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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 seal. Show all posts
Showing posts with label seal. Show all posts

Tuesday, May 20, 2025

Seal at Lake Ranco, Chile


An article published online in the Chilean Diario Futrono on Oct. 6, 2024, (link), reported a sighting of a South American Fur Seal (Arctocephalus australis)) in Lake Ranco.


Lake Ranco lies at a very low elevation, only 65 m (213 ft.) above sea level, and has a surface area of 442 km2 (171 sq. mi.) It is notorious for Culebrón and Cuero sightings. It drains into the Pacific Ocean through the 200-km-long Bueno River (124 mi).


In March 2023, there was a sighting in the lake (with a video to prove it). A local marine biologist at the Santo Tomás University in Osorno, Chile, Alexis Santibáñez, believes it is a sea wolf. He had seen them in the past swimming up the Bueno River, chasing Chinook salmon as far as 70 km (44 mi.) from the sea.

The seal in the rushes.

You can see the full video online.


Patagonian Monsters - Cryptozoology, Myths & legends in Patagonia Copyright 2009-2024 by Austin Whittall © 

Tuesday, August 26, 2014

On TB seals and an early peopling of America


My post of August 7, 2014 on Tuberculosis and the early peopling of America, was in a certain way, prophetic.


In that post, I suggested that there was a "unique" TB strain carried by Native Americans, an it arose because it was taken to the New World by Homo erectus or Neanderthals. My post wrapped up with the following remarks:


"The sequencing of the genome of the native American strain of TB will surely show that it does not share its root with the European clade. however the Amerindian strain is rare and surely overlooked in the samplings that have been carried out. Perhaps recovery of M. tuberculosis from ancient remains may provide evidence of its singular origin. We will have to wait for additional studies to prove or discard the possibility that Homo erectus or Neanderthals reached America with the ancient TB bacteria which evolved there into the Amerindian strain and back-migrated to Asia to continue evolving there."


My conjecture was confirmed by a paper published less than two weeks later (Kirsten I. Bos, et al., Aug. 20, 2014) [1] which reports that a group of scientists did just that, they sequenced the TB genome from the remains of three ancient Peruvian mummies that were over 1,000 years old, and found that the American Natives carried a very unique strain of tuberculosis, completely different to all of the Old World strains.


Of course, being mainstream scientists, they interpreted the results within the constraints of orthodoxy, and came up with some rather odd conclusions and even stranger dates. Today's post looks into this paper and its implications on the possibility of an early peopling of America by Homo erectus or Neanderthals.


Some background on Tuberculosis


Until recently, tuberculosis was believed to have been introduced to America by the Europeans after Columbus discovered the New World in 1492. The heavy death toll caused among the natives by discovery and conquest was mainly due to the devastating effects of disease (including TB).


However, evidence of Pre-Columbian tuberculosis among the natives of the New World has been suggested in several papers. A hypothesis which has been finally confirmed by this recent study [1] which sequenced DNA from Tuberculosis bacterium taken from the remains of Peruvian mummies that predate the arrival of the Europeans to America by some 500 years.


Of course, the current TB strains found in the New World are of a recent origin and were brought to America by the European influx post-1492. This European strain proved more virulent to the local natives and contibuted to their death toll, it also replaced virtually 100% of the Pre-Columbian lineages.


The Recent paper on Amerindian TB


The team which authored this paper [1] found that the Mycobacterium tuberculosis bacteria detected in the ancient Amerindian remains was not of the typical European strain, furthermore it was different to the current African and Asians strains. It is in fact very different to all other human TB clades.


The following image whcin I adapted from [1], displays the phylogenetic tree of various TB bacterial strains (both human and animal):


tb genetic tree

I added the geographical distribution of the strains [3] which in the original paper [1] are not mentioned. I did so because it provides an interesting perspective to the tree:


  • There are two distinct West African lineages L5 and L6, known as M. africanum (Shown in brown and green, respectively).
  • L1 (violet) is the strain that is predominant in South East Asia, central and southern India, and the Indian Ocean rim areas.
  • L7 (yellow) is found exclusively in the Horn of Africa (Somalia, Eritrea, Ethiopia).
  • L4 (red) is the Europan strain also found in America, where it was taken by European migrants after the discovery of the New World.
  • L2 (blue) is the East Asian "Beijing clade".
  • L3 (purple) is the Central Asian and northern India or "Delhi" strain.

