Eight ingredients for life in space (2024)

By studying how humans, plants, animals and microbes survive and thrive on Earth, scientists have identified key ingredients that appear to be essential for life to evolve.

For generations, scientists have been scouring our galaxy for evidence of life on other planets. They are searching for a specific set of circ*mstances and chemicals to come together in the right place, at the right time.

Dr Anne Jungblut, a specialist in life living in extreme conditions, and Dr Paul Kenrick, a specialist on the early evolution of life, explain what they are looking for.

1. Water

Eight ingredients for life in space (1)

Almost all the processes that make up life on Earth can be broken down into chemical reactions - and most of those reactions require a liquid to break down substances so they can move and interact freely.

Liquid water is an essential requirement for life on Earth because it functions as a solvent. It is capable of dissolving substances and enabling key chemical reactions in animal, plant and microbial cells.

Its chemical and physical properties allow it to dissolve more substances than most other liquids. Other characteristics that make it a good habitat for life are its heat conduction, surface tension, high boiling and melting points, and its ability to let light penetrate it.

Anne said, 'As water plays such an essential role in life on Earth, the presence of water has been vital in the search of other habitable planets and moons'.

2. Carbon

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Many complex molecules are needed to perform the thousands of functions sustaining complex life. Carbon is the simple building block that organisms need to form organic compounds such as proteins, carbohydrates and fats.

Carbon's molecular structure allows its atoms to form long chains, with each link leaving two potential bonds free to join with other atoms. It bonds particularly easily with oxygen, hydrogen and nitrogen.

The free bonds can even join with other carbon atoms to form complex 3D molecular structures, such as rings and branching trees.

Carbon molecules are also strong and stable, so they are perfect to build a body with.

Anne said, 'Carbon is one of the most abundant chemical elements on Earth and a major part of all living organisms. Therefore one working hypothesis is that life on other planets might also be carbon-based.'

3. Nitrogen

Eight ingredients for life in space (3)

Carbon is a fundamental component of organic compounds, but it can't do it alone. The complex proteins required for life are built up from smaller compounds called amino acids - simple organic compounds that contain nitrogen.

Nitrogen is also needed to make DNA and RNA, the carriers of the genetic code for life on Earth.

Many bacteria can convert nitrogen from the atmosphere into a form that is used in living cells.

Anne said, 'Plants cannot use atmospheric nitrogen. They rely on ammonium and nitrate created by bacteria in the soil and water, and animals obtain it through their food.

'Finding biochemically usable nitrogen could be a big clue for biological activity on another planet.'

4. Phosphorus

Eight ingredients for life in space (4)

Phosphorus is a key component of adenosine triphosphate (ATP), an organic substance that acts as life's molecular unit of currency.

ATP transports chemical energy around the body's cells, powering nearly every cellular process that requires energy.

Phosphorus is a vital element in cell membranes, the layer surrounding the inside of cells that controls the movement of substances in and out.

And like nitrogen, phosphorus is necessary to create DNA and RNA.

Anne said, 'The phosphate group acts like glue in DNA, so the bodies of living organisms would not work without it'.

5. Sulphur

Eight ingredients for life in space (5)

Sulphur is part of most biochemical processes on Earth, and most enzymes cannot function without it. It is also a component of many vitamins and hormones.

In the absence of light and oxygen, it is possible to use sulphur as an energy source. Bacteria that live under severe environmental conditions are called extremophiles and have been found to gain their energy for growth from sulphur and hydrogen alone.

Anne said, 'Some micro-organisms are able to grow under extreme conditions such as permanently frozen lakes, deep-sea hydrothermal vents, high radioactive radiation and hypersalinity.

'They expand our understanding of the capability of some life forms to resist extreme stress. This helps us to understand how habitable other planets might be.'

6. Luck

Eight ingredients for life in space (6)

Having all the right chemicals on the same planet seems fortunate. And Earth –a tiny planet in the middle of an enormous universe – is lucky to have enough of the right chemicals to support a vast abundance of life.

Dr Paul Kenrick, a Museum palaeobotanist, said, 'Over time, major catastrophes such as impact by asteroids and massive volcanic eruptions have wiped out many species.

'However, the gaps created afforded opportunities for the survivors to flourish. These accidents along the road mean chance has a huge role in shaping our destinies.'

7. Time

Eight ingredients for life in space (7)

The development of complex life takes billions of years, and there’s no shortcut in the journey from single-celled organisms to complex life.

Earth is 4.5 billion years old, but in its earliest stages it was far too hot to support life. The oldest fossil evidence of life comes from rocks that are 3.4 billion years old. It took a long time to evolve plants and animals from single-celled organisms.

It is possible that life exists on other planets - but it is likely such life would have a lot of evolutionary catching up to do.

Paul, explaining why it took complex life so long to form, said: 'The key building block of life is the cell, with its complex genetic and biochemical systems. Animals and plants are all made of cells, so cells had to evolve first.

'To make tissues and organs, cells need to multiply, specialise in function, and co-operate. The evolution of these basic building blocks and their integration took time.

'Larger organisms require even more specialised and integrated cellular systems. The fossil record tells us that this took billions of years.'

8. Location

Eight ingredients for life in space (8)

Earth falls into the Goldilocks zone, meaning it is just the right distance from the Sun: not too hot or too cold to have liquid water on the surface.

Astronomers are searching for planets that are a similar distance from their own host stars.

