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National & World

How two historic rifts sculpted a residing island

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Last updated: October 25, 2025 10:10 pm
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How two historic rifts sculpted a residing island
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Contents
Two Historic Rifts, One Exceptional IslandRivers That Redraw the LandRe-Creating an Island in MovementA Panorama That Gave Rise to LifeClasses From a “Quiet” ContinentWhy It IssuesAssociated Tales

Madagascar’s cliffs, rolling plateaus, and winding rivers weren’t formed by a single violent occasion. As an alternative, the island’s breathtaking panorama took kind by two huge tectonic rifts that occurred tens of thousands and thousands of years aside.

These shifts tilted the land, redirected rivers, and sculpted the island’s dramatic form — steep cliffs dropping into the Indian Ocean on the east and mild plains stretching towards the Mozambique Channel on the west. Collectively, these forces created not solely a placing panorama but additionally one of the crucial biologically wealthy ecosystems on Earth.

Two Historic Rifts, One Exceptional Island

Lengthy earlier than Madagascar stood alone within the ocean, it was a part of the traditional supercontinent Gondwana. About 170 million years in the past, the primary huge tectonic break separated it from Africa. The crust folded upward, forming an enormous western escarpment, and rivers flowed east towards the Indian Ocean, slicing deep valleys right into a rising plateau.

The escarpment mountains of western Madagascar. The panorama is dominated by remoted remnant peaks, witnesses of an historic plateau that has been deeply incised by massive river techniques over thousands and thousands of years. (CREDIT: Romano Clementucci / ETH Zurich)

Roughly 80 million years later, one other rift opened — this time between Madagascar, India, and the Seychelles. The island tilted once more, however in the other way. Land that when sloped east started to dip west, reversing river circulate and shifting the island’s predominant watershed towards the east. The towering western escarpment eroded into scattered highlands, whereas a brand new, steep cliff line rose alongside the japanese coast.

“The water divide is the important thing to the geography of Madagascar,” stated Romano Clementucci, a geologist at ETH Zurich and lead creator of the brand new Science Advances examine. “Every time the island tilted, the road separating rivers flowing east or west jumped throughout the island, altering how water and erosion formed the land.”

Rivers That Redraw the Land

These tilts didn’t simply bend river paths — they rebuilt the island’s floor. Outdated riverbeds have been deserted, new valleys have been carved, and a few rivers even reversed course. The result’s placing: steep cliffs and quick rivers within the east, mushy slopes and large plains within the west.

Utilizing high-resolution satellite tv for pc imagery, erosion information, and laptop fashions, Clementucci’s group mapped Madagascar’s gradual transformation in outstanding element. They used cosmogenic isotopes like beryllium-10 (^10Be), which construct up in rocks uncovered to cosmic rays, to measure how shortly erosion reshaped the island over thousands and thousands of years.

The escarpment mountains of eastern Madagascar, shaped by a tropical climate and steep topography. The escarpment has been retreating inland since the second rifting event (90 Ma) and today acts as a natural barrier to rainfall, marking the western limit of the island’s humid eastern rainforests. (CREDIT: Romano Clementucci / ETH Zurich)

The escarpment mountains of japanese Madagascar, formed by a tropical local weather and steep topography. The escarpment has been retreating inland because the second rifting occasion (90 Ma) and immediately acts as a pure barrier to rainfall, marking the western restrict of the island’s humid japanese rainforests. (CREDIT: Romano Clementucci / ETH Zurich)

Their outcomes present erosion stays most intense alongside the japanese escarpment. Within the south, cliffs retreat about 170 meters per million years. However within the north — a extra tectonically energetic space — the tempo quickens to just about 3,800 meters per million years. By comparability, the central plateau erodes slowly, solely about seven meters per million years, preserving remnants of Madagascar’s historic floor.

Re-Creating an Island in Movement

To verify their findings, researchers ran laptop simulations of Madagascar’s geologic previous. Every rifting occasion induced one aspect of the island to sink, making a new escarpment that progressively eroded inward. Throughout the second rift, the lean reversed, and your complete panorama reshaped once more.

The mannequin efficiently recreated Madagascar’s trendy options — the sharp japanese escarpment, the light western slope, and the “knickpoints,” or sudden drops in river elevation, seen immediately. These knickpoints are relics of historic modifications within the island’s drainage system.

And the story isn’t over. Volcanic and tectonic forces proceed to reshape Madagascar immediately, particularly in areas just like the Ankaratra volcanic subject and the Alaotra–Ankay Graben. These energetic zones nonetheless alter river programs, sink elements of the plateau, and produce gentle earthquakes — indicators that the island’s crust is much from quiet.

Morphostructural features of Madagascar and topographic escarpments. (CREDIT: Science Advances)

Morphostructural options of Madagascar and topographic escarpments. (CREDIT: Science Advances)

A Panorama That Gave Rise to Life

Madagascar’s unbelievable biodiversity — from lemurs and chameleons to baobabs — has lengthy been credited to isolation and local weather. Clementucci’s examine provides one other key issue: geology.

The group discovered a robust hyperlink between erosion charges and plant range alongside the japanese escarpment. The place slopes are steeper and rivers shift extra typically, plant species multiply — from roughly 1,200 within the south to greater than 2,000 within the north. Rainfall alone can’t clarify the distinction. As an alternative, the land’s fixed reshaping appears to have fragmented habitats and pushed species to evolve individually.

In essence, Madagascar’s shifting terrain acted like a “speciation pump.” When rivers modified course or valleys deepened, populations grew to become remoted and started to evolve on their very own. That course of helped produce the island’s astonishing biodiversity — the place greater than 90% of mammals and reptiles and over 80% of vegetation exist nowhere else on Earth.

“Our analysis exhibits that historic tectonic forces rejuvenated Madagascar’s floor,” Clementucci stated. “By tilting the island and shifting its predominant rivers and mountains, these forces created fragmented environments the place species advanced in isolation — particularly alongside the island’s placing japanese escarpment.”

Channel steepness (ksn), normalized distance (χ) map, and linear geomorphic features defining remnant escarpments on plateau edges in central and northern Madagascar. (CREDIT: Science Advances)

Channel steepness (ksn), normalized distance (χ) map, and linear geomorphic options defining remnant escarpments on plateau edges in central and northern Madagascar. (CREDIT: Science Advances)

Classes From a “Quiet” Continent

Madagascar’s story challenges the idea that so-called “passive” continental margins — like these in Brazil, South Africa, or Australia — are geologically steady. Even after rifting ends, gradual however regular actions can maintain reshaping landscapes and influencing ecosystems.

This understanding can also clarify why different “historic” islands host a lot biodiversity. Even refined geological shifts, unfold over thousands and thousands of years, can form how species kind, adapt, and survive.

Why It Issues

By linking geology and biodiversity, this examine exhibits how deeply life is tied to a altering Earth. The residing and non-living elements of our planet evolve collectively — one shaping the opposite over time.

For conservationists, the findings emphasize defending whole landscapes, not simply remoted habitats. The identical tectonic and erosional forces that when created range may, if disrupted, completely fracture ecosystems.

As Madagascar continues to maneuver and put on away, it stands as residing proof that the Earth is rarely actually nonetheless — it tilts, breathes, and builds life within the course of.

Analysis findings can be found on-line within the journal Science Advances.

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