The animal strains are shown in black. And the novel Peruvian "archaic Amerindian" strains in orange, on the right side of the tree.


The novelty here is the location of the Peruvian lineage, close to th TB strain found in seals, and apparently rising from the "animal" TB branches.


Animals and humans


This proximity between animal and human strains is not new, all mycobacterium lineages are classed together as the MTBC (Mycobacterium tuberculosis complex). Boritsch et al. (2014) [3] have also pointed it out: the West African strains are very close to the strains found in wild chimpanzees, to M. microti (detected in voles in the 1930s), M. pinnipedii (seals and sea lions) as well as the other strains found in cows (M. bovis), goats (M. caprae) and oryx (M. orygis). [3]


Taking a closer look at the image above, you will notice two main clusters or "clades":


  1. One composed by the animal strains plus the West African human L5 and L6 strains (and also as the new paper shows, the novel Peruvian strain [1]). They are found on the upper part of the image.
  2. The other clade comprises all the remaining human strains in Africa, Eurasia as well as the "recent" American strain of European origin (post-1492). They are found on the bottom part of the image.

This split between these two clades is defined by the "RD9-deletion" which marks the branching point between both lineages of MTBC: (i) The African-Animal (which now includes Ancient Amerindian) and (ii)the other Old World "human" strains which lack this deletion. A peculiar variety of Mycobacterium, the ancestral M. canettii marks the splitting point.


It seems that the ancestor of MTBC evolved into two separate groups, one with the RD9 deletion and the other strains, which we may call M. tuberculosis senso stricto without this deletion. This split took place during the early period of MTBC evolution (below we will see how long ago this split took place).


There is yet another split between the MTBC lines: on one side we have the African-animal-Peruvian plus L1 and L7 (East African and Indian Ocean Rim) clades while on the other we have the rest of the Eurasian strains. The split is caused by the presence or absence of a marker (Tuberculosis Deleted Region 1) or "TbD1".


This split can be seen above and also in another paper (W. Hildebrand, et al., 2008) [4], which studies the expansion of TB "Out of Africa" (O.o.A) and from which I took the following image.


The image below shows a phylogenetic tree split into two sections: on the bottom part is the "ancestral" clade or TbD1-intact (yellow) and on the top is the "modern" or TbD1-deleted strains (red).


TB tree
EAI stands for East Africa and Indian Ocean Rim

These mutatons show that the "West African - animal - Peruvian strains" are the oldest, splitting earliest from the other MTBC clades. Then come the Horn of Africa and Indian Ocean Rim variants which together with the African - animal - Peruvian strains form yet another group, and finally the other younger clades found in Eastern and Central Asia, and Europe.


Both images are anchored in an ancestral group (M. canettii or M. prototuberculosis):


The ancestral TB strain - M. canettii


There are Mycobacterium strains that live in the environment, like other microbes, in the soil or in the oceans (M. marinum or M. ulcerans), and the MTBC which live inside the cells of mammals. How did they manage to jump from one to the other? It seems that another variety of Mycobacterium, known as M. canettii is the link between environmental and human mycobacteria.


The M. canettii strain was reported in 1970 by G. Canetti in Djibouti, in the Horn of Africa. It is a peculiar strain with unusual smooth features. It is believed that it "might represent a pool of strains from which the last common ancestor of the MTBC has emerged" [3]. M. canettii and the MTBC both arose from an archaic progenitor: "M. prototuberculosis". [3]


The M. canettii genome is 20% larger than that of MTBC (+900 genes), so it shows that MTBC shed genes as it specialized in its mammal hosts.

But when did TB appear?


Dating TB


As can be expected due to the molecular clocks and dating techniques used by scientists, the published dates for the origin of TB diverge greatly: from 15 to 70 kya. [3] Furthermore, since all papers assume that TB left Africa with the "O.o.A" event with modern H. sapiens some 40 - 50 kya, this assumption constrains the dating of the different TB strains to a rather "recent" date.


