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Hinomoto, N.

Publications and source records attributed to Hinomoto, N..

2 recordsLinked to original sources

Sex-specific doublesex regulation targeting the color-patterning gene h underlies the evolution of wing sexual dimorphism in the harlequin ladybug Harmonia axyridis

Organisms on Earth show various forms of sexual dimorphism, including ornaments, weapon traits, and pheromone glands, which has been acquired through sexual selection during evolution. Although the genetic basis of sexual trait has been investigated in diverse species, its evolutionary origin, evolutionary mode, and evolvability remain poorly understood. To address these issues, we investigated the strain-specific sexual dimorphism in elytral color patterns of the harlequin ladybug, Harmonia axyridis, a species with over 200 color morphs. The most basal Red-nSpots type color morph exhibits sexual dimorphism, whereas other derived color morphs have lost it. To investigate how this loss of sexual dimorphism is associated with the emergence of novel color morphs, we investigated the genetic basis of sexual dimorphism by focusing on the master sex differentiation gene, doublesex (dsx). We show that dsx regulates color pattern dimorphism by negatively modulating black spot size in males. This modulation is primarily mediated by the transcriptional regulation of the color patterning gene, h (Drosophila pannier ortholog). Intraspecific comparative ATAC-seq analysis of the pupal wings revealed that, at the h locus, not the absolute number of Dsx-binding motifs but the proportion of open chromatin regions containing Dsx-binding motifs relative to those lacking such motifs was reduced in strains that had lost sexual dimorphism and acquired novel color patterns, implying that sexual dimorphism evolves based on the balance between novel CREs and Dsx-binding motif density. The present study provides a fundamental molecular framework for understanding how a secondary sexual trait evolves within H. axyridis.

evolutionary biology↗

MATING FREQUENCY MEDIATES PERSONALITY EXPRESSION IN FACULTATIVELY POLYANDROUS MITES

Animal personalities are characterized by within-individual consistency linked to among-individual variability. Personality expression may change during ontogeny and is often dependent on major life history transitions and events such as mating and the onset of reproduction. While the influence of female personalities on sexual selection and mating has long been known, the influence of the females mates on female personality expression after mating is poorly understood. Here we hypothesized that in facultatively polyandrous animals multiple mating increases the females assets, also called the residual reproductive value (RRV), due to direct and/or indirect benefits. Based on the predictions of the asset protection principle, higher RRV should promote behaviors that reduce the risk of fitness loss and hence mediate behavioral repeatability displayed in groups. We tested our hypothesis in the group-living, plant-inhabiting predatory mite Phytoseiulus persimilis. To this end, predatory mite females were presented with either a single mate or two mates in sequence and their post-mating repeatability in activity and sociability was evaluated in groups that were composed of females of the same and mixed mating types (monandrous and polyandrous). Mating frequency had little effects on activity patterns but pronounced effects on sociability traits. Polyandrous females were on average more sociable as well as more repeatable in sociability than monandrous females. These behavioral shifts reflect greater risk aversion and strategies to mitigate inter-individual conflicts within groups to enhance asset protection. Our study suggests that the mating frequency can critically influence female personality expression after mating in facultatively polyandrous animals and highlights the importance of considering mate-related variables in animal personality research.

animal behavior and cognition↗