2020bioRxiv (Cold Spring Harbor Laboratory)Open access

Inositol synthesis gene is required for circadian rhythm of Drosophila melanogaster mating behavior

Kazuki Sakata, Haruhisa Kawasaki, Norio Ishida

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Abstract

Abstract Accumulating evidence indicates that the molecular circadian clock underlies the mating behavior of Drosophila melanogaster. However, information about which gene affects circadian mating behavior is poorly understood in animals. The present study found that feeding Myo -inositol enhanced the close-proximity (CP) rhythm of D. melanogaster mating behavior and lengthened the period of the CP rhythm. Then, to understand a role for inositol synthesis to fly mating behavior, we established the Inos ( Myo -inositol 1-phosphate synthase) gene knock down fly strains with RNAi. Interestingly, the CP behavior of this three-different driver knock down strains was arrhythmic, but the locomotor rhythm was rhythmic. The data of three-different Inos knock down strains suggests that Inos gene expression of upper LN d , l-LN V , 5 th s-LN v in brain is necessary for proper CP rhythm generation in D. melanogaster . The data indicated that the Inos gene is involved in the role for the circadian rhythm of D. melanogaster mating behavior.

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Abstract Accumulating evidence indicates that the molecular circadian clock underlies the mating behavior of Drosophila melanogaster. However, information about which gene affects circadian mating behavior is poorly understood in animals. The present study found that feeding Myo -inositol enhanced the close-proximity (CP) rhythm of D. melanogaster mating behavior and lengthened the period of the CP rhythm. Then, to understand a role for inositol synthesis to fly mating behavior, we established the Inos ( Myo -inositol 1-phosphate synthase) gene knock down fly strains with RNAi. Interestingly, the CP behavior of this three-different driver knock down strains was arrhythmic, but the locomotor rhythm was rhythmic. The data of three-different Inos knock down strains suggests that Inos gene expression of upper LN d , l-LN V , 5 th s-LN v in brain is necessary for proper CP rhythm generation in D. melanogaster . The data indicated that the Inos gene is involved in the role for the circadian rhythm of D. melanogaster mating behavior.

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Available abstract

Abstract Accumulating evidence indicates that the molecular circadian clock underlies the mating behavior of Drosophila melanogaster. However, information about which gene affects circadian mating behavior is poorly understood in animals. The present study found that feeding Myo -inositol enhanced the close-proximity (CP) rhythm of D. melanogaster mating behavior and lengthened the period of the CP rhythm. Then, to understand a role for inositol synthesis to fly mating behavior, we established the Inos ( Myo -inositol 1-phosphate synthase) gene knock down fly strains with RNAi. Interestingly, the CP behavior of this three-different driver knock down strains was arrhythmic, but the locomotor rhythm was rhythmic. The data of three-different Inos knock down strains suggests that Inos gene expression of upper LN d , l-LN V , 5 th s-LN v in brain is necessary for proper CP rhythm generation in D. melanogaster . The data indicated that the Inos gene is involved in the role for the circadian rhythm of D. melanogaster mating behavior.

Key concepts: Drosophila melanogaster, Circadian rhythm, Biology, Mating, Melanogaster, Rhythm, Inositol, Period (music)

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