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Shetty, V.

Publications and source records attributed to Shetty, V..

2 recordsLinked to original sources

Seasonal blood-brain barrier plasticity links environmental cues to migratory behavior in monarch butterflies

Seasonal migration requires animals to reversibly switch behavioral states in response to environmental cues, yet the molecular and cellular mechanisms underlying these transitions remain poorly understood. Monarch butterflies provide a powerful model, as Eastern North American populations undergo a long-distance southward migration in the fall followed by a cold-dependent reversal in flight orientation after overwintering each spring. Here, we show that cold exposure induces coordinated transcriptional changes in the monarch brain, marked by attenuated integrin-mediated extracellular matrix (ECM) signaling at the blood-brain barrier (BBB). Cold-exposed monarchs exhibit increased penetration of fluorescent markers into the brain, consistent with increased BBB permeability. Notably, our findings align with previous genomic evidence identifying collagen type IV alpha 1, a major ECM component, as a locus under divergent selection between migratory and non-migratory populations. Together, these results implicate seasonal modulation of BBB permeability as a mechanism linking environmental temperature to plastic migratory behavior and identify the BBB as a dynamic interface through which seasonal cues may reprogram neural function and behavior.

neuroscience↗

The transition from a non-westernized to westernized gut microbiome in Indian-Immigrants and Indo-Canadians is associated with dietary acculturation

Indian immigration to westernized countries has recently surged, increasing their risk of Inflammatory Bowel Disease (IBD) post-migration. While crucial for understanding IBD risk, the gut microbiome remains understudied in Indians. This cross-sectional study examines the gut microbiomes of Indians residing in India, Indo-Immigrants, and Indo-Canadians in comparison to Euro-Canadian and Euro-Immigrant controls to understand the impact of westernization on their gut. Stool samples for 16S rRNA and shotgun sequencing assessed microbial taxa and functional profiles, complemented by dietary and demographic data to evaluate lifestyle patterns. Results revealed distinct microbiotas in Indians and Indo-Immigrants compared to control groups, with high abundances of Prevotella spp. and CAZymes reflecting their high complex carbohydrate diet. Indo-Canadians exhibited a transitional microbiome towards westernization, mirroring increasing dietary acculturation. Considering 44% of Canadians are first- and second-generation immigrants and the global adoption of westernized practices, future research should investigate the health implications of such microbiome transitions in immigrant populations and newly industrialized nations.

microbiology↗