Showing posts with label Mascarine Islands. Show all posts
Showing posts with label Mascarine Islands. Show all posts

Saturday, 4 February 2017

Understanding the origins of the Giant Tortoises of the southwest Indian Ocean.

Giant Tortoises were once numerous on both continental and island landmasses, though most of the continental species became extinct in the Late Pleistocene and most of the island species in the Holocene, all of which extinctions have been linked to a single cause, the spread of Modern Humans around the globe. Today only two species of Giant Turtle remain, Chelonoidis nigra in the Galapagos and Aldabrachelys gigantean on Aldabra Island, a small coral atoll in the Indian Ocean, about 400 km north of Madagascar and about 600 km west of the east coast of Africa. The southwest Indian Ocean was formerly somewhat of a hotspot for Giant Tortoise diversity, with at least two species on Madagascar, plus two species on Mauritius, two species on Rodrigues and one on La Réunion.

An Aldabra Giant Tortoise, Aldabrachelys gigantean. Wikipedia.

How the Tortoises got to these islands is somewhat of a mystery; the ancestors of the Giant Tortoises of Madagascar presumably reached there while Madagascar was still attached to the Gondwanan supercontinent in the Cretaceous, or floating there from Africa in the Eocene or earlier, when prevalent currents in the southwest Indian Ocean ran from Africa towards Madagascar (Giant Tortoises seldom voluntarily swim, but float well and can survive long periods at sea, so Tortoises swept out to sea by, for example, flood events, have a reasonable chance of surviving till they reach a new landmass). However from the end of the Eocene onwards, prevalent currents in the southern Indian Ocean have all flowed east-to-west, making it highly unlikely that a Tortoise could drift from island to island in this direction without swimming hundreds of kilometres against the current. This makes the presence of Tortoises on smaller Indian Ocean islands hard to understand, as all of these islands have appeared since the end of the Eocene; Mauritius having first appeared about 8.9 million years ago, La Réunion about 2.2 million years ago and Rodrigues about 1.5 million years ago, while Aldabra, with a highest point only eight meters above sea level, has emerged from and been covered by the sea several times during the past million years, and is thought to have been continuously exposed only for the last 80 000 years.

In a paper published in the Journal of Biogeography on 11 March 2016, Lucienne Wilmé of the School of Agronomy at the University of Antananarivo, and the Missouri Botanical Garden's Madagascar Research & Conservation Program, Patrick Waeber of Forest Management and Development at the Swiss Federal Institute of Technology Zurich, and Joerg Ganzhorn of Animal Ecology and Conservation at Hamburg University, discuss the possibility that Giant Tortoises may have reached the islands of the southwest Indian Ocean not by drifting on ocean currents, but by active movement by Humans.

The earliest Humans arrived on Madagascar about 4000 years ago. These were fairly advanced, already having metal tools, and are thought to have come from Southeast Asia, with subsequent waves of arrivals from Arabia, Africa and eventually Europe. People from Southeast Asia began making ocean-crossing journeys about 45 000 years ago, hopping from island-to-island to reach remote parts of the Indian and Pacific Oceans, as well as the continent of Australia, and possibly South America.

During this process they introduced many animals and plants to the islands they visited, such as Pacific Rat, Rattus exulans, Chicken, Gallus gallus, Sweet Potato, Ipomea batatas, Taro, Colocasia sp., and Banana, Musa sp.. Giant Tortoises have been considered to be excellent eating by most cultures that have encountered them (most species being wiped out by encounters with hungry European sailors in the eighteenth and nineteenth centuries). It is not, therefore, an outlandish idea that early navigators might, having encountered Giant Tortoises on Madagascar, have moved small populations to other islands in the Indian Ocean as a potential food source, either for colonists living permanently on the islands or for other sailors visiting the islands (European sailors introduced Sheep and Goats to many small islands for similar reasons).

Giant land tortoises, geology, oceanography, archaeology of the south-western Indian Ocean, and distance between islands and ocean surface currents prevailing since the closure of the Tethys Ocean. (SdM = Saya de Malha; N = Nazareth; StB = St Brandon; LGM = Last Glacial Maximum). Wilmé et al. (2016).

Wilmé et al. note that no ancient archaeological sites have been found on the Mascarine Islands (Mauritius, Rodrigues and La Réunion), which would seem to present a problem to this theory. However they note that sealevels have varied considerably over the past few thousand years, which has a particularly strong effect on small islands, so that it is quite possible ancient coastal settlements around these islands may have been covered by rising seas.

