Darwin's theory about coral reef atolls is fatally flawed
Scientists compile new evidence that atolls are formed by cyclic changes
in sea level
Date:
October 13, 2020
Source:
Rice University
Summary:
Charles Darwin's 1842 theory about the formation of ring-shaped
reefs, called atolls, is incorrect, but 'it's so beautiful,
so simple and pleasing' that it still appears in textbooks
and university courses, said a marine geologist. The accurate
description is more complicated, and biologists are hoping to set
the record straight.
FULL STORY ========================================================================== Marine geologist and oceanographer Andre' Droxler knows Charles Darwin's
theory about atolls is incorrect. But Droxler, who's studied coral
reefs for more than 40 years, understands why Darwin's model persists
in textbooks, university lecture halls, natural science museums and
Wikipedia entries.
========================================================================== "It's so beautiful, so simple and pleasing that everybody still teaches
it," said Droxler, who recently retired from Rice University. "Every introductory book you can find in Earth science and marine science still
has Darwin's model.
If they teach one thing about reefs or carbonates in marine science 101,
they teach that model." Droxler, a professor of Earth, environmental
and planetary sciences at Rice for 33 years, is hoping to set the
record straight with a 37-page, tour de force paper about the origins
of atolls. Published this month in the Annual Review of Marine Science,
the paper was co-authored by Droxler and longtime collaborator Ste'phan
Jorry, a marine geologist and oceanographer at the French Research
Institute for Exploitation of the Sea (IFREMER).
Darwin's theory about the formation of atolls was published in 1842,
six years after his legendary voyage aboard the British survey ship HMS
Beagle. A geologist by training, Darwin was keenly interested in the rocks
and landforms he encountered in his five years aboard the Beagle. The
ship's primary mission was surveying coastlines and hazards to navigation,
and the ship's orders included collecting detailed observations of the
tides and ocean depths around a coral atoll.
"They spent a lot of time mapping reefs because they were such hazards
to shipping," Droxler said of the Royal Navy. Atolls were particularly interesting and dangerous. Some were topped with low-lying islands
but many were jagged rings of coral-topped rock that sat just below
the water's surface, ready to rip the bottom out of unwary passing
ships. "They come out of the abyssal plain of the ocean to almost no
depth," Droxler said. "So they needed to know exactly where they were
located." The Beagle, like every Royal Navy vessel, carried charts with
the marked location of every known reef, and Darwin put these to use in
his 1842 paper.
==========================================================================
"He published a beautiful map that compiled all the known reefs on Earth," Droxler said. "It's amazing, when you compare satellite images of reefs
today versus his map. It's almost the same. It's unbelievably accurate."
But unlike navy maps that simply marked reefs as hazards to navigation,
Darwin systematically classified each into one of three categories. Those attached to land, he called fringing reefs. Those detached from land and separated by a lagoon were barrier reefs. The third category was atolls,
ring reefs that enclosed a central lagoon but no land.
At the time, geologists believed continents were steadily rising out
of the Earth and oceans were steadily sinking. Darwin noticed that both fringing and barrier reefs tended to surround volcanic islands, and he
reasoned reefs initially formed on the fringe of volcanic islands. When
the volcano died and slowly sank back into the ocean, the reef remained,
first becoming a separated barrier reef and eventually, after the volcano
sank entirely, an atoll.
Droxler said he's awed by Darwin's ability to synthesize all that was
known about reefs in his day and come up with such a simple, comprehensive
and compelling theoretical model. But beauty aside, Darwin could not have accurately predicted how atolls form because he lacked the key piece of information, Droxler said.
"Cyclic changes in sea level drive atoll formation," Droxler said. "Darwin
had no concept that sea level could go up and down, because glaciation
didn't become common knowledge until the 1860s." Droxler said the
simplicity of Darwin's classification system and theory could play
a role in its continued appeal. A more accurate description of atoll
formation has been around since the 1930s, but it is considerably more complicated and much of the evidence to support it is more recent, coming
in the past 40 years from dozens of scientific and oil industry drilling expeditions as well as from the compiled record of Earth's climate and
sea level history.
========================================================================== Today's atolls formed in the past 500,000 years, Droxler said, driven
by five wild swings in sea level that occurred every 100,000 years. In
each cycle, sea level rose and fell by 120 meters or more. But to fully appreciate how changing sea level created atolls, it helps to start much earlier, Droxler said.
