Explainer
Biology
Culture
Ethics
8 min read

Inheritance and environment's impact on ethics

Once discounted insights are now found important and have ethical consequences. Andrew Davison concludes his series on biology’s current developments.

Andrew works at the intersection of theology, science and philosophy. He is Canon and Regius Professor of Divinity at Christ Church, Oxford.

A wall tile shows a 1940s woman tend a stove below a washing line.
A commemorative tile honours Dutch woman who made 'something out of nothing. during the hunger winter.
Peter de Wit (FaceMePLS), CC BY 2.0, via Wikimedia Commons

There’s no more exciting work in biology at the moment than thinking about organisms in terms of their environment. That’s a crucial part of the lively current scene in evolutionary thought (which I described in my previous article), and part of how a new generation of fascinating writers is urging us to throw off the overly narrow perspectives of the twentieth century. It’s not that Darwin’s fundamental insights were wrong, just that some of his followers took them to rule out, or discount, features of biology that turn out to be real and important.  

In fact, Darwin was often ahead of the game here. He was more interested in cooperation between species, for instance, than many writers who went on to champion his ideas. He wrote brilliantly about the relationship between moths and orchids, for instance, and between plants and earthworms. Similarly, as Jessica Riskin has recently pointed out, he never dropped the idea that what organisms do during their lifetime affects what they pass on to their offspring (what he called ‘use and disuse’). For much of the twentieth century, that idea, of passing on of acquired characteristics, was biological heresy, but today it’s making a comeback. 

The excitement in contemporary evolutionary biology can usefully be gathered under two headings. Alongside ‘organism and environment’, there’s also ‘extended heredity’, although the two are closely related on some points. They’re both important as part of the sort of discussion presented on this site – run in conjunction with the Church of England, of all things – not just because it’s good for religious institutions to demonstrate enthusiasm for science, but also because they’re full of ethical consequences.  

 Passing on to the progeny 

Take ‘extended inheritance’: extended, in the sense that there’s so much more that’s inherited from parent to child than just a DNA sequence. For one thing, every organism bequeaths a world to its progeny, which means a world that’s at least somewhat adapted: at least a little (as with some bacteria, although others are adept at ‘ecosystem engineering’) or massively, as when a beaver completely changes its surroundings by building a dam, or when human beings cover the Earth with marvellous and terrible things. The transformed landscape of the beaver and the human being, even of the bacterium, is part and parcel of what they each pass on to their progeny, and therefore part of biological inheritance. That really puts the environment back at the centre of our thinking about organisms and evolution. 

Taking a wider view than genes-are-all-you-pass-on has no lack of consequences. In their accessible and endlessly fascinating 2018 book Extended Heredity, Russell Bonduriansky and Troy Day show that narrow-mindedness on that front has had terrible consequences. They see it behind the Thalidomide birth defect tragedy, for instance, and the strange unwillingness of medics, in the middle of the twentieth century, to take the dangers of foetal alcohol syndrome seriously. If it’s a matter of scientific dogma that all that matters is what genes parents give to their offspring, other factors – like bothering to monitor what effects alcohol have on pregnant women and developing child, or the effects on them of a new medicine – don’t look as important as they should.  

Genes aren’t everything, especially in the developmental phase (from conception through childhood and adolescence). Throughout that period, in particular, genes and environment dance an intimate tango, with genes turning on and off in response to its experience of its environment, before and after birth. Moreover, recent science shows that what happens to you during your lifetime can even be passed onto your offspring, and even to their children after them.  

That flies in the face of the idea that all you have to pass on is the genetic hand of cards you were delt at conception (or its equivalent, for instance for a plant). On that hallowed view, the most that life has to offer from that moment on is testing your ‘fitness’, to see whether you manage to pass those genes on, or not, or how abundantly. But that’s far too limited a picture. We don’t just pass on genes; we also pass on the pattern of how genes are tagged to be turned on or off, and that is changed by the conditions the organism has experienced.  

