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Guide to Patagonia's Monsters & Mysterious beings

I have written a book on this intriguing subject which has just been published.
In this blog I will post excerpts and other interesting texts on this fascinating subject.

Austin Whittall


Showing posts with label australopithecus sediba. Show all posts
Showing posts with label australopithecus sediba. Show all posts

Tuesday, April 7, 2026

Was Homo habilis a member of our homo genus?


In several posts I had suggested that it was possible that Homo habilis was the first hominin to leave Africa and reach Eurasia. Following some authors, I wondered if they were related to the Flores Island Hobbits, as posited by Arguea et al., 2017. But, as research advances, new analysis appears and definitions shift, possibly an earlier hominin left Africa for Asia (see my post on Australopiths in Dmanisi Georgia). However, Homo habilis have always intrigued me, as they are the first, and oldest members of our Homo genus, and their name, Habilis, is a Latin word that means "skilfull", the first in our lineage to make stone tools (Oldowan, which look like chopped pebbles or cobbles).


Recently, new research has looked into Homo habilis, trying to understand its place in the hominin tree. This post looks into two new papers published last January, on Homo habilis, and their status in our family tree.


The first one is Tattersall, I. (2026). An identity for the inscrutable Homo habilis. The Anatomical Record, 309(3), 546–549. https://doi.org/10.1002/ar.70145, published on Jan. 24, 2026. Tattersall suggests that this hominin was the outcme of Leakey grouping together an assortment of bones and proclaiming they were the first stone tool makers back in 1964. At that time human-like attributes were linked to cognition, and therefore stone tools were an indicator of brainier hominins, hence it was included in the Homo genus, unlike the more primitive Australopithecines. Tattersall says that "This motley assortment is notably varied in morphology, age, and body parts represented, and it gives Homo habilis a suspiciously heterogeneous and long-lived hypodigm (approximately 2.8–1.6 Ma)... Homo habilis emerges as a relatively diminutive early hominin toolmaker that possessed a remarkably archaic upper body skeleton and was presumably a significant interactor in the woodlands and bushlands of what are now Tanzania and Kenya (and maybe of Ethiopia too) during the period centering around 1.8–2.0 Ma. "

Are they Homo?

Tattersall suggests these remains of H. habilis are not actually Homo, as they have much smaller bodies than the erectus, who are genuine Homo, and have longer arms that seem adapted to living among trees, he does not classify them as Australopiths either, he suggests a new placement outside of the Homo branch:


"On the basis of the limited material known, the habilis fossils from Olduvai and Ileret fail to qualify as Homo... That exclusion contrasts starkly with the very morphologically distinct and only slightly younger Turkana materials, such as the skeleton WT 15000 and the cranium ER 3733, that are often assigned to Homo ergaster... Homo erectus africanus.
But does this necessarily mean that the relatively diminutive ER 64060/1 individual, with its postcanine megadonty and elongated arms, should be classified as Australopithecus? Of course not. It just means that it is excluded from Homo, although not necessarily from the larger Homo clade that findings at sites such as Ethiopia's Ledi-Geraru (Villmoare et al., 2015, 2025) suggest may already have been diversifying, in parallel to the australopith one, as early as around 3 Ma
"

Small, slender, and adapted to trees...

The second paper written by Grine, F. E., Yang, D., Hammond, A. S., Jungers, W. L., Lague, M. R., Mongle, C. S., Pearson, O. M., Leakey, M. G., & Leakey, L. N. (2026). New partial skeleton of Homo habilis from the upper Burgi Member, Koobi Fora Formation, Ileret, Kenya. The Anatomical Record, 309(3), 485–545. https://doi.org/10.1002/ar.70100, published on Jan 13. 2026, is more forgiving (it was also cited by Tattersall). The paper focuses on a thorough analysis of the remains of a specimen known as KNM-ER 64061 from Koobi Fora (2.02–2.06 Ma), a Homo habilis.


