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Tardigrades, often dubbed "water bears," are microscopic invertebrates known for their astonishing survival capabilities. Measuring less than 1 millimeter, these creatures have become a scientific fascination not merely due to their size, but because of their ability to withstand extremes that would obliterate most life forms. From the vacuum of outer space to intense radiation and pressures six times deeper than the Mariana Trench, tardigrades have defied what is typically considered biologically plausible.The secret behind this resilience lies in a phenomenon called cryptobiosis—a physiological state in which metabolic processes come to an almost complete halt. When environmental conditions become hostile, tardigrades lose nearly all their body water, retract their limbs, and curl into a compact structure known as a "tun." In this state, they can remain inert for decades, enduring temperatures as low as -272°C or as high as 150°C, and resume life once favorable conditions return. This capability has prompted researchers to explore applications of cryptobiosis in medicine, biotechnology, and space travel.Interestingly, the mechanisms of cryptobiosis in tardigrades are still not entirely understood. One key protein identified is Dsup (Damage suppressor), which appears to shield DNA from radiation-induced damage. However, the orchestration of their desiccation tolerance involves a complex symphony of molecular adaptations, many of which are still being uncovered. Unlike spores or seeds, which undergo dormancy as part of a life cycle, cryptobiosis in tardigrades is purely reactive, making it both biologically unique and evolutionarily intriguing.While tardigrades are not immortal, their ability to "pause" life raises philosophical questions about the very definition of being alive. Scientists are increasingly interested in whether this process could be artificially induced in other organisms or even human cells. If successful, cryptobiosis might one day enable long-duration space travel, organ preservation, or even suspended animation, making tardigrades not just biological oddities, but potential keys to future survival technologies.Based on paragraph 2, which of the following would most likely occur if a tardigrade enters a ‘tun’ state...

A. Its metabolic functions increase to counteract environmental stressors.
B. It becomes vulnerable to DNA degradation and loses cellular control.
C. It halts biological activity and waits until favorable conditions return. ✓ Benar
D. It activates a genetic mutation to transform into a different species.
Jawaban benar: C

Pembahasan

Dalam paragraf 2 dijelaskan bahwa saat memasuki kondisi tun, “metabolic processes come to an almost complete halt” yang artinya proses metabolisme hampir berhenti total. Ini menunjukkan bahwa tardigrade tidak aktif secara biologis dan hanya menunggu sampai kondisi lingkungan membaik.Jawaban: C

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