of oil, rather than these mythical serpents so cherished by fantasy readers.


The clubof.info Blog

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19 February 2016

Enernet would bring "liberation"

The Blog


While continuing to bet on synthetic biology as the eventual solution to energy inequality and crises, a Beliefnet post nevertheless embraces another vision called enernet.


Enernet is the idea of providing energy to everyone for free via a type of global power supply network constructed similarly to the internet. It would adhere to a similar philosophy to the internet too, making it almost a human right that everyone can be connected to this network of sharing and mutual survival.

The post is a partial review of a Lifeboat Foundation essay series. It suspects energy firms and powerful states would prefer to keep control of global energy supplies in the hands of a small few government and industrial elites, somehow, and the enernet might be no exception to this. Although such injustice would certainly be the result of some futuristic schemes to build a small number of giant thermonuclear fusion reactors like the ITER (International Thermonuclear Experimental Reactor) to replace fossil fuel supplies, the post sees the enernet as something different.

To cut a long story short, because the enernet would be connected to widely distributed and decentralized sources of fuel, it should not result in political or strategic imbalances, inequalities and lopsided international relations of the kind currently seen. The post reports that the enernet sounds like a fair and balanced solution to the energy needs of disparate individuals, communities and isolated states across the world. The prediction given is that, if feasible, it would bring a form of technological "liberation" to the world's impoverished and voiceless populations similar to the internet.

A complete theory of techno-liberation to follow up from the development of the internet is explained in Catalyst, the main source of inspiration for this blog.


The clubof.info Blog

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25 December 2015

Fusion power vs future synbio-power?

The Blog


Fusion power plants would likely mean sole power plants feeding entire continents or countries with electricity, giving incredible political leverage to the government or company with the off-switch.


Critics of thermonuclear fusion power have therefore said alternative energy must not just be renewable. It must also be decentralized and easily shared.

At Beliefnet, a post of the L'Ordre blog argues that synthetic biology is the key to developing easily shared and decentralized power sources. They will be circulated to even the poorest communities.

Some attention has been given to developing sustainable fuels using new biologically-engineered bacteria that excrete types of petroleum or diesel (see the BBC report here). Although it has not been covered much in the media, such developments have been frequently successful. However, the microbes currently need such specific feedstocks (namely sugar, which has its own problems of labor, land and cost that make it hard to sustain forever) to create difficulties in supplying the microbes. They may also not be used on an industrial scale due to fears of them escaping and contaminating the environment or being stolen for commercial gain, which probably limits their use to highly secure scientific premises.

In the past, the Beliefnet blog expressed a disbelief in the explanations above, pointing instead to the preeminence of corporate greed over global human welfare as the only reason for the failure to make the microbes available more quickly. This theory was in turn challenged by a post at Afflictor.com, which pointed instead to the idea that synthetic biologists are a marginal minority of scientists, which means a lack of human resources to develop that industry.

J. Craig Venter, the scientist-entrepreneur father of synthetic biology, has since become less interested in developing synthetic biology-based fuel and chemical industries than in medicine and longevity, although the idea of inexhaustible fuels is occasionally used in his writing and lectures.

The new Beliefnet post declared using synthetic biology to make a new fuel industry as highly promising but also potentially dangerous, stating, "It could also literally set the world on fire, if handled incorrectly, so the question of how to handle it and at the same time ensure fairness and equal development in the use of synthetic creatures as fuel sources needs to be addressed more deeply."


The clubof.info Blog

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9 October 2015

Will synbio save us all from scarcity?

The Blog


Synbio has been the focus of an op-ed at h+ Magazine, where it is praised as potentially carrying the salvation of humankind.


Synbio is a shorthand term for synthetic biology, which refers to a field of biology involved in sequencing synthetic genomes to create new species from scratch. It was largely developed by a team under J. Craig Venter, who also made the achievements of the Human Genome Project.

From the Harry J. Bentham-authored article:
Like our bodies, our planet is no longer a sufficient vehicle for human dreams and aspirations. The biology of the planet is too inefficient to support the current growth of the human population. We face the prospect of eventually perishing as a species if we cannot repair our species’ oft-omitted disagreements with nature over issues of sustainability, congenital illness and our refusal to submit to the cruelties of natural selection from which we evolved. 
Once we recognize that the current species are flawed, we will see that only by designing and introducing new species can suffering, poverty and the depletion of natural resources be stopped. Once we look at this option, we find already a perfect and ultimately moral solution to the threats of climate change, disease, overpopulation and the terrible scarcity giving rise to endless injustice and retaliatory terrorism. 
The perfect solution could only be brought to the world by a heroic worker in the fields of biotech and synthetic biology. Indeed, this revolution may already be possible today, but fear is sadly holding back the one who could make it happen.
The article blamed a culture driven by profit at the expense of human needs, for preventing solutions to scarcity, disease, suffering and resource-driven wars. In the conclusion, the piece warned that if scientists do not break free from the immense corporate and industrial pressures not to share their inventions more quickly with the global poor, "we will talk about direct action to break free the scientific gifts they refused to share".