This individual was tiny, and had less body mass than the erectus it weighed 30.7–32.7 kg (67.7-72.1 lbs) and 1.6 m tall (5.25 ft), though they try to avoid the issue, the authors recognize adaptations that imply an arboreal lifestyle:


"As a consequence of these various uncertainties and concerns, we are hesitant to infer specific behavioral repertoires for KNM-ER 64061 as an individual or for H. habilis as a species. Thus, features of the OH 7 hand (phalanges with a thicker palmar cortex and proximal and intermediate phalanges with high relative bending strengths) may be related to arboreality in H. habilis, but they may equally represent the condition inherited from a phylogenetic precursor of H. habilis that was more arboreal. Similarly, the relatively long forearm of H. habilis may have enabled a greater degree of arboreal locomotion in this species than in H. erectus, but whether arboreality was indeed practiced by H. habilis must remain a matter of speculation."


H. habilis and H. naledi


Homo habilis predates Homo erectus but both species probably overlapped for 500,000 years in East Africa, which reveals different types of archaic humans living in the same region at the same time. They also probably co-existed with the archaic-looking Homo naledi (Lee R Berger, John Hawks, Paul HGM Dirks, Marina Elliott, Eric M Roberts, 2017) which was dated to the very recent age of ~250 ky in South Africa.


This paper proposes that H. naledi with its mossaic of archaic and some (few) modern features, could be located in the Homo habilis branch of hominins: "Phylogenetic scenarios for H. naledi place its origin either: (1) somewhere among the poorly resolved branches leading to H. habilis, H. rudolfensis, H. floresiensis and Au. sediba (Berger et al., 2015; Dembo et al., 2016); Thackeray, 2015): (2) as a sister to H. erectus and larger-brained Homo including H. sapiens (Dembo et al., 2016); or (3) as a sister to a clade including H. sapiens, H. antecessor, and other archaic humans (Dembo et al., 2016) (Figure 2). Maximum parsimony analysis of a large dataset of cranial and dental traits supports scenario 1, placing H. naledi among the most basal nodes of the Homo phylogeny."


H. naledi, with a brain one-third the size of ours (and said to bury its dead and engage in rock art!!) is a controversial hominin. It seems to have existed between ~2.50 to 0.23 My ago, co-existing with the common ancestor of Neanderthals, Denisovans and H. sapiens, and also with the first humans, overlapping with us in South Africa. A second paper by Hawks et al, also from 2017, described the site where they were found, in South Africa, and includes the following image which I adapted from Fig. 36 in Hawks et al., 2017. A picture is worth more than 1,000 words. As you can see, the H. naledi and H. habilis (and A. sediba) are all very similar and different to the Homo erectus skulls, but the H. Naledi is 300 ky old, while the H. habilis ones are over 1.8 million years (My) old, and A. sediba is roughly 2 My old.


habilis, naledi, erectus, human skulls
Comparison of skulls ancient hominins. Adapted from Fig. 36 Hawkes et al., 2017

The primitive looking naledi and habilis fossils have shorter and smaller skulls with a slanted face and tend to group together in their appearance. The H. erectus are larger, and have bigger brains and elongated skulls. They are the "real" first homo people. However, if the Dmanisi people were Australopiths, then, we should not underestimate the abilities of those that preceded the homo lineage. Perhaps they too, with crude stone tools could have moved across Eurasia and, reached Sunda, Southeast Asia and Eastern Asia over 2 My ago. Are the tiny trolls, gnomes, and elves of our mythology the memory of Australopiths or Homo habilis encountered by modern humans on their trek across Eurasia and America?


Since 1959, but more recently Plummer et al., 2023, and Mongle et al., 2025 suggest that the East Africa Paranthropus boisei, a sister hominin related to ours, was capable of flaking stones with an Oldowan technology, 2.5 to 3 My ago: "These fossils suggest that P. boisei was capable of tool making and use in some capacity." So, toolmaking is not exclusive to our homo lineage.



Patagonian Monsters - Cryptozoology, Myths & legends in Patagonia Copyright 2009-2026 by Austin Whittall © 

Tuesday, November 4, 2025

Homo georgicus revisited: An ancient peopling of Eurasia


The first hominins to leave Africa were discovered in Georgia, in the Caucasus. A paper published in March 2025 suggests that not all the remains of found in the cave in Georgia belong to this Homo georgicus species, and tries to place these specimens on the hominin phylogenetic tree.


I have posted on H. georgicus in 2011 and 2019. But science advances and new discoveries arise so it is time to take another look at Georgicus.


Source: Where do the Dmanisi hominins fit on the human evolutionary tree? Debbie Argue, José María Bermúdez de Castro, Michael S. Y. Lee, Maria Martinón-Torres bioRxiv 2025.03.01.639363; doi: https://doi.org/10.1101/2025.03.01.639363


I quote part of their paper below.


