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Unlocking the secrets of ancient viruses in our dna discover how ancient viruses embedded in our dna play a crucial role in switching genes on and off. The vast majority was dismissed as “genetic sand,” seemingly … · scientists discovered that ancient viral dna sequences called mer11, once dismissed as genetic junk, actually act as important gene switches. · junk dna could unlock new treatments for neurological disorders as scientists discover its breaks and repairs affect our protection against neurological disease. · now, biologists have an inkling as to what that reason might be. · now, a new international study has found a novel method for analyzing these mysterious sequences, and they’ve discovered hidden patterns responsible for gene expression. A new international study reveals that ancient viral dna buried … Their discovery may … Sir, what started as a clever talk title by susumu ohno (1) to describe non-protein-coding dna (ncdna) quickly became a ubiquitous phrase (“junk dna”) causing substantial confusion and … · what scientists once dismissed as junk dna may actually be some of the most powerful code in our genome. · now, a new study by polly fordyce, phd, associate professor of bioengineering and of genetics, and her colleagues has unraveled some of the mystery. · researchers at the university of michigan life sciences institute and the howard hughes medical institute have determined how satellite dna, considered to be “junk dna,” … A recent international study has shown that certain bits of ancient viral dna, long dismissed as genetic “junk,” actually play powerful roles in turning genes on and off—especially during. · a ground-breaking study on so-called junk dna has potentially unlocked new insights into neurological disorders and ageing, as well as cancer and other diseases. · it is now clear that non-coding dna is not simply “junk” but rather a vital component of gene regulation, genome organization, and epigenetic processes. A new international study suggests that ancient viral dna embedded in our genome, which were long dismissed as genetic junk, may actually play powerful roles in regulating gene. · for a long time, scientists believed that only a small portion, the protein-coding genes, held any real purpose. · a portion of our genome that was once dismissed as being “junk” may actually play an important role in regulating gene expression, new research suggests.