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29 September 2015

Emerging tech has promise of liberation

The Blog


Nothing could improve the lot of the world’s poorest people more than uncurbed advances in certain emerging technologies – the only things that could offer serious remunerations for the people struggling with scarcity at the feet of Western bully-states and corporations. Products from synthetic biology and other emerging technologies, uncontained and unsupervised, should be circulated as the greatest hope for people in the world’s poorest countries. In the future, this might mean democratically circulating biotech machinery for farmers to genetically modify their own crops, and circulating synthetic life-forms that can enhance industry in the poorest countries and make economic participation better than a zero sum game for the world’s poor. Nothing could be better for people in poor countries in the long-term than explosions in inherently democratic emerging technologies – developments that should be counted among the few things that can seriously overcome the dependency of poor countries on rich countries.

It is completely misguided to predict emerging technologies to be jewels in the crown of the Western world, because these technologies more than anything else are destined to finally break the chains of the world’s poor and create the closest possible conditions to equality. These technologies have more potential than anything else to eradicate the division of labor that keeps the poor in servitude to powers that hold an undeserved level of monopoly over advanced technologies. The uncertainty surrounding today’s defining technological developments represents a threat only to oligopoly. Abandoning all prudence to place a secure confidence in the promise of technology-powered liberation will be the key to tackling the unfair conditions and privileges ever sustaining global inequality.

Excerpt from Bentham, H. J., Catalyst: A Techno-Liberation Thesis (2013)

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15 September 2015

Science and technology can end poverty

The Blog


The following quotes and major points on the constraints preventing scientists and engineers from making poverty history come from the L'Ordre blog, and were published on 12th September 2015. Of particular interest are technologies that could ease industrialization in poorer countries if directly donated to them, such as artificial intelligence, additive manufacturing and synthetic biology.

rather than use humanity’s one redeeming feature – ingenuity – as our deliverance, we have wasted the world’s resources trying to stunt the growth of technology in countries such as Iran, allowing ourselves to be driven by a will to self-destruction and fear. This usurps the natural human yearning to create and evolve, in the spirit of our earliest ancestors
  • Billionaire entrepreneurs profess to help humanity but have done nothing remarkable to actually enrich, strengthen and boost the survival of poor peoples and states in the Southern Hemisphere. These people are more often placed under economic sanctions for their progress, rather than helped by richer countries
  • Most people who claim to favor the world's poor seem more interested in creating more refugee camps and inviting billions of people to live in Europe and North America. This more closely resembles the way Native Americans were treated during genocide rather than the heroic desire to arm the world's oppressed people against the world's rich and heavily armed powers
  • "Where science and technology cross with anti-colonialism, liberation movements and the desire for a mass uprising against injustice and inequality, there is the greatest source of hope for humanity."
  • Synthetic biology can create self-replicating chemical products including fuels and fertilizers to any extent, and such products don't need to be sold or owned by anyone but could just be given away to radically improve life and development in poorer countries
  • "Self-gratifying charity" of NGOs and philanthropists claiming to help the world's poor is hollow. They should be arming the world's poor to resist oppression and fraud with the latest technologies through direct action
  • Everyone takes risks with technology, so we have no right to resist the risk involved in giving out all the world's most potent technology to the world's poorest people
  • Science and technology need to be depoliticized and national security doctrines should not be used to stop the spread of new technologies, which should be applied to help the poor immediately upon being created
  • The full extent of this argument can be found in the Catalyst techno-liberation thesis
The post concluded that synthetic biology (the artificial genetic sequencing and creation of new living things) is the most important stride that could help the world's poor at minimum cost to the donor, due to its self-replicating nature and simplicity. The blog proposed that it will become "the key to ending all the world’s resource shortages, environmental problems and wars".


The Blog


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18 November 2014

An Introduction to Techno-Liberation

. @hjbentham. #catalyst. #futurism. #transhumanism. #liberation.