"The Earth's climate has changed quite dramatically in the last 5 million years," he said. "From about 5 million years ago to 2.5 million years
ago, we had a rather warm climate that did not change very much, and sea
level remained relatively constant. At that time, the Earth was producing flat-topped banks where today we have atolls." Sea level rose steadily
but slowly, and the flat-topped banks that would give birth to atolls
were created by countless generations of corals and other sea creatures
that lived and died, adding their skeletons to the mineralized floor
of the shallow, flat-topped marine ecosystem. The flat-top banks grew
steadily, keeping pace with sea level until the warm period ended about
2.5 million years ago.
"The climate began to fluctuate into cycles," Droxler said. "There were alternate periods of warm and cold, but overall, the trend was that the
Earth's climate got colder and colder and colder, interrupted by short
warm swings." Throughout this period, ice caps were thickening. As ice accumulated, sea level fell, exposing the tops of the flat carbonate
banks, which rose out of the ocean like bleached stone mesas. When rain
fell atop the exposed banks, it slowly dissolved the carbonate, and
standing water sped up the process. Puddles and ponds gradually carved bowl-like depressions. And over 2 million years, this process turned
white mesas into ring-like towers with hollowed-out central depressions.
"Ice volume on Earth reached its initial maximum around 500,000-600,000
years ago, when a mile of ice covered Chicago, and New York was at the
southern edge of a massive ice sheet on North America, comparable to
modern Antarctica," Droxler said "There was so much ice in North America, Scotland, Scandinavia and Siberia that sea level was reaching 120 meters
to 130 meters below what it is today." The five dramatic swings in sea
level that occurred in the past half-million years were driven by Earth's ability to form large northern ice sheets, and by the sensitivity of
those ice sheets to slight climatic changes, like fluctuations in the
amount of sunlight landing in the far Northern Hemisphere due to slight
changes in the planet's orbit and tilt.
"Because these big ice sheets formed in North America, not on the pole,
but centered in relatively low latitude about 65 degrees north, they accumulated huge ice volumes that lowered sea level by more than 120
meters," he said. "But also, they were able to melt very quickly. And so
we observe, now, these cyclic high-amplitude swings of sea level. And
the first big swing was about at 450,000 years ago, when it went from
minus-135 meters to plus-10 meters of what we have today." During each
swing, the hollowed out flat-topped banks were resubmerged during warm
periods, when sea level rose near its highest level. During those periods,
as today, coral recolonized the highest parts of the eroded banks,
in particular along their raised outer rims.
"Now you're adding carbonate on to their raised rim, and you're creating
the modern atolls," Droxler said. "But this period of high sea level
doesn't last for more than 10,000-12,000 years, and it goes down again. So
now you are adding some reef on the rim, but then dissolving the lagoon
again when sea level retreats. So you are enhancing the morphology
even more with each cycle now, growing on the margin and dissolving in
the middle." Droxler's and Jorry's in-depth study contains dozens of illustrations, including some comparisons of Darwin's original drawings
with contemporary maps and satellite imagery. And the paper draws on
decades of marine geological data compiled from dozens of expeditions, including recent datasets acquired by both co-authors in the Indian
Ocean. Droxler said he and Jorry had discussed such a paper for years,
but it might not have happened without the 2020 pandemic.
Droxler moved to a remote ranch in Central Texas after retiring, and when
the pandemic shut down travel in March, he was faced with the prospect
of being there for some time.
"For years, Ste'phan had pushed me, saying we should publish this,
but you know, you always kind of do something else and something else,"
Droxler said.
"At the end of March, Ste'phan called me and said, 'I'm stuck in France,
at home, and you're stuck in the middle of the countryside in Mason
County. Let's write this paper.' And so that's what we did."
========================================================================== Story Source: Materials provided by Rice_University. Note: Content may
be edited for style and length.
========================================================================== Journal Reference:
1. Andre' W. Droxler, Ste'phan J. Jorry. The Origin of Modern Atolls:
Challenging Darwin's Deeply Ingrained Theory. Annual
Review of Marine Science, 2015; 13 (1) DOI:
10.1146/annurev-marine-122414-034137 ==========================================================================
Link to news story:
https://www.sciencedaily.com/releases/2020/10/201013105811.htm
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