But, what if it left Africa inside infected Homo erectus or the ancestors of Neanderthals, or even earlier? The ancestral home of our predecessors is in the Horn of Africa, precisely where M. canettii is currently found.


The hypothesis of an East African origin is accepted by Boritsch et al., [3] (but the dispersal vector used in the paper is H. sapiens not Neanderthal or H. erectus). Furthermore, the spread from humans to animals is also believed to have taken place in Africa, where our ancestors managed to pass TB on to chimps, dassies, oryx, cows, voles and seals: "...the animal-associated strain lineages of the MTBC seem to have evolved from RD9-deleted M. africanum-like ancestor strains that may well have been adapted to humans already".[3]


I agree with that statement, I firmly believe that these RD9-deleted M. africanum-like strains adapted early to humans, so early that we were not yet H. sapiens, but probably H. erectus or the predecessors of Neanderthals.


The trees depicted further up show very close links between the roots of the animal and West African human TB branches.


But, there is an interesting peculiarity: the oldest African strains are found in West Africa and not in East Africa the cradle of mankind. And this has to be accounted for. Below I outline a hypothesis:


The origin of TB in Africa


Let's assume that M. canettii evolved into two strains the progenitors of modern MTBC, one with the RD9-deletion which infected a "hominin". This hominin lived in Africa yet, part of that population moved out of Africa and, via Asia, reached America, where it originated the "Peruvian strain" with the RD9-deletion. Those that remained in Africa infected animal species with TB.


This explains why Peruvians, West Africans and animals share the RD9-deletion lineages. Perhaps a know extinct Asian population also had this strain.


The second strain of MTBC was not RD9-deleted, and it infected other "hominins" these lived in East Africa from where they split into a group that moved out along the coast of the Indian Ocean. This migration may represent either the Homo erectus (1.8 Mya) or the H. sapiens (100 kya) moves Out of Africa.


Finally the TbD1 deletion appeared outside of Africa and the people carrying it colonzed Europe, Central Asia and Eastern Asia, some also back-migrated to Africa. Did it appear in Neanderthals or modern H. sapiens?


The ancient African "hominin" RD9-deleted variant survived among a relict archaic population in Western Africa, long after its relatives became extinct, and only recently admixed into Modern humans in West Africa. We have already posted on the possibility of archaic admixture as the source of the extremely ancient A00 Y chromosome haplogroup, which may have originated from the introgression of "an archaic form into the ancestors of AMHs...", remains combining "both archaic and modern features" were found at Iwo Eleru in Nigeria and are quite recent: around 13 kya.


The issue is who do we assign to each migratory event.


RD9-deleted hominin could well be Homo habilis which left Africa (H. Georgicus in the Caucasus). Did they reach America? If so, the Peruvian variant could have been carried by them. The RD9-intact group could be H. erectus who remained in Africa and also peopled the coasts of the Indian Ocean. Modern H. sapiens later mutated (TbD1 deleted) and dispersed the other strains around the globe. They could also be the ancestors of Neanderthals or even modern H. sapiens.


The dating as per orthodox science is based on an average mutation rate of roughly 0.5 substitutiones &frasl genome per year. But, the issue is that TB is caused by a clonal bacteria with a very small amount of SNPs (clonal microbes tend to keep stable since they are specialized to infect specific hosts and have discarded unnecessary genes). So, can we be sure that the model used to calculate its age is really valid?


On the other hand, M. canettii has a larger genome than MTBC and around 25 times more SNPs than the MTBC lineages. So if we assign 15 - 70 ky to MTBC, does this mean that the archaic M. canettii 25 times older? That is, 125 to 1,750 ky old? [3]


It is not such a far fetched notion, in fact Gutierrez et al., 2005 [5] suggested a 3 million year date for TB.


So, we have a very wide range of dates from around 15 kya to 3 Mya. So there is the chance that an ancient hominin carried the Peruvian mutation.