The following as an extract from my 2013 pamphlet, Catalyst: A Techno-Liberation Thesis, available in print and Kindle at Amazon.

“The gravest danger to freedom lies at the perilous crossroads of radicalism and technology”
George W. Bush
The gravest danger to hegemony and oppression lies at the transformational crossroads of liberation and technology. An emerging technology, when allowed to cause an unguided explosion of benefits, has the greatest potential of all things to emancipate oppressed and deprived groups in the world and defeat injustices.

“BioLuddites”, as they are interrogated by James Hughes in his 2004 book Citizen Cyborg, believe the vital emerging technologies of the near future will only increase inequality and deprivation in the world. This thesis makes a raw argument for the exact opposite outcome, by greeting a maximally free and unregulated explosion of radical emerging technologies in the world as the only solution to world inequality. By promoting a long-term historical understanding of the democratization of technology, current global social trends and the democratic possibilities of several emerging technologies, the liberating potential of technology and the opportunity to resist oppression with technology become undeniable. The case argued here is that some of the various technology explosions, already in their formative state now, can be predicted to reduce inequality between states and sections of society rather than worsening it.

The prediction argued in this thesis, namely that a few great world-transforming technologies in coming decades will potentially liberate and empower people who are disadvantaged, is inspired by the democratic success of the internet, which outgrew the ambitions of its creators. The internet is now the main front for giving voices to the voiceless, and offers new subtle means of empowerment and resistance to the weak. It is time to recognize how technology is starting to play an undeniable role in liberating and empowering people and is not simply a transitory weapon that can be borrowed by the liberators. It may be time for all breeds of progressives to take a more enthusiastic stance on emerging technologies set to shake society in fundamental ways. Let us at least add to the progressive narrative a consideration of how various other imminent tech explosions, unguided, could be massively liberating like the internet.

Emerging technologies are reaching the point at which their potential can radically exceed the expectations of their creators and owners, and no longer serve elite interests even if they are created to benefit elites. Key technologies, even if they are hiding with little publicity as yet, could be set to become the prime instruments of liberation in coming decades. If so, then adopting a view that favors the relevant technological developments and rejects constraints and ethical controls over them will benefit progressive interests tremendously. This book is not advocating a techno-centric worldview or techno-utopia, nor is it part of an existing program or utopian sect. It merely posits “liberation technologies” as big arena of impending global liberation, especially now that the internet has already shown its capacity to empower people. The internet is not a blip in technology that just happened to accidentally empower people. It is part of a real trend of technology progressing fast enough to outgrow its creators’ initial goals and then work to spontaneously liberate the common man.

This book contains a thesis in four chapters, the first two looking at “is” questions about techno-liberation and the second two looking at “ought” questions. The thesis is structured to add increased detail and academic backup to support arguments I have already presented in articles aimed at a variety of progressive and futurist readers. In the first chapter of the argument, “Equal Technology”, I assert that the overwhelming consequence of the present emerging technologies shall be the empowerment, not disempowerment, of the common man and a tremendous volume of the impoverished people residing in disadvantaged countries. No matter how elitist and monopolistic the creators of an easily circulated technology are, the ease with which it can be circulated will result in it becoming widely available and empowering a vast majority of people, decisively advantaging the poor and deprived sections of the world. In such a situation, ethicists and others who wish to constrain this chaotic empowerment for whatever reasons could risk being dismissed as ideologues for oligopoly and the further deprivation of mankind.

In the second chapter of the argument, I look at what I call “open-borders technology”, that is, existing technologies that delegitimize the current idea of the state and allow people to reach out and form values that transcend the state. This is the present greatest trend of techno-liberation that is visible in the world today, and which will and should be imitated in other leaps of techno-liberation. While I do not postulate a new form of global governance emerging from media advances, I do accept that the political geography for alternate forms of governance to be tested is emerging.

Third, looking at global social trends and impending technological opportunities that will intersect those trends, I advise some emerging targets for technology-powered liberation. The most significant of these, and unavoidable in the near future, is something I call “hard-leaks”; leaks not of information as a result of the information explosion gained by the internet, but leaks of technology as a result of miniaturization and moves towards making technology user-friendly. This will include the leaking of formerly guarded production processes and equipment to disadvantaged groups and states in the world, eliminating the root cause of the worsening global wealth disparity.

