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Kajiwara, T.

Publications and source records attributed to Kajiwara, T..

2 recordsLinked to original sources

Temperament in early childhood is associated with gut microbiota composition and diversity

Temperament is a key predictor of human mental health, and cognitive and emotional development. While human fear behavior is reportedly associated with gut microbiome in infancy, infant gut microbiota changes dramatically during the first five years, when the diversity and composition of gut microbiome are established. This period is crucial for developing human executive functioning, including emotion regulation. Therefore, this study investigated the relationship between temperament and gut microbiota in 284 preschool children aged 3-4 years. Child temperament was assessed by maternal reports of the Childrens Behavior Questionnaire. Gut microbiota (alpha/beta diversity and genera abundance) was evaluated using 16S rRNA sequencing of stool samples. A high abundance of anti-inflammatory bacteria (e.g., Faecalibacterium) and low abundance of inflammatory bacteria (e.g., Eggerthella, Flavonifractor) were associated with higher positive emotionality and reward-seeking (i.e., Surgency/Extraversion, {beta} =0.15, p = 0.013), and lower negative emotionality and behavioral inhibition (i.e., Negative Affectivity, {beta} = -0.17, p = 0.004). Additionally, gut microbiota diversity was associated with a more active approach and exploration (i.e., Impulsivity, a specific aspect of Surgency/Extraversion, {beta} = 0.16, p = 0.008). This study provides insight into the biological mechanisms of temperament and takes important steps toward identifying predictive markers of psychological/emotional risk.

microbiology↗

Three-dimensional morphological analysis revealed the cell patterning bases for the sexual dimorphism development in the liverwort Marchantia polymorpha

In land plants, sexual dimorphism can develop in both diploid sporophytes and haploid gametophytes. While developmental processes of sexual dimorphism have been extensively studied in the sporophytic reproductive organs of model flowering plants such as stamens and carpels of Arabidopsis thaliana, those occurring in gametophyte generation are less well characterized due to the lack of amenable model systems. We here performed three-dimensional morphological analyses of gametophytic sexual branch differentiation in the liverwort Marchantia polymorpha, using high-depth confocal imaging and a computational cell segmentation technique. Our analysis revealed that specification of germline precursors initiates in a very early stage of sexual branch development where incipient branch primordia are barely recognizable in the apical notch region. Moreover, spatial distribution patterns of germline precursors differ between males and females from the initial stage of primordium development in a manner dependent on the master sexual differentiation regulator MpFGMYB. In later stages, distribution patterns of germline precursors predict the sex-specific gametangia arrangement and receptacle morphologies seen in mature sexual branches. Taken together, our data suggests a tightly coupled progression of germline segregation and sexual dimorphism development in M. polymorpha.

plant biology↗