Jim Menegay <[email hidden]> wrote or quoted:
Quoted message said:6. But the important thing is that, whatever number
happens to be "right" for genes shared between two
random people - say it is 99% - the number of genes
shared with your sibling will be higher - 99.5%, say.
That is, you and your sibling "share" half of the
genes that make you different from other people. And
that extra bit of identity between you is enough to
provide an incentive for altruism.
However, the proof of this last statement is subtle, and
it is not just the "tyro"s who misunderstand it.
A couple of "thought experiments" might throw some light on
this issue:
Firstly, it should be clear that the extent that altruistic
acts are directed towards relatives rather than strangers
depends not on their relatedness to one another - but to
their *percieved* relatedness to one another.
To see why this might matter, consider two populations:
One population used to use scent to identify relatives.
Pheremones were coded for my polymorphic genes - and you
could tell how closely someone is related to you by
sniffing them.
In the other population, relatedness was judged by whether
an organisms fed you as a child, grew up in the same nest as
you, or was one that you gave birth to, or perhaps that your
mate gave birth to.
Now imagine that both populations have recently been through
a bottleneck that destroyed most of the genetic diversity in
their gene pool, and left their genomes almost identical to
one another.
Genetic relatedness between randomly-selected individuals
within each population would be high.
However in one population, individuals would act as
though they were all related to one another - while in
the other, they would act as though "conventional"
relatedness rules applied.
So - we can see that any argument that rare genes that
promote altruism between relatives will be favoured
equally no matter how genetically homogeneous the
population is in need of some adjustment - since a whole
bunch of mechainsms that are normally available for
judging relatedness can get thrown out of joint by
population bottlenecks that destroy genetic diversity -
and it is percieved relatedness that matters.
Secondly, a theoretical doubt:
While the notion of a population persisting for very long
in a genetically homogenous state is probably not
terribly realistic, I /suppose/ it could happen in
principle - perhaps in a population located in a confined
space for an extended period, and also subjected to
strong selective forces that cause the effective
population size to be very small.
Would such a population exhibit greater altruism between
"unrelated" members of the same species than normal?
Aside from the argument about percieved relatedness being
greater in genetically uniform populations, there's another
reason for thinking that such populations might behave more
"altruistically" - i.e. more like a single big clonal
organism - than normal populations would: high-level
selection.
A usual argument (which I basically accept) for species
level selection being a weak and ineffective force invokes
the facts that species reproduction times are very long
compared to individual reproductive times - so the effects
of individual-level selection are correspondingly magnified
- and there's a lot of scope for individual level selection
destroying much of the variation in populations that species
level selection might work on.
However, a genetically homogeneous population would severely
hamper the progress individual-level selection can make -
and would be likely to be effective at reducing the
resulting rate of adaptive evolution.
This could tip the scales in favour of selection at higher
levels. Would it be enough to make the members of the
homogeneous species act together as a team - in their
competition with other species? Probably not - but it seems
to be a quantitative issue - and depends on the degree of
homogeneity and the relative reproduction rates in question.
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