The fourth chapter of the argument focuses on the justification for taking any involved risks by endorsing trends of techno-liberation. Massive risks are certainly involved in techno-liberation, but none are greater than the risk to the advantaged and oppressive parties in the world who will seek to contain and control all the technology for themselves. Massive corporations and bully-states, prone to wage war on weaker parties, are the main ones to be seriously threatened by trends of techno-liberation. This is good news for anyone disadvantaged or impoverished in the world. A level playing field between the rich and poor parties in the world makes global equality more possible. Further, the risk is not “ours” to take: it should be up to the most disadvantaged people in the world to decide for themselves if they are ready to take the risks of techno-liberation. “We”, the people engorged on technological advantages, have no paternal role to deny them anything for any reason.

In short, decisive unchecked explosions in emerging technologies should not be feared by people who favor the emancipation and empowerment of weak groups and nations in the present global regime. In fact, such explosions should automatically be embraced for being the only media with which we can empower and liberate the weak in an age increasingly dominated by the unpredictable consequences of technology. Unpredictability and chaos upset only the incumbent powers and regimes in the world, and people who have a stake in them surviving. Further, unpredictability and chaos work in favor of disempowered and oppressed groups, and this makes any unpredicted outcomes spelled by unrestrained advancements tolerable.

By Harry J. Bentham – More articles by Harry J. Bentham

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30 September 2014

The Catalyst Thesis, One Year On

. @HJBentham. @IEET. @HPlusMagazine. #transhumanism. #technology. #anarchy.


It has been over one year since Catalyst, the thesis of technology-powered socioeconomic liberation from Harry J. Bentham, was published on July 28, 2013. Downloaded hundreds of times by readers over this period, it is still waiting for its first customer reviews at Amazon. In an effort to lobby these belated reviews from downloaders, we recommend a quick download at Amazon.

If you've read Catalyst already, write a customer review for Amazon to share your thoughts

From the description at Amazon:
Catalyst is radical Lifeboat Foundation futurist Harry J. Bentham's 2013 political pamphlet, forecasting an unprecedented era of technology-powered socioeconomic liberation. According to Bentham, "the gravest danger to hegemony and oppression lies at the transformational crossroads of liberation and technology."
The thesis takes some of the most progressive ideas from sociology, and combines them with transhumanism to paint a vibrant picture of a world being destroyed and rebuilt in a new, user-friendly form. Such a revolution has greater potential than anything else to disrupt the structures that have held global inequality in place for centuries, thus emancipating, enlightening and arming the billions of people who have been kept oppressed, marginalized and eternally pressured into arduous labor in the world's poorest countries.

Since 2013, the ideas expounded in this book have been at the core of a lot of online publishing projects, including the creation of ClubOfINFO as a content website in 2014. ClubOfINFO is essentially Catalyst's unofficial website, dedicated to bringing this thesis to as many online readers as possible.

If you're a UK customer, write a review for Amazon UK

What is unique about Catalyst is its desire to expand the spectrum of the battle being waged between monopolistic entities like the US government, massive corporations and repressive regimes, and brave people-powered forces like WikiLeaks and Anonymous. This spectrum will come to include the real world, as various new and transhuman technologies like 3-d printers and synthetic biology further transfer power away from corporations and states and into the hands of individuals.


Catalyst makes a bold prediction about the enlargement of the technological rebellion shaking the world today: in the future, insiders will no longer just be leaking information to the public, but smuggling manufacturing and security-related technologies of a controversial nature to the world's most marginal and oppressed peoples. These Promethean deeds will start the true battle, enlarging the spectrum of personal liberation far beyond the internet to places it had never reached before.

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29 August 2014

Open Source SynBio?

.@HJBentham. @HPlusMagazine. @OpenSourceWay. #synbio.


If the controversy over genetically modified organisms (GMOs) tells us something indisputable, it is this: GMO food products from corporations like Monsanto are suspected to endanger health. On the other hand, an individual’s right to genetically modify and even synthesize entire organisms as part of his dietary or medical regimen could someday be a human right.

The suspicion that agri-giant companies do harm by designing crops is legitimate, even if evidence of harmful GMOs is scant to absent. Based on their own priorities and actions, we should have no doubt that self-interested corporations disregard the rights and wellbeing of local producers and consumers. This makes agri-giants producing GMOs harmful and untrustworthy, regardless of whether individual GMO products are actually harmful.

Corporate interference in government of the sort opposed by the Occupy Movement is also connected with the GMO controversy, as the US government is accused of going to great lengths to protect “stakeholders” like Monsanto via the law. This makes the GMO controversy more of a business and political issue rather than a scientific one, as I argued in an essay published at the Institute for Ethics and Emerging Technologies (IEET). Attacks on science and scientists themselves over the GMO controversy are not justified, as the problem lies solely with a tiny handful of businessmen and corrupt politicians.