Life needs an energy source to power growth - either the right amount of light from a star or chemically generated energy. Life also needs protection from certain wavelengths of solar radiation. Exposure to ultraviolet B damages DNA, but this wavelength is mostly absorbed by the ozone layer.

Paul said, 'In the search for life in the solar system, one strategy is to follow the water. Liquid water may exist below the dry surface of Mars and the frozen surface of Jupiter's moon Europa. The search for life has broadened to consider worlds far from the Sun.'

We hope you enjoyed this article…

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Every year, more people are reading our articles to learn about the challenges facing the natural world. Our future depends on nature, but we are not doing enough to protect our life support system. Pollution has caused toxic air in our cities, and farming and logging have wreaked havoc on our forests. Climate change is creating deserts and dead zones, and hunting is driving many species to the brink of extinction. This is the first time in Earth's history that a single species - humanity - has brought such disaster upon the natural world. But if we don't look after nature, nature can't look after us. We must act on scientific evidence, we must act together, and we must act now.

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Eight ingredients for life in space (2024)

FAQs

What is needed for life in space? ›

The most important parameter for Earth-like life is the presence of liquid water, which directly depends on pressure and temperature. Temperature is key both because of its influence on liquid water and because it can be directly estimated from orbital and climate models of exoplanetary systems.

What are the main ingredients in the recipe for life for a habitable planet? ›

Along with water, life as we know it also needs certain chemical elements – the building blocks of life – including carbon, hydrogen, nitrogen, oxygen, phosphorus, and sulfur. These elements are common in the universe and make up 98% of living matter on Earth by combining to form organic molecules essential to life.

What are the requirements for life to exist on Earth? ›

What makes the Earth habitable? It is the right distance from the Sun, it is protected from harmful solar radiation by its magnetic field, it is kept warm by an insulating atmosphere, and it has the right chemical ingredients for life, including water and carbon.

What are the basic requirements of life? ›

Life as we know it requires biogenic elements, a source of energy, liquid water, and a suitable, reasonably stable environment for evolution to take place.

What are 5 things you need to survive in space? ›

To travel in space the basic requirements for human survival are exactly the same as those requirements on Earth - air, water and food. A human needs a balanced diet containing enough energy for each day's activities, and a suitable environment.

What are the elements of life in space? ›

Eight ingredients for life in space
  • Water. Water functions as a solvent, allowing key chemical reactions to take place © Triff/Shutterstock.com. ...
  • Carbon. Diamonds are an allotrope of carbon. ...
  • Nitrogen. Nitrogen is needed to make DNA. ...
  • Phosphorus. ...
  • Sulphur. ...
  • Luck. ...
  • Time. ...
  • Location.

What is a basic ingredient of life? ›

This video excerpt from NOVA explains what astrobiologists consider to be the three basic ingredients of life—water, organic compounds, and energy.

What is the most basic and key ingredient for life? ›

This video excerpt from NOVA explains what astrobiologists consider to be the three basic ingredients of life—water, organic compounds, and energy. Although Earth has water and energy, scientists are trying to learn how organic molecules got to our planet.

What 3 ingredients are essential to forming the earliest life on Earth? ›

What are the ingredients of life on Earth? The recipe consists of a steady energy source, organic compounds and water. Sunlight provides the energy source at the surface, which drives photosynthesis. On the ocean floor, geothermal energy supplies the chemical nutrients that organisms need to live.

How many years will life exist on Earth? ›

But life on Earth will end much, much sooner than that. Earth will become unlivable for most organisms in about 1.3 billion years due to the sun's natural evolution, experts told Live Science.

Could life evolve in space? ›

The creation and distribution of organic molecules from space is now uncontroversial; it is known as pseudo-panspermia. The jump from organic materials to life originating from space, however, is hypothetical and currently untestable.

What must a planet have to be habitable? ›

The standard definition for a habitable planet is one that can sustain life for a significant period; based on our solar system, life requires liquid water, energy, and nutrients.

What are the 9 requirements of life? ›

Here we discuss essential requirements for the first emergence of life on our planet and propose the following nine requirements: (1) an energy source (ionizing radiation and thermal energy); (2) a supply of nutrients (P, K, REE, etc.); (3) a supply of life-constituting major elements; (4) a high concentration of ...

What are the 10 requirements of life? ›

All living organisms share several key characteristics or functions: order, sensitivity or response to the environment, reproduction, adaptation, growth and development, regulation, homeostasis, energy processing, and evolution.

What would humans need to live in space? ›

Elementary essentials such as air, water, food, and even the sensation of weight all have to be provided to the space colony. Engineering criteria to assure physiological safety and comfort are essential, but equally important is to provide for psychological and esthetic needs of the colonists.

What do you need to be in space? ›

Instead, they're experts in math and science who meet all of NASA's qualifications. Aspiring astronauts must have a master's degree in addition to at least two years of relevant professional experience. Alternatively, they may complete at least 1,000 hours of pilot-in-command time on a jet aircraft.

What do astronauts need to stay alive? ›

If you stepped out into space without the proper equipment you'd only last a few seconds. So the International Space Station (ISS) needs to recreate the conditions of Earth in space. Astronauts need air to breathe, water to drink and a stable environment.

What would life be like in space? ›

Most astronauts find their freedom from gravity exhilarating, especially as they adapt to their new environment. But weightlessness enormously complicates the business of daily life, from eating to sleeping. And space adaptation involves some very complex changes in the human body, both short-term and long-term.

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