More problematically, the Tortoises of the southwest Indian Ocean are considered to have belonged to eight different species, which seems unlikely if they were all transplanted from Madagascar (where only two species are known). Wilmé et al. do not dispute the current accepted taxonomy of these species, however they do observe that species isolated on small islands are known to evolve rapidly, and that Tortoises, which produce particularly large clutches of young, are potentially more prone to this effect than slower breeding groups such as Birds or Mammals.

See also...

http://sciencythoughts.blogspot.co.uk/2016/10/mendozachelys-wichmanni-new-species-of.htmlhttp://sciencythoughts.blogspot.co.uk/2016/10/paiutemys-tibert-new-species-of.html
http://sciencythoughts.blogspot.co.uk/2015/12/xiaochelys-ningchengensis-sinemydid.htmlhttp://sciencythoughts.blogspot.co.uk/2015/11/turtle-remains-from-late-miocene-to.html
http://sciencythoughts.blogspot.co.uk/2015/10/turtle-eggs-from-late-cretaceous-of.htmlhttp://sciencythoughts.blogspot.co.uk/2015/10/pappochelys-rosinae-proto-turtle-from.html
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Thursday, 24 September 2015

Stick Insects of the Mascarene Islands.

The Mascarene Islands, Mauritius, Réunion and Rodrigues, lie in the western Indian Ocean, to the east of Madagascar and to the south of the Seychelles. They form part of a chain of biodiversity hotspots across the eastern Indian Ocean, where many islands and island groups have developed unique faunas and floras seen nowhere else. However, while Madagascar and the Seychelles are continental fragments left over from the breakup of Gondwana and started as islands with some unique fauna, the Mascarene Islands are of volcanic origin, formed by hotspot volcanism in a similar way to Hawaii or the Canary Islands, and all of the flora and fauna there must have reached the islands since they first rose above the waves, about 8-10 million years ago in the case of Mauritius, the oldest and largest of the islands.

Much of the fauna of the Mascarenes, shows a close affinity with that of Madagascar, the largest landmass in the southeast Indian Ocean and only 700 km from Mauritius. Mascarene Groups such as Day Geckos, Slit Eared Skinks, Giant Tortoises, Land Snails and Orb Spiders have all been shown to have originated from Madagascar. Other animals have been shown to be of Indo-Pacific origin, having apparently descended from animals that crossed the 5600 km of open-ocean from Australia or 7000 km from New Guinea. This group includes the famous but extinct Dodos and Solitaires, Skinks of the genus Leilopisma and Geckos of the genus Nactus.

The Stick Insects, Phasmatodea, of the Mascarenes present a unique problem to biogeographers, as they include members of four different subfamilies and one species of uncertain origin, apparently implying repeated colonization of the islands by members of different Stick Insects from different areas. Given the remoteness of the Mascarene Islands, this would be implausible for a group of flying, wide-ranging Insects, and is highly unlikely for Stick Insects, which have only very weak flying abilities, being able to slow their descent when falling from a tree, but not to make long, trans-oceanic migrations.

In a paper published in the journal BMC Evolutionary Biology on 16 September 2015, Sven Bradler of the Johann-Friedrich-Blumenbach-Institute of Zoology andAnthropology at the Georg-August-University Göttingen, Nicolas Cliquennois of the Collège français in Antsirabe, Madagascar and Thomas Buckley of Landcare Research, the School of BiologicalSciences at The University of Auckland and the Allan Wilson Centre, describe the results of a genetic study of the origin of Mascarene Stick Insects, which included data from 120 species of Stick Insects from around the globe, including seven species from Mauritius and three from Réunion (the single described Stick Insect species from Rodrigues, Xenomaches incommodus, is thought to be extinct, and no material was available for inclusion in the study).

Mascarene stick insects. (a) Couple of Apterograeffea reunionensis (Platycraninae) from Réunion. (b) Male of Epicharmus marchali (Xeroderinae) from Mauritius. (c) Female of Rhaphiderus spiniger (Tropidoderinae) from Réunion. Bradler et al. (2015).

Bradler et al. found that, contrary to expectations, all of the Mascarene Stick Insects belonged to a single lineage within the Lanceocercata, an Australasian group, having split from their closest Australian relatives about 27.15 million years ago, and with all the Mascarene Island Stick Insects having shared a last common ancestor that lived about 22.03 million years ago. The group has subsequently diversified into a number of forms that closely resemble members of other groups through convergent evolution, i.e. evolving the same traits to deal with similar ecological problems. For example, the Mascarene genus Apterograeffea has been considered to be a member of the Platycraninae (Coconut Stick Insects), closely resembling members of this group due to also having greatly enlarged cheeks, which support extra muscles which support the mandibles when chewing on tough foliage, while the Mauritian Epicharmus has been assigned to the Xeroderinae, resembling several members of this group with which it shares the habit of living on tree bark.