An emerging area that threatens to become as controversial as GMOs, if the American corporate stranglehold on innovation is allowed to shape its future, is synthetic biology. In his 2014 book, Life at the Speed of Light: From the Double Helix to the Dawn of Digital Life, top synthetic biologist J. Craig Venter offers powerful words supporting a future shaped by ubiquitous synthetic biology in our lives:
“I can imagine designing simple animal forms that provide novel sources of nutrients and pharmaceuticals, customizing human stem cells to regenerate a damaged, old, or sick body. There will also be new ways to enhance the human body as well, such as boosting intelligence, adapting it to new environments such as radiation levels encountered in space, rejuvenating worn-out muscles, and so on”
In his own words, Venter’s vision is no less than “a new phase of evolution” for humanity. It offers what Venter calls the “real prize”: a family of designer bacteria “tailored to deal with pollution or to absorb excess carbon dioxide or even meet future fuel needs”. Greater than this, the existing tools of synthetic biology are transhumanist in nature because they create limitless means for humans to enhance themselves to deal with harsher environments and extend their lifespans.

While there should be little public harm in the eventual ubiquity of the technologies and information required to construct synthetic life, the problems of corporate oligopoly and political lobbying are threatening synthetic biology’s future as much as they threaten other facets of human progress. The best chance for an outcome that will be maximally beneficial for the world relies on synthetic biology taking a radically different direction to GM. That alternative direction, of course, is an open source future for synthetic biology, as called for by Canadian futurist Andrew Hessel and others.

Calling himself a “catalyst for open-source synthetic biology”, Hessel is one of the growing number of experts who reject biotechnology’s excessive use of patents. Nature notes that his Pink Army Cooperative venture relies instead on “freely available software and biological parts that could be combined in innovative ways to create individualized cancer treatments — without the need for massive upfront investments or a thicket of protective patents”.

While offering some support to the necessity of patents, J. Craig Venter more importantly praises the annual International Genetically Engineered Machine (iGEM) competition in his book as a means of encouraging innovation. He specifically names the Registry of Standard Biological Parts, an open source library from which to obtain BioBricks, and describes this as instrumental for synthetic biology innovation. Likened to bricks of Lego that can be snapped together with ease by the builder, BioBricks are prepared standard pieces of genetic code, with which living cells can be newly equipped and operated as microscopic chemical factories. This has enabled students and small companies to reprogram life itself, taking part in new discoveries and innovations that would have otherwise been impossible without the direct supervision of the world’s best-trained teams of biologists.

There is a similar movement towards popular synthetic biology by the name of biohacking, promoted by such experts as Ellen Jorgensen. This compellingly matches the calls for greater autonomy for individuals and small companies in medicine and human enhancement. Unfortunately, despite their potential to greatly empower consumers and farmers, such developments have not yet found resonance with anti-GMO campaigners, whose outright rejection of biotechnology has been described as anti-science and “bio-luddite” by techno-progressives. It is for this reason that emphasizing the excellent potential of biotechnology for feeding and fuelling a world plagued by dwindling resources is important, and a focus on the ills of big business rather than imagined spectres emerging from science itself is vital.

The concerns of anti-GMO activists would be addressed better by offering support to an alternative in the form of “do-it-yourself” biotechnology, rather than rejecting sciences and industries that are already destined to be a fundamental part of humanity’s future. What needs to be made is a case for popular technology, in hope that we can reject the portrayal of all advanced technology as an ally of powerful states and corporations and instead unlock its future as a means of liberation from global exploitation and scarcity.

While there are strong arguments that current leading biotechnology companies feel more secure and perform better when they retain rigidly enforced intellectual property rights, Andrew Hessel rightly points out that the open source future is less about economic facts and figures than about culture. The truth is that there is a massive cultural transition taking place. We can see a growing hostility to patents, and an increasing popular enthusiasm for open source innovation, most promisingly among today’s internet-borne youth.

In describing a cultural transition, Hessel is acknowledging the importance of the emerging body of transnational youth whose only ideology is the claim that information wants to be free, and we find the same culture reflected in the values of organizations like WikiLeaks. Affecting every facet of science and technology, the elite of today’s youth are crying out for a more open, democratic, transparent and consumer-led future at every level.

By Harry J. Bentham - More articles by Harry J. Bentham

Originally published at h+ Magazine on 21 August 2014

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