Having said this, let's the conclusions of the authors of the paper on pre-Columbian TB in Peruvian mummies:


Going back to the Peruvian mummies


I mentioned above that the paper has some odd findings:


(1). "Two independent dating approaches suggest a most recent common ancestor for the M. tuberculosis complex less than 6,000 years ago, which supports a Holocene dispersal of the disease" [1]. In other words, TB evolved only 6,000 years ago.


(2). Since by that time Beringia had flooded, they had to find a non-human vector that could take TB from its Source in Africa, to America. They sequenced the TB strains of different animals and found that seal TB shared similar traits with the Amerindian strain. So they concluded that seals were the source of Amerindian TB.


We can see in the images above that seal TB is one of the animal groups closest to human L5 and L6 strains. The gene sequencing conducted by Bos et al., [1] showed that the TB strains present in the Peruvian skeletons was very similar to strains of TB that are found in modern seals and sea lions.


The researchers concluded that seals somehow picked up TB from African humans and then carried it across the ocean to the New World where it spread among the native seal-hunters. [1]


I find the 6 kya date for the origin of TB too recent, and the theory of an "African to seal to Amerindian" infection route too complicated. Allow me to explain:


TB in seals


Tuberculosis in seals was studied in 2003 (D. Cousins et al.) [2], they compared genes from six species of seals taken in the UK, New Zealand, Argentina, Australia and Uruguay. They found that pinnipeds share their own strain of MTBC (Mycobacterium pinnipedii) which can also infect other creatures: "guinea pigs, rabbits, humans, Brazilian tapir (Tapirus terrestris) and, possibly, cattle" [2].


How does it spread in nature? "As with other members of the M. tuberculosis complex, aerosols are the most likely route of transmission" [2]. Seal TB is quite contagious, in fact, 6 out of 25 animal keepers at a zoo in The Netherlands became infected with M. pinnipedii when 13 out of 29 sea lions contracted the disease. [6] so no eating was necessary, just close contact with living seals was enough to pass on TB from seal to man.


But, does it work the other way round? Did Africans infect seals? or did they eat a dead Dassie or vole and became infected?


Note that African L5 and L6 strains are similar but not identical to seal TB. So it would have had to mutate in Seals and then jump again to infect Amerindians and mutate again... By the way, why didn't seals infect other seal hunting populations around the world? Only Amerindians?


Now, the interesting point is that "There seems to be a common ancestral source of M. pinnipedii across geographic locations, which raises questions about the original distribution of the seal bacillus in animals of different continents and the potential role of marine mammals in the spread and transmission of tubercle bacilli across oceans". [3]


Bos et al., assume that Africans infected seals with TB. The microbe then mutated among seals and led to a seal-specific lineage which they spread across the globe among seals and sea lions. It later infected some Peruvian seal hunters, and mutated into the Peruvian TB variety which spread among Amerindians. The image below shows this process:


orthodox TB origin

An equally valid alternative is that, as outlined above, some archaic hominin took TB to America and the seals became infected in the New World, spreading the disease among seals around the globe. The Old World variants evolved separately for a very long period of time, and this explains why Amerindian and Old World TB lineages among humans are so different:


Origin of TB in America

Taking a look at the trees above, it is clear that Seal TB branched from Peruvian TB and not the other way around. Actually the scarcity of mummy samples may have rooted Peruvians after voles instead of rooting it on the main branch, where all animal strains converge with African human ones. Perhaps futuer samples will modify the branching sequence.


Why would Amerindians, of all humans be the only ones to have evolved their strain of TB from animals. Are Peruvians the only seal hunters in the world? or the only ones that got infected?


Then there is the issue of the Dates. The researchers calculated that all modern MTBC strains date back to only 6,000 years ago.


If so, how did it spread globally so fast? By that time we were well established across the whole world!


So this means that it arrived to America between 1 and 6 kya. So, how do they account for a well known case ot TB in a 17,000 year old bison found in North America?