Chronogram of the sampled stick insect specimens with taxa distributed across the Indian Ocean highlighted in tones of red. Numbers at nodes indicate bootstrap values (left) and clade posterior probabilities (right); grey bars show 95 % highest probability density. Circled numbers refer to fossil calibration points: (1) Renphasma, (2) Eophasma, (3) fossil Malacomorpha, (4) fossil Clonistria. Abbreviations: Pl, Pliocene; Qu, Quaternary. Bradler et al. (2015).

This timescale is slightly problematic for the colonisation of the Mascarene Islands, as it requires the Stick Insects to have separated from their Australian relatives and begun diversifying into newly available niches considerably before the origin of the islands.

However, the Mascarene islands are of volcanic origin, the latest in a chain of islands formed by the movement of a volcanic hotspot, the Réunion Hot Spot, moving southwards across the Indian Ocean. Volcanic hot spots are formed where deep plumes of hot magma rising up from the Earth's interior intersect with the tectonic plates on the surface of the planet. Since these plumes originate deep within the mantle, their movement at the surface is independent of the movement of the tectonic plates. This means that while the currant Mascarene Islands, Mauritius, Réunion and Rodrigues, are quite young, a chain of previous islands, now sunken beneath the seas, extends northwards from them along the line of the volcanic hotspot.

Bradler et al. reason that the Mascarene Island Stick Insects could have originally colonised one of these sunken islands, most probably Siant Brandon, which lies 385 km to the northeast of Mauritius and which first emerged from the sea about 31 million years ago, or Nazareth Bank, slightly to the north of Saint Brandon, which first emerged about 35 million years ago, and subsequently colonised the current Mascarene Islands from these now sunken 'stepping stones', possibly via the smaller uprisings of Baissac Bank and Soudan Bank.

Dispersal scenario of Mascarene stick insects superimposed on a map of the Indian Ocean. (a) Current map of the Indian Ocean. (b) Enlarged view of Mascarene plateau. Red arrows indicate postulated colonisation events: The ancestral Mascarene stick insect arrived on currently submerged islands located to the North of Mauritius followed by a radiation and at least three (maximal six) independent dispersals to Mauritius and another three dispersals to Réunion, most likely facilitated by ocean currents. Bradler et al. (2015).

See also...
http://sciencythoughts.blogspot.co.uk/2015/05/eruptions-on-piton-de-la-fournaise.htmlEruptions on Piton de la Fournaise.
The Observatoire Volcanologique du Piton de la Fournaise reported a sharp rise in sulphur dioxide emissions from Piton de la Fournaise, a shield volcano which forms much of the eastern part of Réunion...
http://sciencythoughts.blogspot.co.uk/2015/05/syzygium-pyneei-new-species-of-myrtle.html


Syzygium pyneei: A new species of Myrtle from Mauritius. 
The genus Syzygium is the largest within the Myrtle family, Myrtaceae, with over 1200 described species from across the tropical and subtropical regions of the Old World, including fifteen previously described species from Mauritius.


http://sciencythoughts.blogspot.co.uk/2015/02/eruptions-on-piton-de-la-fournaise.htmlEruptions on Piton de la Fournaise, Réunion Island.                                          On Wednesday 4 February 2014 the Observatoire Volcanologique du Piton de la Fournaise recorded 180 Earthquakes between 4.00 and 9.00 am, on Piton de la Fournaise, a shield volcano which forms much...
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Sunday, 23 March 2014

A new species of Sweeper from the Comoro Islands.

Sweepers (Pempheridae) are small nocturnal Fish found in the Western Atlantic and Indo-Pacific. They are members of the Perch order, Perciformes, with deeply keeled flattened bodies and large eyes. Some species are eaten and some others caught for use in aquaria. 

In a paper published in the journal Zootaxa on 21 March 2014, Randall Mooi of the Manitoba Museum and the Department of Biological Sciences at the University of Manitoba and John Randall of the Bishop Museum in Honolulu describe a new species of Sweeper from the Comoro Islands.

The new species is placed in the genus Pempheris and given the specific name bexillon, meaning banner or flag in Greek, a reference to the brightly coloured dorsal fin of the new species. Pempheris bexillon is described from 11 specimens caught around the Comoro Islands, and a further 12 specimens from around the Mascarine Islands and Madagascar, at depths of less than 100 m. It is a 129-151 mm Sweeper with a distinctive yellow and black dorsal fin.

Pempheris bexillon in left lateral view. Mooi & Randall (2014).


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