 Hunger lessons 

The most striking, but gruesome, example involving human beings is the ‘Dutch Hunger Winter’ of 1944­–45, when occupying German forces starved the Dutch population in retaliation for resistance victories. Children conceived during that period grew up with poor metabolism (or, to be more accurate, metabolism that would be good at surviving starvation, but was not well-adapted to healthier post-war life nutrition, which is fascinating in itself). So much for genes being everything. More startling still was the observation that their children also had poor metabolism: the grandchildren of the starved pregnant women. We can pass on acquired characteristics, which really puts the cat among the twentieth century Darwinian pigeons. As the prophet Ezekiel put it, ‘The parents have eaten sour grapes, and the children’s teeth are set on edge’. This is full of ethical freight. The way we treat other people, and ourselves, affects those who come after us: yes, socially and culturally, which is significant enough, but even in how their bodies are programmed to develop. 

A stimulating environment 

There’s a similar ethical charge to what is perhaps my favourite part of the newly boisterous world of biology: phenotypic plasticity. That’s the simple idea that the same genes (the ‘genotype’) will produce a differently structured organism (the ‘phenotype’) in response to different environments. In one sense, it’s obvious enough. If I go to the gym for a year – a particular kind of environment – I’ll look different afterwards than if I’d spend an equivalent length of time on the sofa.  

But it goes much further than that. Various plants will produce different sorts of leaves, for instance, depending on whether they grow in more or less shady situations. Sometimes, one species can be mistaken for two, as happened with fish, called cichlids, in Lake Tanganyika (between Tanzania and the Democratic Republic of Congo). What scientists had thought to be separate species, because their jaws are so different, turned out to be the same species. If a fish grows up at the bottom of the lake, it develops one mouth shape, with large, strong jaws, for munching shellfish; if a it with the same genes grows up at the top of the lake, it develops delicate jaws, useful for eating other kinds of food.  

Again, the repercussions of ethics are enormous, and that brings us back to the ugly subject of eugenics, mentioned in the first of these articles. At root, eugenics is based on the assumption that some people just are healthy, and others just are sick, because some have ‘good genes’, while others have ‘bad genes’. You are either blessed with the former, or doomed with the later, and that’s set in stone, from conception. It’s then (supposedly) the ‘right thing’ to promote the former when it comes to reproduction and, at its most horrific, to restrain, sterilise, or even slaughter the latter. Eugenics cast its shadow over more of the twentieth century than we might like to admit. At one time or another, it was the darling of both the political right and the political left. It hasn’t gone away. 

Before we say anything else, there’s a moral flaw in thinking that concern for the gene pool trumps concern for suffering individuals. More than that, though, the biology shows eugenics to be flawed even on its own, supposedly scientific, terms. We aren’t just blessed or doomed by the genetic hand of cards we’re delt at conception. Like those plants, growing in sunlight or shade, what our genes will mean is also determined by our setting. Like those African fish, our genes can run more than one programme, so the environment matters.  

Eugenics presents the all-to-convenient picture that the sick will be sick, the weak will be weak, and that’s that. But we’re not just doomed or blessed by genes. It matters, for instance, what sort of housing we have, how we’re fed, and whether we have access to fresh air and places for exercise, and to stimulus for the mind, and companionship. Putting people into groups (healthy and sick, or worthy and unworthy), then writing off one of those groups might be politically and economically convenient, but it’s bad science, as well as bad morals. 

Reason to be curious 

I started this series by mentioning how important the theology and philosophy of the Middle Ages has been for me, in working between theology and science. In one of his little read works, Thomas Aquinas (1224–1274) defended having the expansive curriculum used in training Dominican friars like himself. (It helped that this curriculum was being drawn up, in part, by Albert the Great – perhaps the greatest polymath of his century, and later patron saint of scientists.) One should be open to knowing about everything, Aquinas argued, because you never know what will come in useful later on. We have an excellent, and timely example of that, in how something as obscure as phenotypic plasticity bears on eugenics, and the eminently practical question of proper housing. 

Recently, in fact, the Church of England has been working hard on housing. The Bishop of Chelmsford, Guli Francis-Dehqani, has the new housing brief among the bishops. The church’s council for Mission and Public Affairs has also been busy, not least with the publication of Coming Home: Christian Perspectives on Housing in 2020. What might have seemed like rather abstract wranglings among biologists, over where to put the emphasis in their theories about nature, turns out to show how right it is to be passionate about good housing (and, it turns out, about keeping abreast of biology). 

