KEY POINTS:
The spectacular migration of the monarch butterfly, which covers a 3000km round trip in a year, uses an inbuilt precision clock that enables the insect to use the sun as a compass, a study has found.
An internal biological clock that times the 24-hour cycle of night and day allows the monarch butterfly to calculate its direction of flight when migrating either north or south, depending on the time of the year, scientists have discovered.
Monarch butterflies are famous for the journey they make each spring from their winter roosting sites in the mountain pine trees of Mexico to as far as the US-Canadian border and back again in autumn - an unparalleled migratory feat for such a small creature.
As the monarchs fly north in spring they breed several times during their summer journey. Four or five generations later, their offspring make the long journey home again, often landing in the same Mexican valley and even on the same tree that their great-great-grandparents left the previous winter.
Scientists have known for years that the monarchs use the sun as a compass to guide them on their journey, and as a calendar for telling them when to begin the return journey to Mexico. But a compass based on the sun's moving position in the sky would not work unless the insects also had an accurate clock.
A study by Steven Reppert, professor of neurobiology at the University of Massachusetts Medical School, has identified the key gene in the monarch butterfly that acts as a biological clock for estimating the 24-hour cycle of the circadian rhythm.
Professor Reppert said that the gene was responsible for a light-sensitive protein called cryptochrome that counted the passing hours of each day, and also communicated the information to the monarch's inbuilt solar compass for the insect to calculate its correct direction of flight.
The first CRY gene was discovered in drosophila fruit flies but the monarch's gene is different.
- INDEPENDENT