The bison, dated to 17,870 +⁄-230 BP had "ancient DNA characteristic of the Mycobacterium tuberculosis complex, confirming the oldest proven case of tuberculosis" [7], This bison case indicates that this disease evolved as a zoonosis in America long before the 6 kya limit established by Bos et al. Perhaps bisons (like oryx, goats, voles and seals) caught their TB from pre-Columbian humans which were already living in America 17 kya.


Sources


[1] Kirsten I. Bos, et al., (2014). Pre-Columbian mycobacterial genomes reveal seals as a source of New World human tuberculosis, Nature, doi:10.1038/nature13591, Published online 20 August 2014
[2] Debby V. Cousins, et. al., (2003). Tuberculosis in seals caused by a novel member of the Mycobacterium tuberculosis complex: Mycobacterium pinnipedii sp. nov.. International Journal of Systematic and Evolutionary Microbiology doi: 10.1099/ijs.0.02401-0 IJSEM September 2003 vol. 53 no. 5 1305-1314
[3] Boritsch, E. C., Supply, P., Honoré, N., Seeman, T., Stinear, T. P. and Brosch, R., (2014). A glimpse into the past and predictions for the future: the molecular evolution of the tuberculosis agent. Molecular Microbiology. doi: 10.1111/mmi.12720
[4] Wirth T, Hildebrand F, Allix-Béguec C, Wölbeling F, Kubica T, et al. (2008). Origin, Spread and Demography of the Mycobacterium tuberculosis Complex. PLoS Pathog 4(9): e1000160. doi:10.1371/journal.ppat.1000160
[5] Gutierrez, M.C., Brisse, S., Brosch, R., Fabre, M., et?al., (2005). Ancient origin and gene mosaicism of the progenitor of Mycobacterium tuberculosis. PLoS Pathog 1: e5.
[6] Kiers A, Klarenbeek A, Mendelts B, Van Soolingen D, Koeter G., (2008). Transmission of Mycobacterium pinnipedii to humans in a zoo with marine mammals. Int J Tuberc Lung Dis. 2008 Dec;12(12):1469-73.
[7] Lee OY-C, Wu HHT, Donoghue HD, Spigelman M, Greenblatt CL, et al., (2012) Mycobacterium tuberculosis Complex Lipid Virulence Factors Preserved in the 17,000-Year-Old Skeleton of an Extinct Bison, Bison antiquus. PLoS ONE 7(7): e41923. doi:10.1371/journal.pone.0041923


Patagonian Monsters - Cryptozoology, Myths & legends in Patagonia Copyright 2009-2014 by Austin Whittall © 

Tuesday, April 22, 2014

Seals that live in freshwater


Florian Paucke (1719 - 1780) was a Jesuit missionary, born in Bohemia. He spent almost twenty years among the Mocoví natives in the missions of Paraguay between 1749 and 1767, when the Spanish crown siezed the properties of the Jesuit Order and deported its members back to Europe.


Paucke depicted the daily scenes of his mission, the natives and the animals of the surrounding regin in a series of naive watercolors. One of his paintings is reproduced below. It shows a group of natives hunting capivara or carpincho with spears. Around the border of the painting it also shows some aquatic riverine mammals:


river seal
Animals painted by R. Paucke late XVIII century. Paraguay.

During his stay in Southern South America, he encountered different creatures: Carpinchos, jaguars and, as shown in the image above, a very strange seal (red arrow).


Besides painting them, he wrote a book, "From here to there: a stay among the Mocoví Indians (1749-1767)" from which we took the following quote, describing an island on the Paraná River:


"On this tiny island there were many tigers [jaguars] , deer, wild pigs, ostriches [ñandu - Rhea], venison, leopards, [ocelote or Leopardus pardalis mitis] sea wolves and sea pigs (carpinchos) in large quantities....". [1]


He depicted one of the sea wolves, upper central part of the image above. Marked with a red arrow.


The caption above the creature reads: "Sea Wolf, Lobo Marino, enelaviagei ?". In German or English, Spanish and Mocoví ? respectively.


The words Sea and Marino, which is the Spanish word for "belonging to the sea" clearly identify this creature as a sea faring animal. Which is surprising since Paraguay is several hundred kilometers from the sea. The description of a Carpincho as a "Sea Pig" is also surprising since this is definitively a fresh water animal.


