Reproductive synchrony
Encyclopedia
Reproductive synchrony is a term used in evolutionary biology and behavioural ecology
Behavioral ecology
Behavioral ecology, or ethoecology, is the study of the ecological and evolutionary basis for animal behavior, and the roles of behavior in enabling an animal to adapt to its environment...

. Reproductive synchrony — sometimes termed 'ovulatory synchrony' — may manifest itself as 'breeding seasonality'. Where females undergo regular menstruation, 'menstrual synchrony' is another possible term.

Reproduction is said to be synchronised when fertile matings across a population are temporally clustered, resulting in multiple conceptions (and consequent births) within a restricted time window. When multiple species are involved, the phenomenon is often referred to as mass spawning. Mass spawning has been observed and recorded in a large number of phyla, including in coral
Coral
Corals are marine animals in class Anthozoa of phylum Cnidaria typically living in compact colonies of many identical individual "polyps". The group includes the important reef builders that inhabit tropical oceans and secrete calcium carbonate to form a hard skeleton.A coral "head" is a colony of...

communities within the Great Barrier Reef.

In primates, reproductive synchrony usually takes the form of conception and birth seasonality. The regulatory 'clock', in this case, is the sun's position in relation to the tilt of the earth. In nocturnal or partly nocturnal primates — for example, owl monkeys — the periodicity of the moon may also come into play. Synchrony in general is for primates an important variable determining the extent of 'paternity skew' — defined as the extent to which fertile matings can be monopolised by a fraction of the population of males. The greater the precision of female reproductive synchrony — the greater the number of ovulating females who must be guarded simultaneously — the harder it is for any dominant male to succeed in monopolising a harem all to himself. This is simply because, by attending to any one fertile female, the male unavoidably leaves the others at liberty to mate with his rivals. The outcome is to distribute paternity more widely across the total male population, reducing paternity skew.

Reproductive synchrony can never be perfect. On the other hand, theoretical models predict that group-living species will tend to synchronise wherever females can benefit by maximising the number of males offered chances of paternity, minimising reproductive skew. The same models predict that female primates, including evolving humans, will tend to synchronise wherever fitness benefits can be gained by securing access to multiple males. Conversely, group-living females who need to restrict paternity to a single dominant harem-holder should assist him by avoiding synchrony.

In the human case, if all this is accepted, evolving females with increasingly heavy childcare burdens would have done best by resisting attempts at harem-holding by locally dominant males. No human female needs a partner who will get her pregnant only to leave her holding the baby, abandoning her in favour of his next victim. To any local group of females, the more such philandering can be successfully resisted — and the greater the proportion of previously excluded males who can be including in the breeding system and persuaded to invest effort — the better. Hence we would predict reproductive synchrony — whether seasonal, lunar or a combination of the two — as central to evolving human strategies of reproductive levelling, reducing paternity skew and culminating in the predominantly monogamous egalitarian norms illustrated by extant hunter-gatherers.
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