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World’s oldest fossils formed 4b years ago found in Canada

IF CORRECT, THE MICROFOSSI­LS OFFER THE OLDEST DIRECT EVIDENCE OF LIFE ON EARTH AND INSIGHT INTO ITS ORIGINS ON THE PLANET

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cientists say they have found the world’s oldest fossils, thought to have formed between 3.77 billion and 4.28 billion years ago.

Comprising tiny tubes and filaments made of an iron oxide known as haematite, the microfossi­ls are believed to be the remains of bacteria that once thrived underwater around hydrotherm­al vents, relying on chemical reactions involving iron for their energy.

If correct, these fossils offer the oldest direct evidence for life on the planet. And that, the study’s authors say, offers insights into the origins of life on Earth.

“If these rocks do indeed turn out to be 4.28 [billion years old] then we are talking about the origins of life developing very soon after the oceans formed 4.4 billion years ago,” said Matthew Dodd, the first author of the research from University College London.

With iron-oxidising bacteria present even today, the findings, if correct, also highlight the success of such organisms. “They have been around for 3.8 billion years at least,” said the lead author Dominic Papineau, also from UCL.

The team says the new discovery supports the idea that life emerged and diversifie­d rapidly on Earth, complement­ing research reported last year that claimed to find evidence of microbe-produced structures, known as stromatoli­tes, in Greenland rocks, which formed 3.7 billion years ago.

However, like the oldest microfossi­ls previously reported — samples from Western Australia dating to about 3.46 billion years ago — the new discovery is set to be the subject of hot debate.

The discovery of the structures, the authors add, highlights intriguing avenues for research to discover whether life existed elsewhere in the solar system, including Jupiter’s moon, Europa, and Mars, which once boasted oceans. “If we look at similarly old rocks [from Mars] and we can’t find evidence of life, then this certainly may point to the fact that Earth may be a very special exception and life might just have arisen on Earth,” said Dodd.

Published in the journal Nature by an internatio­nal team of researcher­s, the new study focuses on rocks of the Nuvvuagitt­uq supracrust­al belt in Quebec, Canada.

The rocks are some of the oldest in the world and are believed to have formed around underwater hydrotherm­al vents — a theory backed up by various chemical signatures hinting at a submarine formation, as well as the presence of structures such as pillow basalts that are formed when lava encounters water.

Long-standing hypothesis

“These rocks were of a period in time when we don’t know whether there was life,” said Dodd.

“If we believe the longstandi­ng hypothesis that life evolved from hydrotherm­al vents billions of years ago then these were the perfect rocks to look at for answering these questions.”

The authors say scrutiny of very thin sections of the ironcontai­ning quartz in which the fossils were found, together with an analysis of the minerals within them and microfossi­ls themselves, suggests the haematite structures were not formed by physical processes alone.

Instead, the authors write, “the tubes and filaments are best explained as remains of iron-metabolisi­ng filamentou­s bacteria, and therefore represent the oldest life forms recognised on Earth.”

Up to half a millimetre in length and half the width of a human hair, the filaments have a range of forms, from loose coils to branched structures with some apparently linked together through a central knob of haematite — structures, said Dodd, that are common to microbes known to have lived near deep sea vents.

“The microfossi­ls’ structures in themselves are almost identical, very similar, to microfossi­ls and micro-organisms we see in similar hydrotherm­al vent settings today,” said Dodd. Minerals linked to biological matter were also found with the tubes and filaments, the authors note.

But not everyone is convinced by the new study, not least Frances Westall, an expert on ancient fossil bacteria at the French national centre for scientific research. “The thing that bothers me most about these structures is the fact that they all seem to be extremely oriented. They are parallel to each other and microbes don’t grow parallel to each other,” she said.

Haematite structures

Westall said it remains possible that the haematite structures were formed as a result of the high temperatur­es and pressures experience­d by metamorphi­c rocks. What’s more, she points out, the newly discovered filaments are far larger than the oldest known well-preserved microbial filaments previously found in 3.33 billion-year-old rocks — a surprise given the lack of oxygen in the environmen­t in which the newly proposed fossils are thought to have originated.

“What I am not saying is that there could not have been life at 3.8 billion years ago,” Westall added. “But in rocks that have been so altered, like these have been, I think that morphologi­cal traces are unlikely to remain.”

Others, too, remain cautious, if more optimistic. David Emerson, a geomicrobi­ologist and expert in modern iron-oxidising bacteria at the Bigelow Laboratory for Ocean Sciences in the US said that the structures do not look like what would be expected from modern bacteria, but that he found it compelling that filaments are found in groups, suggesting a colony of microbes.

 ?? AP ?? This microscope image shows a filament attached to rock. The structures appear to be the oldest known fossils, giving new support to ideas about how life began, experts say.
AP This microscope image shows a filament attached to rock. The structures appear to be the oldest known fossils, giving new support to ideas about how life began, experts say.
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