"Conclusions
The Dmanisi hominins are often included in H. erectus or H. erectus s. l. /H. ergaster, notwithstanding that they are formally designated as Homo georgicus with D4500_D2600 as the holotype. In our phylogenetic analyses, none of the Dmanisi hominins form a sister taxon to either H. erectus or H. ergaster. We hypothesise that the Dmanisi hominins did not share a unique common ancestor with H. erectus or H. ergaster, and we cannot support their attribution to either of those species.
Although all the Dmanisi hominins are attributed to a single species, the morphological variation evident among them has prompted questions about their heterogeneity with discussion focusing on whether one species or two are represented. We approached this question using phylogenetic analyses and by exploring further lines of evidence. Although our phylogenetic analyses did not lead us to propose two species among the Dmanisi hominins, there are nevertheless morphologically significant differences in the cranium, mandible and dentition of the individual represented by D4500_D2600 and the other Dmanisi hominins that are consistent with the view that D4500_D2600 represents a separate species. These are the unique and perplexing pattern of sexual dimorphism evident in the endocranial capacities of the assemblage when considered as one species; the dichotomy in mandibular molar size sequences; and in the presence of both a primitive and a derived form in the mandibular structures among the assemblage. We also note that D4500_D2600, in terms of character distances, is more similar to other hominins, including H. floresiensis, than it is to the other Dmanisi individuals.
We propose that the most parsimonious hypothesis for the Dmanisi hominins is that two species are present among the assemblage: Homo georgicus comprising D4500_D2600 and an un-named species comprising the other Dmanisi hominins: D2280, D2282_D211, D2700_D2735 and D3444_ D3900. The alternative hypothesis, that the assemblage comprises a single species, requires substantial paradigm shifts in our definition of Homo.
We surmise that the first hominin species at Dmanisi was H. georgicus, and that the species was probably present by 1.8 Ma. The other hominins, D2280, D2282_D211, D2700_D2735 and D3444_ D3900, accumulated at some time or times during the reverse polarity of 1.07 Ma and 1.77 Ma.
The specific ages of D2280, D2282_D211, D2700_D2735 and D3444_ D3900, however, remain unknown. Dating of the volcanic ashes in which each hominin was recovered, together with dating the ashes in the overlying strata to find the minimum date for the hominins, would likely produce a more refined understanding of the chronology for the Dmanisi hominins.
"


The link to the Flores Island hobbit is interesting, and also the lack of relationship with H. erectus and H. ergaster. Who, as we see below are more recent. The phylogenetic trees in the paper suggest that H. georgicus is on a branch that split earlier from the one leading to H. habilis, H. erectus, H. ergaster, and H. sapiens. Pictured below


homo georgicus phylo tree
Fig 1. Tree H. georgicus and other hominins.

Ancient Hominins in Eurasia


Georgicus was the first early hominin to be discovered in Eurasia, and older than the H. erectus remains found in Indonesia and China. They were the first to venture out of Africa.


But Georgicus wasn't alone in Eurasia. There are many sites around 2 million years old. Some of them have hominin remains associated to them, others have tools or bones suggesting human action on them. See this paper published in Nature in January 2025 as an example. It includes the following image with ancient sites and what markers were used to identify hominin presence (Fig. 5). Note that the other "oldest" remains found are H. erectus, suggesting that Georgicus came first.


ancient hominins 2 my old

So, which ancient hominin left Africa? Was it H. georgicus if he appeared in Africa and migrated to the Caucasus, or even more primitive australopithecines that evolved into H. georgicus in Asia?


Ferring et al. (2011) suggested that Georgicus predates H. erectus in Africa: "Dmanisi's first occupations to shortly after 1.85 Ma and document repeated use of the site over the last half of the Olduvai subchron, 1.85–1.78 Ma. These discoveries show that the southern Caucasus was occupied repeatedly before Dmanisi's hominin fossil assemblage accumulated, strengthening the probability that this was part of a core area for the colonization of Eurasia. The secure age for Dmanisi's first occupations reveals that Eurasia was probably occupied before Homo erectus appears in the East African fossil record."


