Femoral head bones of different hominin species. From top to bottom: Australopithecus afarensis (4-3 million years; ~40 kg, 130 cm); Homo ergaster (1.9-1.4 million years; 55-60 kg; ~165 cm); Neanderthal (200.000-30.000 years; ~70 kg; ~163 cm).

The largest study to date of body sizes over millions of years finds a 鈥減ulse and stasis鈥 pattern to hominin evolution, with surges of growth in stature and bulk occurring at different times. At one stage, our ancestors got taller around a million years before body mass caught up.

Body size is one of the most important determinants of the biology of every organism on the planet

Manuel Will

A wide-ranging new study of fossils spanning over four million years suggests that stature and body mass advanced at different speeds during the evolution of hominins 鈥 the ancestral lineage of which Homo sapiens alone still exist.

Published today in the journal , the research also shows that, rather than steadily increasing in size, hominin bodies evolved in 鈥減ulse and stasis鈥 fluctuations, with some lineages even shrinking.

The findings are from the largest study of hominin body sizes, involving 311 specimens dating from earliest upright species of 4.4m years ago right through to the modern humans that followed the last ice age.

While researchers describe the physical evolution of assorted hominin species as a 鈥渓ong and winding road with many branches and dead ends鈥, they say that broad patterns in the data suggest bursts of growth at key stages, followed by plateaus where little changed for many millennia.

The scientists were surprised to find a 鈥渄ecoupling鈥 of bulk and stature around one and a half million years ago, when hominins grew roughly 10cm taller but would not consistently gain any heft for a further million years, with an average increase of 10-15kgs occurring around 500,000 years ago.

Before this event, height and weight in hominin species appeared to evolve roughly 鈥渋n concert鈥, say the authors of this first study to jointly analyse both aspects of body size over millions of years.听

鈥淎n increase solely in stature would have created a leaner physique, with long legs and narrow hips and shoulders. This may have been an adaptation to new environments and endurance hunting, as early Homo species left the forests and moved on to more arid African savannahs,鈥 says lead author Dr Manuel Will from 国际米兰对阵科莫鈥檚 Department of Archaeology, and a Research Fellow at Gonville &听Caius College.听听听听听

鈥淭he higher surface-to-volume ratio of a tall, slender body would be an advantage when stalking animals for hours in the dry heat, as a larger skin area increases the capacity for the evaporation of sweat.

鈥淭he later addition of body mass coincides with ever-increasing migrations into higher latitudes, where a bulkier body would be better suited for thermoregulation in colder Eurasian climates,鈥 he says.

However, Dr Will points out that, while these are valid theories, vast gaps in the fossil record continue to mask absolute truths. In fact, Will and colleagues often had to estimate body sizes from highly fragmented remains 鈥 in some cases from just a single toe bone.

The study found body size to be highly variable during earlier hominin history, with a range of differently shaped species: from broad, gorilla-like Paranthropus to the more wiry or 鈥榞racile鈥 Australopithecus afarensis. Hominins from four million years ago weighed a rough average of 25kg and stood at 125-130cm.听听

As physicality morphs over deep time, increasingly converging on larger body sizes, the scientists observe three key 鈥減ulses鈥 of significant change.

The first occurs with the dawn of our own defined species bracket, Homo, around 2.2-1.9m years ago. This period sees a joint surge in both height (around 20 cm) and weight (between 15-20kg).

Stature then separated from heft with a height increase alone of 10cm between 1.4-1.6m years ago, shortly after the emergence of Homo erectus. 鈥淔rom a modern perspective this is where we see a familiar stature reached and maintained. Body mass, however, is still some way off,鈥 explains Will.听听听听听听听听

It鈥檚 not until a million years later (0.5-0.4m years ago) that consistently heavier hominins appear in the fossil record, with an estimated 10-15kg greater body mass signalling adaptation to environments north of the Mediterranean.

鈥淔rom then onwards, average body height and weight stays more or less the same in the hominin lineage, leading ultimately to ourselves,鈥 says Will.

There are, however, a couple of exceptions to this grand narrative: Homo naledi and Homo floresiensis. Recently discovered remains suggest these species swam against the tide of increasing body size through time.

鈥淭hey may have derived from much older small-bodied ancestors, or adapted to evolutionary pressures occurring in small and isolated populations,鈥 says Will. Floresiensis was discovered on an Indonesian island.

鈥淥ur study shows that, other than these two species, hominins that appear after 1.4m years ago are all larger than 140cm and 40kg. This doesn鈥檛 change until human bodies diversify again in just the last few thousand years.鈥

鈥淭hese findings suggest extremely strong selective pressures against small body sizes which shifted the evolutionary spectrum towards the larger bodies we have today.鈥

Will and colleagues say evolutionary pressures that may have contributed include 鈥榗ladogenesis鈥: the splitting of a lineage, with one line 鈥 the smaller-bodied one, in this case 鈥 becoming extinct, perhaps as a result of inter-species competition.

They also suggest that sexual dimorphism 鈥 the physical distinction between genders, with females typically smaller in mammals 鈥 was more prevalent in early hominin species but then steadily ironed out by evolution.

Study co-author Dr Jay Stock, also from 国际米兰对阵科莫鈥檚 Department of Archaeology, suggests this growth trajectory may continue.

鈥淢any human groups have continued to get taller over just the past century. With improved nutrition and healthcare, average statures will likely continue to rise in the near future. However, there is certainly a ceiling set by our genes, which define our maximum potential for growth," Stock says.

鈥淏ody size is one of the most important determinants of the biology of every organism on the planet,鈥 adds Will. 鈥淩econstructing the evolutionary history of body size has the potential to provide us with insights into the development of locomotion, brain complexity, feeding strategies, even social life.鈥



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