Research Shows Evolutionary Divergence in Knee Bones of Primates

The evolution of bones in primates' knees could have implications for how humans evolved to walk upright, a new study has found.

Researchers from King's College London analyzed the presence of the lateral fabella, a bone in the knee the size of a sesame seed, in 93 different species of primates.

They found that while most primates have these bones, they are often absent in hominoids, the group of primates that humans belong to alongside chimpanzees, gorillas, gibbons, and others.

Yet humans have evolved to have this bone differently from most primates and it is not found in all people. The researchers say this distinct evolutionary pathway of the fabella in humans could point to an evolutionary change that helped the ancestors of humans walk upright.

Our study shows that this often-misunderstood bone could have evolved in multiple ways in primates, with humans having a distinct form of evolution that began right at the start of all hominoids.

Using this bone in a new way could have helped early humans, like Australopithecus, go from walking on all fours to walking upright."

Dr. Michael Berthaume, Reader in Engineering at King's College London and author of the study

The lateral fabella is a sesamoid bone behind the knee which is twice as common in people with knee osteoarthritis. Sesamoids, like the kneecap, are small bones embedded in tendons or ligaments that are sometimes present within mammalian skeletons, which means they can be absent in some mammals, but present in others of the same species.

Despite hundreds of years of research, little is understood in terms of sesamoids evolution, development, and why they are present in some people and not others.

In the new study, published in Proceedings of the Royal Society B, scientists used statistical modelling to examine the presence of three sesamoid bones in the knee – the cyamella, medial fabella and lateral fabella – using research published over the last one hundred years.

The scientists discovered that primates with faballae were 50 times more likely to have ancestors who also had them. The team also found that the medial and lateral fabella almost always develop in pairs, except in rare cases like humans, who only have a lateral fabella.

Further analyses suggest hominoids may have evolved a way to grow fabellae different from other primates, which could explain why humans can grow a lateral fabella without a medial one, but other primates cannot. This could unite over a century of research, where scientists have debated how these bones evolved.

The distinct evolutionary pathway of the fabella 're-emerging' in humans could point to an evolutionary change that helped the ancestors of humans walk upright.

Dr Berthaume, said: "In almost all other cases apart from humans, we know that primates developed fabellae in pairs. We also know that the way primates move doesn't necessarily affect the evolution of these bones, so why are humans different?

"Excitingly, this 'decoupling' could be the sign of an exaptation, when something in the body already exists and then begins to be used for another purpose – in this case bipedalism. Further work on the biomechanics of the fabella is needed to confirm this, but preliminary results are promising."

Source:
Journal reference:

Fragoso Vargas, N. A., et al. (2024) Easy to gain but hard to lose: the evolution of the knee sesamoid bones in Primates—a systematic review and phylogenetic meta-analysis. Proceedings of the Royal Society B. doi.org/10.1098/rspb.2024.0774.

Comments

The opinions expressed here are the views of the writer and do not necessarily reflect the views and opinions of AZoLifeSciences.
Post a new comment
Post

While we only use edited and approved content for Azthena answers, it may on occasions provide incorrect responses. Please confirm any data provided with the related suppliers or authors. We do not provide medical advice, if you search for medical information you must always consult a medical professional before acting on any information provided.

Your questions, but not your email details will be shared with OpenAI and retained for 30 days in accordance with their privacy principles.

Please do not ask questions that use sensitive or confidential information.

Read the full Terms & Conditions.

You might also like...
LINE-1 RNA from Ancient Viruses Promotes Bone Repair