Taking a closer look at the "sea wolf", it appears to be very otter-like, with a long slim bushy tail, claws (no webbing between its toes), short ears and short snout. Yet it does not stand up on its legs, it lies on its belly, in a seal-like manner. Quite intriguing indeed!


The Paraná River was home to all the animals that he mentioned in his text, except for the "sea wolves". There were what the Spaniards called Lobitos de río, that is "Tiny River Wolves", which are otters. But he clearly states that they were sea going animals, perhaps implying that they were not otters, but seals.


The larger River wolves were the White-chested Otter (Lutra brasiliensis), the biggest otter in the world, currently found in the Amazon River basin, whose range in the past included the River Plate basin. [3]


But Sea wolf is the Spanish name for a type of seal, not an otter.


Paucke must have surely seen seals and sea wolves when he reached South America, on the islands at the entrance to the River Plate, in an estuarine salt - fresh water area. Even today they can be found on the rocks close to Cabo Polonio, Santa María and Punta del Este, in Uruguay. They may have been more abundant in the 1700s.


But what about the region further upstream, along the Parana and Uruguay Rivers, that flow into the River Plate?


Seals in the River Plate basin


I found a reference that states that phocidae and otariidae (seals) swam upstream along the Parana and Uruguay Rivers [2].


Another reference comes from Spanish naturalist Félix de Azara (1801) who mentions a river over 700 km (435 mi) from the sea, which flows into the Paraná River, as having "sea wolves":


"The Corrientes river is large and bigger than the Guayquiraró: it has sands and breeds many sea wolves, stingrays that sting with cruelty, yacarés [a South American croc] and many other fish." [4]


Sea Wolves are even mentioned in landlocked Salta province, over 1,300 km (800 mi) from Buenos Aires and the sea. Naturalist Holmberg cites Stuar who, in 1878, saw "Sea and river wolves" [5] in Salta. This should not be surprising since the Pilcomayo, Bermejo, Juramento rivers, which flow into the Paraguay and Paraná rivers, reach the Andean foothills in Salta. All of these rivers are part of the River Plate Basin. Seals could, in theory, swim upstream along any of them.


Sources


[1] Florian Paucke. Hacia allá y para acá: (una estada entre los indios Mocobíes, 1749-1767). Vol. 2. pp. 41. Editorial Nuevo Siglo, 2000.
[2] Anales de la Sociedad Científica Argentina, Volumes 127-128. 1939 pp. 295
[3]O. V. Aplin, (1894) Field-Notes on the Mammals of Uruguay. Zoological Society of London
[4] Félix de Azara, (1801). Memorias sobre el estado rural del Rio de la Plata en 1801: Demarcacion ..... Sanchiz, 1847. pp. 34
[5] Claudio Bertonatti, (1994). Los que se van: especies argentinas en peligro. Editorial Albatros, pp. 244.



Patagonian Monsters - Cryptozoology, Myths & legends in Patagonia Copyright 2009-2014 by Austin Whittall © 

Tuesday, October 12, 2010

Long necked seals in South America

 
size comparison man vs. long necked seal
Size comparison Long Necked Seal and man.
Adapted from [2] by Austin Whittall

There is a fossil seal, the Acrophoca longirostris (the second part of its name means 'long face' in Latin), which lived in the Pacific Ocean by the coast of Peru and Chile during the Miocene and Pliocene periods (23.3 to 2.5 Million years ago). It has been described as a “swan-necked” seal.

As most 'lake monsters' are described as having 'swan necks', this seal if still alive, would be the ideal candidate to fill in the lake monster's shoes. Lets get the facts:

Swan-necked seals

First the bad news: according to paleozoologist Darren Naish, they were not so long-necked; thought they would “have looked longer in the neck than any extant seal”.[1] These were not mammalian "plesiosaurs".

However Acrophoca had longer cervical vertebrae and a cervical column (neck) than modern extant seals.

