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Sanda, R.

Publications and source records attributed to Sanda, R..

2 recordsLinked to original sources

Gut microbiome composition and predicted functions relate to growth and behavior in a Japanese preschool cohort

Early childhood is a period of rapid brain maturation and gut microbiome assembly, when emerging behavioral difficulties can shape later mental health and learning trajectories. Microbiota-gut-brain communication has been implicated in neurodevelopment through microbial metabolites and immune signaling. However, most pediatric evidence comes from high-risk or clinically referred cohorts, and gut microbiome-related correlates of typical behavioral variation in community-based preschool children remain poorly defined. In a cross-sectional sample of typically developing Japanese preschool children, here we show that behavioral variation within normative ranges is associated with distinct microbiome configurations: internalizing domains cluster with signatures consistent with higher inflammatory potential and elevated nucleotide biosynthesis, whereas somatic complaints and withdrawn behavior associate with reduced respiratory and fermentative activity. Sleep-related difficulties show the broadest predicted functional footprint, including enrichment of pathways related to methyl-donor and heme biosynthesis, while externalizing domains associate with pathways involved in cell-envelope and carbohydrate remodeling. In contrast, age, height, and weight track canonical maturation of gut microbiome composition, indicating that behavioral associations are not simple proxies of growth. Together, these findings extend early-life microbiome research by resolving domain-specific associations in a low-risk Asian community sample and highlighting pathway-level candidates that may interface with neurodevelopment.

microbiology↗

Zombie Gene Flow: Asexual Hybrids Mediate Extensive Genomic Introgression from Extinct Species Into Their Sexual Parent

Interspecific gene flow may profoundly impact genome integrity and adaptive evolution in hybridizing species, leading to novelties such as transgressive traits, supergenes, or, sometimes, the emergence of asexually reproducing lineages. Conventionally, introgression is thought to proceed between reproductively interacting species, mediated by recombining interspecific hybrids, while asexual lineages are considered evolutionary deadlock for genomes trapped in them. Our study on Cobitis loaches in the western Balkan watersheds demonstrates an alternative mechanism where a mix of asexuality and polyploidy facilitates significant introgression from a long-extinct species. Through extensive sampling and cytogenetic and phylogenomic analyses, we identified a sexual species, C. ohridana (OO) coexisting with its asexual hybrid form (OX) originating from hybridization with an extinct species (XX). The diploid OX hybrids pass both parental subgenomes mostly clonally with occasional gene conversions, while triploid OOX hybrids reproduce through meiotic hybridogenesis, producing O-like gametes with localized gene conversions by X alleles. Their mating with the locally dominant sexual species consequently leads to over 4% admixture in both nuclear and mitochondrial genomes. Our findings challenge the view of hybrid asexual lineages as evolutionary dead ends, revealing their significant role as reservoirs of genetic diversity and agents of interspecific gene exchange, even after the extinction of one parental taxon.

evolutionary biology↗