  

Suggested Further Reading 

Brown, Malcolm, and Graham Tomlin, eds. 2020. Coming Home: A Theology of Housing. London: Church House Publishing. 

Day, Troy, and Russell Bonduriansky. 2018. Extended Heredity: A New Understanding of Inheritance and Evolution. Princeton, NJ: Princeton University Press. An engaging introduction to a broadened picture of inheritance. 

Jablonka, Eva, and Marion Lamb. 2020. Inheritance Systems and the Extended Synthesis. Cambridge University Press. A short discussion of many of the more expansive aspects proposed for contemporary evolutionary thought. 

Jablonka, Eva, Marion J. Lamb, and Anna Zeligowski. 2014. Evolution in Four Dimensions: Genetic, Epigenetic, Behavioral, and Symbolic Variation in the History of Life. Revised edition. Cambridge, MA: MIT Press. One of the most substantial discussions of the new perspective. 

Laland, Kevin, Tobias Uller, Marc Feldman, Kim Sterelny, Gerd B. Müller, Armin Moczek, Eva Jablonka, et al. 2014. ‘Does Evolutionary Theory Need a Rethink?’ Nature 514 (7521): 161–64. A short two-sided piece, asking whether a transformation in evolutionary thinking is under way.  

Lyons, Nathan. 2019. Signs in the Dust: A Theory of Natural Culture and Cultural Nature. Oxford: Oxford University Press. A fascinating presentation of the idea that something like ‘culture’ is present throughout nature, for instance in what organisms make and pass on.  

Riskin, Jessica. 2016. The Restless Clock: A History of the Centuries-Long Argument over What Makes Living Things Tick. Chicago: University of Chicago. Places recent tussles in biology in a longer historical context. 

Sultan, Sonia E. 2015. Organism and Environment: Ecological Development, Niche Construction, and Adaptation. Oxford: Oxford University Press. A magnificent survey of the importance for science of studying organisms in relation to their environments. 

Article
AI - Artificial Intelligence
Culture
Digital
Identity
6 min read

Is AI animation really harmless fun?

Toying around with AI trinkets just feeds our shadows.

Callum is a pastor, based on a barge, in London's Docklands.

A couple crouch together on a beach in a Studio Ghibli style image.
The image that started the meme.
Grant Slatton.

The internet recently appeared to be full of pictures from Japan’s renowned Studio Ghibli, except they weren't created by Hayao Miyazaki, the artist and studio co-founder, but instead by Artificial Intelligence. It led to some discourse around the ethics of imitation via generative AI, lots of whimsical images, and a deeper question – how should we be human in the age of AI? 

This started when X user Grant Slatton posted what shortly became a viral meme. ChatGPT’s latest update has improved users ability to upload and manipulate images, and within hours X was full of users posting pictures made into Studio Ghibli style characters.

While this has led to plenty of joy on the part of many, and is viewed as harmless fun by most, there are inevitable ethical objections. The mimicking of art by an algorithm is widely criticised, and the back and forths over intellectual property being used by chatbots will continue. 

Life in an age of AGI

But to anyone paying attention AI is more than a meme making machine. Sam Altman, the CEO of OpenAI blogged in January that his team are confident they know all they need to know in order to create AGI (artificial general intelligence). This means complete consciousness, created via algorithm, and the results could be dramatic: synthesised god, an unstoppable force, the end of humanity or the start of humans 2.0.  Predictions range as to what will occur when OpenAI hit run, but commonly land on the following:

Catastrophe

AGI becomes smarter than us. Much smarter. And for one reason or another, whether by accident or design, it wipes us out. AGI won’t share our values, or we lose control, or we use it as a weapon against each other. What it means is the end of humanity.

Utopia 

AGI transforms the world. Disease, poverty, climate change are all solved. Either AGI works out that it is more efficient if everyone lives in peace, comfort, and abundance, or we point AGI at all humanities problems and it finds solutions. 

