Level 1 — Absolute Beginner
Scientists study how life on Earth began. They look at very old, tiny living things.
There are two old groups of life called bacteria and archaea. They are very different from each other.
A new study says life may have started two times, not just one time.
Bacteria and archaea got the same genetic code from an ancient ancestor. But each group became a living cell in its own way.
- ancient
- very, very old
- bacteria
- tiny, simple living things found almost everywhere
- archaea
- tiny, simple living things similar to bacteria but genetically different
- genetic code
- the instructions inside cells that control how living things grow
- ancestor
- an early living thing that later living things came from
- cell
- the smallest unit that makes up living things
- study
- careful research done to learn something new
- origin
- the beginning or starting point of something
Level 2 — Elementary
Scientists have found new evidence suggesting that free-living cells, the very first true living organisms, may have appeared on Earth twice, not just once, in two separate events.
The study focused on bacteria and archaea, the two oldest and most different branches of life on Earth. Both groups share the same basic genetic code, but that does not mean they became living cells in the same way.
By tracing how important enzymes evolved during the earliest split between bacteria and archaea, researchers found evidence that each group independently completed the final steps needed to become a free-living cell.
The scientists describe their idea as 'one origin of the genetic code, but two origins of life.' Before this transition, they believe life existed as a non-living, pre-cellular ancestor whose chemistry was partly powered by metals in its environment.
- organism
- any individual living thing
- evidence
- facts or information that help prove something is true
- branch
- a distinct group within a larger family or category
- enzyme
- a protein that speeds up chemical reactions inside living things
- evolve
- to change gradually over a long period of time
- independently
- separately, without depending on something else
- transition
- the process of changing from one state to another
- pre-cellular
- existing before true cells developed
Level 3 — Intermediate
A new study published in Science Advances presents evidence that free-living cells, the earliest true organisms capable of independent existence, may have emerged not once but twice on early Earth, through two separate evolutionary transitions.
The research, led by biologist Natalia Mrnjavac at the University of Dusseldorf, examined the deep evolutionary split between bacteria and archaea, the two most ancient domains of life. Although both domains inherited the same genetic coding system from a shared ancestor, the study argues they completed the transition to free-living cellular existence through distinct evolutionary paths.
By reconstructing the chemical network early cells relied on to synthesize essential biological components, and by tracing how key enzymes evolved along each lineage, researchers identified evidence of pioneer bacteria and pioneer archaea independently developing the machinery needed to survive outside the confines of a hydrothermal vent environment, where the last universal common ancestor is thought to have existed.
The team summarizes its conclusion as one origin of the genetic code but two origins of life. In this framework, the last universal common ancestor, often called LUCA, was not itself a fully independent living cell but rather a pre-cellular entity whose metabolism depended partly on environmental metal catalysts.
- domain
- the highest level of biological classification, above kingdom
- coding system
- the set of rules cells use to translate genetic information into proteins
- lineage
- a line of descent from an ancestor
- synthesize
- to produce a substance by combining simpler components
- hydrothermal vent
- a fissure on the ocean floor that releases geothermally heated water
- confines
- the limits or boundaries of a space or situation
- catalyst
- a substance that speeds up a chemical reaction without being consumed by it
- framework
- a basic structure of ideas used to understand or explain something
Level 4 — Advanced
A study published August 7 in Science Advances presents evidence that the transition to free-living cellularity, long treated as a singular evolutionary milestone, may in fact have occurred independently twice, once along the lineage leading to bacteria and once along the lineage leading to archaea.
Led by biologist Natalia Mrnjavac of Heinrich Heine University Dusseldorf, the research interrogates the deep evolutionary bifurcation separating the two prokaryotic domains, arguing that although both inherited an identical genetic coding system from a shared, more primitive ancestor, they subsequently completed the metabolic transition to autonomous cellular life via convergent but mechanistically distinct evolutionary trajectories.
By reconstructing the ancestral biochemical network responsible for synthesizing core cellular components, and by phylogenetically tracing the emergence of key enzymes across both domains, the researchers identified signatures consistent with pioneer bacterial and pioneer archaeal lineages each independently assembling the biochemical machinery required to sustain metabolism outside the geochemically buffered confines of a hydrothermal vent setting, the environment widely hypothesized to have hosted the last universal common ancestor.
The authors frame their conclusion succinctly as one origin of the genetic code but two origins of life, a formulation that recasts LUCA not as a fully autonomous free-living organism but as a pre-cellular entity whose metabolism remained partially contingent on environmental metal catalysis, a distinction the paper argues carries significant implications for how the earliest branches of the tree of life are reconstructed and interpreted.
- cellularity
- the state or condition of existing as an independent, self-contained cell
- bifurcation
- a division into two branches or parts
- prokaryotic
- relating to single-celled organisms, such as bacteria and archaea, that lack a membrane-bound nucleus
- convergent
- tending to arrive at the same or similar outcome from different starting points
- trajectory
- the path something follows over time as it develops
- phylogenetically
- in a manner relating to the evolutionary history and relationships among organisms
- geochemically buffered
- chemically stabilized by the surrounding rock and mineral environment
- contingent
- dependent on something else in order to occur or exist