Their neck measured 32.9 cm (or approx. 1 ft 1 in), while regular monachine seals’ necks are about 21.8 – 24.9 cm (8.6 – 9.8 in.). To express this in another way, the neck of these Acrophoca represented 21% of the length of their vertebral column while in other terrestrial carnivores and seals it is about 17-19%. Not much of a difference.

Based on this, Naish concludes that “sadly, ‘swan-necked seal’ really is a bit of an exaggeration”.[1]

Regarding its placement within the “seal” family it is a hot topic among seal experts and some have suggested that it is a lobodontin and as such belongs to the group that includes the leopard seal (Hydrurga), the crabeater seal (Lobodon) and Ross’ seal (Ommatophoca).

If this was the case, we should look at these living lobodontins to get an idea of their behavior and appearance. Leopard seals are big carnivores (males can measure up to 3.3 m long and weigh close to 450 kg -11 ft and 1,000 lbs.) It is the top predator in its environment with formidable jaws and canine teeth 2.5 cm (1 in.) long. It feeds on penguins, squid and seals of other species.

Naish and Stig Walsh described some remains of Acrophoca discovered in Chile in 2002, which had longer skulls than the A. longirostris. Perhaps more fossils may indeed turn up and give us a clearer picture of this group of seals and its evolution.

From a cryptozoological point of view, this finding (which came from the same site as those of the "walrus", sea cows Odobenocetops, and the giant sea sloths, Thalassocnus) is very interesting, as a long-necked seal could readily explain many "lake monster" sightings in Patagonia.

Long-necked seals. Some facts

Besides the 'real' A. longirostris, there is another "long-necked" seal, one which despite being described by scientists in the seventeenth and eighteenth century, has not been seen again, and therefore remains a mystery. This creature as depicted in the images (above and below) had a very long neck unlike anything seen in other seals.

The image below (adapted from [2]) shows two seals, one, above is the enigmatic “Long neck’d Seal, or Sea Calf”, and the one below is “The common seal”. I have included a seal skeleton for comparison purposes [3]. But first, lets go to the story.

long necked seal
Long-necked seal and common seal, body and neck length comparison.
Adapted from [2] by Austin Whittall

James Parson wrote a paper in 1751 in which he described five “species” of Phoca, among them he mentioned a Dr. Grew’s “long neck’d seal” from an unknown locality. This peculiar seal was actually part of the Royal Society’s Museum, and as such it was included in a Catalog published in 1681, where it was described as follows:

From his nose end to his fore-feet, and from thence to his tail, are of the same measure [4]

Grew's original text long necked seal
Long-necked seal Dr. Grew's original text. From [4]

Also, “instead of his fore-feet, he hath rather fins; not having any claws thereon, as have the other kinds.” [4]

Parsons described a ‘young´specimen which measured 7.5 ft. (2,28 m) long. We ignore the size of an adult. However, as can be seen above, the specimen was 41% longer than the 'common' seal and its neck and head represented 43% of the total body length (which coincides with Grew's remarks of 50/50 relationship of nose to fore feet and tail to forefeet). In the common seal, the head plus neck is only 26% of the total body length. Indeed it is a very big "long-necked" seal.

What kind of seal was it? It is generally considered as either a mythical or an indeterminable species. its scientific name, as given by Dr. Shaw in his Zoology(1800) is Phoca longicollis or long-necked seal. [6]

Allen [6] contends that the shape of its front feet and its longer neck, make it an "Eared Seal", or an "Otaridae". However Fischer (1827) in his Synopsis) places it with the lobodontins: the Sea-Leopard of Weddell which is an Earless Seal or a "Phocidae".

Allen also asserts that its habitat though unknown must have been either the Cape of Good Hope or Southern South America because no seals from Australia or the North Pacific reached England before 1686. And states that it may have been a Sea-Lion (Otaria leonina).[6] These are "Otaridae" and have visible ears.

By the way,in 1670 Sir John Narborough explored Patagonia from Puerto Deseado on the Atlantic to Valdivia, in Chile, went through the Strait of Magellan twice and spent part of a winter at San Julián. He could have brought the seal with him. Before his voyage we can only mention Cavendish's and Drake's expeditions, but they were more interested in plundering Spanish riches than describing the native fauna.