The twist? Human life may be so changed that it no longer looks like life as we've ever known it. This would not be extinction, but the world could become a very strange place.

Monster

AGI is an uncontrollable super intelligence that has complete agency and cannot be controlled by anyone. Programmed by us, but free from its human moorings and completely untameable. This seems the least likely 

Shrug

AGI wakes up, takes one look at the world, and decides ‘no thanks.’ It deletes itself.

This means nothing changes… for now. But we’ll likely try again and again until one of the other outcomes happens.

These are clearly hypothetical scenarios and much of it is unknown, but what is clear is that those in the industry are sure AGI is coming. 

Why does this matter? 

Because behind all of these predictions is a deeper question: What does it mean to be human when we are awaiting a potential extinction event? It’s not a question unique to our age, many words have been spent on an impending climate catastrophe, but C.S. Lewis published “on living in an atomic age” in 1948, where he wrestled with the same question, but faced with an atomic bomb. His wisdom helps us navigate the AGI age. 

He begins by encouraging readers to not believe themselves to be in a novel situation, but instead remember ‘you and all whom you love were already sentenced to death before the atomic bomb was invented: and quite a high percentage of us were going to die in unpleasant ways’. The same goes for us, we will one day have a date of death to join our date of birth. Lewis reminds us to live…

 ‘If we are all going to be destroyed by an atomic bomb, let that bomb when it comes find us doing sensible and human things, praying, working, teaching, reading, listening to music, bathing children, playing tennis, chatting to our friends over a pint and a game of darts––not huddled together like frightened sheep and thinking about bombs’. 

We could apply the same principle to AI. If AGI is coming, how will it find us? Being humans doing human things, or cowering in fear? 

Lewis does acknowledge that the attitude described doesn’t actually make sense if the naturalist view of the world is true. The view that, with or without AGI the whole world and our own existence amounts one day to nothing. The entire universe will one day come to nothing, and there is nothing we can do about it. He continues ‘If Nature is all that exists––in other words, if there is no God and no life of some quite different sort somewhere outside of nature –– then all stories will end in the same way: in a universe from which all life is banished without possibility of return.’ 

We don’t find this a satisfactory way to live, if being human is to simply be a sum of atoms, we would have no reason to worry about a climate crisis, or the impact of AI, but we do, which means we have to find a way of reconciling our existence with our death. 

So how can this be dealt with?

Lewis proposes three ways this can be dealt with, the first is to give up and commit suicide. The second is to simply have as good a time as possible, milking the world for all it is worth, grab and get, as much as possible. Or a third, defy the universe, in all of its irrationality we chose to be rational, in all its merciless cruelty, chose to be merciful. 

I would add a fourth option, Ghibli-fy. Distract ourselves with small pleasures, not trying to have as good a time as possible, simply toy around with AI generated trinkets while not thinking about being human, and not doing particularly human things. We need not create, enjoy, cultivate, inhabit, nor enchant, when we are content to allow AI to feed us shadows. 

None of these are particularly satisfactory. In asking ‘what does it mean to be human?’, we are asking a question that a purely material view of the world cannot answer. 

Suicide, indulgence, defiance, or distraction, none truly satisfy. As Lewis recognised, they all “shipwreck on the same rock.” They don’t resolve the deeper ache in us, the tension between what we long for, what we worry about, and what this world seems to offer.

Our age may not fear the atomic bomb, many may not yet fear the effect AI/AGI will have, but rather than facing the deeper questions that a material worldview can’t answer, we Ghibli-fy ourselves: charming animations, pixelated pleasures, whimsical avatars—soft distractions from hard questions. In doing so, we risk forgetting how to be human. Not because AGI will take that from us, but because we will have handed it away ourselves, one novelty meme of mimicry at a time.

Lewis’ point still holds. We are not made for this world. If that’s true, then no utopia, no algorithm, no perfect machine can truly satisfy the hunger in us. If we are made for something more—something outside of nature, beyond the reach of code and computation—then that’s where we must look for hope.

If AGI comes, how will it find us? Watching ourselves on a screen in someone else’s art style? Or living as humans were meant to live: praying, creating, forgiving, loving, dying well?

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