What is life? Life is a unique, complex organization of molecules expressing itself through chemical reactions which lead to growth, development, responsiveness, adaptation, and reproduction. However, in systematic biology, we must rigorously distinguish between defining characteristics (properties present in all living organisms without exception and never observed in non-living objects) and non-defining characteristics.
Growth is characterized by twin attributes: increase in mass and increase in number of individuals.
- Indeterminate vs Determinate Growth: In plants, growth by cell division occurs continuously throughout their lifespan due to localized active meristematic tissues. In animals, growth is determinate; cell division occurs only up to a certain age, after which cell division occurs primarily for tissue repair and cell replacement.
- Intrinsic vs Extrinsic Growth: Living organisms exhibit intrinsic growth (growth from inside through metabolic synthesis of protoplasmic and apoplasmic substances). Conversely, non-living objects like mountains, boulders, and sand dunes also exhibit growth through extrinsic accumulation (accretion of matter on their outer surfaces).
- Conclusion: Because non-living objects can also increase in mass externally, growth cannot be taken as an absolute, defining property of living organisms. Intrinsic growth, however, is a characteristic feature.
Reproduction is the biological process by which an organism produces offspring more or less similar to itself. It occurs via sexual or asexual mechanisms (spores in fungi, budding in yeast and Hydra, fragmentation in filamentous algae and moss protonema, and true regeneration in Planaria).
- Unicellular Equivalence: In unicellular organisms like bacteria, amoebae, and unicellular algae, reproduction is synonymous with growth (both involve an increase in cell number).
- Exceptions to Reproduction: Many living organisms cannot reproduce. Classic biological examples include sterile worker bees, mules (cross between male donkey and female horse), hinnies (cross between male horse and female donkey), and infertile human couples. These organisms are unequivocally alive, yet incapable of procreation.
- Conclusion: Reproduction cannot be taken as an all-inclusive defining property of life, even though no non-living object is capable of reproduction.
Metabolism is the sum total of all anabolic (synthetic/constructive) and catabolic (degradative/destructive) biochemical reactions occurring inside an organism. Thousands of metabolic conversions occur simultaneously in all living organisms, from unicellular microbes to complex angiosperms and mammals.
- In Vitro Isolated Reactions: Isolated metabolic reactions carried out in a test tube (cell-free systems) are neither living organisms nor non-living matter; they are living reactions.
- Conclusion: Metabolism occurring within an intact cellular boundary is an absolute, exception-free defining property of all living beings.
Every living organism is composed of one or more cells. The cell is the fundamental structural, functional, and hereditary unit of life. Subcellular organelles or isolated biochemical molecules do not exhibit autonomous life outside the cellular architecture. Therefore, cellular organization is an unquestionable defining feature of life.
Consciousness is the ability of an organism to sense environmental physical, chemical, or biological stimuli and respond appropriately.
- All organisms, from prokaryotes to complex eukaryotes, sense and respond to environmental factors such as light, temperature, water, pollutants, and other organisms.
- Photoperiodism: The duration of light exposure influences reproduction in seasonal breeders among both plants and animals.
- Self-Consciousness: Human beings are the only organisms that possess self-consciousness (awareness of oneself and one's mental states). Patients lying in a coma supported by life-support machines have lost conscious environmental awareness, but their cellular metabolic activities continue.
- Conclusion: Consciousness is a universal, exceptionless defining property of living organisms.