For generations, scientists have grappled with the mystery of how life emerged on our planet. While the "primordial soup"—a watery environment filled with oxygen-free gases and chemicals—set the stage billions of years ago, it was missing the essential components required for biological evolution. Recent discoveries from the James Webb Space Telescope regarding the coldest ices in space have provided a breakthrough in understanding these origins.
The fundamental challenge in evolutionary biology is explaining the transition from a chemical-rich environment to the first living cells. Astronomer Professor Melissa McClure notes that Earth’s primordial soup lacked the "building blocks of life," which are the most basic biological and chemical units—such as oxygen and carbon—necessary to support living organisms. The theory suggests that Earth was not self-sufficient in its early stages; rather, these critical components arrived from outer space.
Professor McClure highlights a compelling theory: these essential elements were delivered to Earth via comets—"large bright balls of dirt and ice" that traverse the solar system. The hypothesis posits that as these comets collided with Earth billions of years ago, they scattered their icy contents across the planet. When these elements were subjected to environmental catalysts, such as a "lightning strike" (the bright flash of light produced by atmospheric electricity), they underwent transformative reactions.
The transformation from frozen water to life is a journey of molecular complexity. While ice itself is not a "biomolecule" (molecules like DNA found in living things), it acts as a chemical precursor. When ice mixes with carbon, it can form "complex organic molecules." In this scientific context, "organic" refers to matters related to living plants and animals, distinct from the common usage of "organic food" (food grown without artificial chemicals).
For instance, simple alcohols like methanol can act as building blocks. Once these organic molecules integrated into the primordial soup, they likely triggered a "chain reaction"—a series of chemical reactions where one change induces another. This cumulative process is believed to have eventually led to the development of the first living cells, paving the way for the complex biological life we see today.
The study of ice, once considered merely a cold curiosity, has become a cornerstone of astrobiology. By understanding how cosmic ice reacts with other elements to form complex structures, scientists are closer to solving the puzzle of our existence. As confirmed in the broadcast, water—composed of two hydrogen atoms and one oxygen atom (H2O)—is not just a life-sustaining liquid in our daily lives, but a vital link to the very dawn of life on Earth.