Argue et al. confirm it with their phylogenetic trees. Homo georgicus was not a subspecies of erectus, it was located on a branch that split from some common ancestor of Homo habilis and later H. erectus.


Did a back-migration into Africa of the Georgicus hominins lead to the appearance of H. habilis there? In that case it would be an In &: Out of Eurasia-Africa that led to more evolved hominins.


Further studies will provide additional information.



Patagonian Monsters - Cryptozoology, Myths & legends in Patagonia Copyright 2009-2025 by Austin Whittall © 

Monday, May 28, 2012

South African musings


Cape Agulhas
Cape Agulhas, southernmost tip of Africa. Photo by Austin Whittall May 2012.
Copyright © 2012 by Austin Whittall

I visited South Africa. During the last two weeks my wife and I have taken a lovely vacation to that great country at the tip of the African continent. This is not the place to go into its turist attractions, the beauty of its landscape, the friendliness of its people, its wildlife, great food and wines, so please be assured that I won't bore you with my travel anecdotes. Instead I will post some thoughts on the peopling of South America starting out from the African Continent.


The nasty waters south of Africa


I had the opportunity to see the rough South Atlantic Ocean beating upon the rocky shores of the Cape of Good Hope, Hermanus and Cape Agulhas. I also experienced the Indian Ocean's surf roaring against beaches and cliffs along the south of South Africa between Port Elizabeth and Cape Agulhas. The sea is really rough.


The sight of these choppy waters has has made me reconsider the theory that I have mentioned in previous posts (The South African Out of Africa), which suggests that our ancient ancestor Homo erectus crossed these waters and skirted the Antarctic continent to reach America.


No man (or hominin) in his senses would dare venture into those roaring waves.


The photograph above was taken at the southernmost point of Africa, Cape Agulhas (34° 49' 58"S, 20° 00' 12"E), where the Indian Ocean and Atlantic Ocean waters meet.


Ancient record of humans in Southern Africa


I also had the chance to visit a caveat Mossel Bay, on the point, under the lighthouse.


Located at 22° 10' E and 34° 12' S the Cape of St. Blaize separates the rough Indian Ocean waters from those of Mossel Bay. The tip of the Cape was named after the Saint of the day Portuguese navigator Bartolomeu Dias spotted this part of the world, in February 1488. He named the place Aguada de Sao Bras (Watering place of St Blaize).


The cave is actually an overhang, is known as Bat Cave and is set on Cape St. Blaize. It was excavated partially by Leith in 1888 and again in 1932 by A. J. H. Goodwin and B. D. Malan, who reported their findings in 1935. [1] The stone tools were described as Middle Stone Age "Mossel Bay Industry" and record about 165,000 years of human presence in this area.


The cave itself is about 30 m (95 ft) above sea level and is about 90 ft wide by 40 ft deep (27 by 12 m). It faces towards the southeast and offers a lovely view of the surf below. The following photograph shows both cave under the lighthouse:


Bat Cave Mossel Bay
Bat Cave at Mossel Bay. Photo Austin Whittall Copyright © 2012 by Austin Whittall

So, modern humans have lived here for most of our existence as a distinct group of hominins. On the flight back to Buenos Aires, I read an interesting article [2] that made me wonder if other more ancient groups such as Australopithecus sediba may have lived at Mossel Bay or roamed the coasts of Southern Africa.


A. sediba may be the link between our homo genus and the more distant and primitive Australopithecines and has been proposed as an ancestor to H. erectus . These hominins lived about 2.3 Mya and their remains have been found at Johannesburg.


Could they be the ones that made it to Georgia? Was it they who left Africa before H. erectus? Since I am now discarding the South Atlantic route, could they have drifted across the more benign Equatorial route pushed by ocean currents? (see my post on the Trans Atlantic route) Or did they trek all the way into America across Asia and Beringia?

Further reading


[1] A. J. H. Goodwin and B. D. Malan, Archaeology of the Cape St. Blaize Cave and Raised Beach, Mossel Bay. Annals of the South African Museum, Vol. 24, part 3, S. 111-140


[2] Kate Wong, First of Our Kind: Could Australopithecus sediba Be Our Long Lost Ancestor?. Sensational fossils from South Africa spark debate over how we came to be human. Scientific American. March 20, 2012.



Patagonian Monsters - Cryptozoology, Myths & legends in Patagonia Copyright 2009-2012 by Austin Whittall © 
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