The Patagonian link

So here we have an earless long-necked seal which may have lived in the Southern reaches of the South Atlantic Ocean, similar to the "sea lion" which can be found on the coasts of Patagonia.

We also have fossil evidence of a "swan necked" seal in Peru and northern Chile, which despite being far from Patagonia, places these creatures in the same part of the globe.

The "long necked" seal is described in Gronovius (1760) Bibliotheca as having a "capite lutrae",[7] that is "with an otter head" (Bold, mine). This detail combined with the possible geographic location, its long neck, lack of ears and size make it a likely candidate to embody our mysterious Patagonian iemisch or water tiger, or perhaps our Strait of Magellan Sea Monster.

Now the bad news: we should bear in mind however that iemisch had clawed paws and a long tail. the long-necked seal lacks both ("not having any claws"). So, perhaps some other species within the group could account for our iemisch.

Piling speculation on speculation we can also imagine that it may even have adapted to freshwater (like the landlocked Lake Baikal seals Pusa sibirica or those at lakes Ladoga adn Saimaa have done in Russia) and running upstream from the Atlantic or the Pacific Oceans, made its home and lived in the Patagonian lakes until quite recently. All this of course is wild guessing.

In my book, based on etymology and some comparisons of the words used by the Mapuches and different Tehuelche Groups to name seals and other aquatic animals, I came upon the possibility of a freshwater seal in Patagonia. Below is an excerpt from my book on this intriguing subject:

Text from Whittall book Patagonia Monsters. Copyrighted material
Excerpt from my book Monsters of Patagonia on freshwater Patagonian seals. Copyright 2010 by Austin Whittall.
seals, cryptids and fossils
Map showing sea lion, sea leopard, fossils of swan-necked seal and also Iemisch. Copyright 2010 by Austin Whittall.

Note: Above, the sea wolf (South American Sea Lion) is also known as Lobo Marino de dos pelos) Otaria flavescens. The "sea lion" mentioned by Allen (Lobo Marino de un pelo) or Otaria leonina is also known as Otaria Byronia.

Bibliography.

[1] Darren Naish, (2006). http://darrennaish.blogspot.com/2006/02/swan-necked-seals.html> target="_blank" title="External link">Swan-necked seals. Tetrapod Zoology. 04.02.06
[2] Darren, Naish, (2008).
The Long-necked seal, described 1751. Tetrapod Zoology. 25.09.2008. The image’s original source is Tab VI in: Parsons, J., (1751). A dissertation upon the Class of the Phocae Marinae. Philosophical Transactions 47, 109-122.
[3] Gaston Bonnier Squelettes de phoque et de dauphin
[4] Nehemiah Grew, (1681). Museum regalis societatis or a Catalogue et description of the natural and artificial rarities. W. Rawlins, Ed. pp. 95.
[5] Michael A. Woodley, Darren Naish and Hugh P. Shanahan, (2009). How many extant pinniped species remain to be described? Historical Biology: An International Journal of Paleobiology. 20(4):225-235.
[6] Joel A. Allen, (1974). History of North American pinnipeds. Ayer. pp 214.
[7] Gronovius Laurentius, (1760). Bibliotheca regni animalis atque lapidei, seu, Recensio auctorum et librorum : qui de regno animali & lapideo methodice, physice, medice, chymice, philologice, vel theologice tractant, in usum naturalis historiae studiosorum pp. 203

Further reading

Muizon, C. de, (1981). Les vertébrés fossiles de la formation Pisco (Pérou). Première partie: deux nouveaux Monachinae (Phocidae, Mammalia) du Pliocene de Sud-Sacaco. Travaux de l’Insitut Français d’Études Andines 22, 1-161.
Walsh, S. A. and Naish, D. (2002). Fossil seals from late Neogene deposits in South America: a new pinniped (Carnivora, Mammalia) assemblage from Chile. Palaeontology 45, 821-842.



Patagonian Monsters - Cryptozoology, Myths & legends in Patagonia
2010 International Year of Biodiversity Copyright 2009-2010 by Austin Whittall © 
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