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A comprehensive review charts how psychiatry could finally diagnose what it actually treats

Emerging research across conceptual frameworks, biomarker science, digital phenotyping, and artificial intelligence synthesizes a translational pathway toward a more biologically grounded and clinically useful approach to psychiatric diagnosis. The current system falls short due to standardized clinical language and lack of biological ...

SourceGenomic Press·JournalBrain Medicine·TypeLiterature review·DateMar 10, 2026

Schizophrenia-linked genetic variant renders key brain receptor completely unresponsive to both natural and therapeutic compounds

Researchers at Flinders University discover a genetic mutation that silences a brain receptor, rendering it unresponsive to both natural trace amines and clinical drug candidates. The C182F variant eliminates receptor signaling and reduces cell surface expression, with profound implications for emerging psychiatric treatments.

SourceGenomic Press·JournalGenomic Psychiatry·TypeExperimental study·DateJan 6, 2026

Urban natives: Plants evolve to live in cities

Researchers found that a plant species adapted to urban conditions exhibited inheritable characteristics, such as changes in size and flowering periods, within 60 years of urbanization. Elevated ground temperatures and reduced soil acidity drove these differences.

SourceKobe University·JournalJournal of Ecology·TypeExperimental study·DateNov 25, 2025

German Research Foundation renews funding for Research Training Group "Gene Regulation in Evolution" at Mainz University

The German Research Foundation has renewed funding for the Research Training Group 'Gene Regulation in Evolution' at Mainz University, focusing on the role of gene regulation in adaptation and evolution. The program will recruit 13 new doctoral students and continue to support interdisciplinary research and personal development.

Exploring the genetic ma(i)ze: Functional genomics can help molecular breeding of maize

Researchers used functional genomics to identify key genes involved in inducing callus from immature maize embryos, overcoming a major roadblock in plant breeding. The study found that nearly 30% of predicted A188 genes were structurally different from other maize lines, accounting for high protein divergence and phenotypic variations.

SourceCactus Communications·JournalThe Crop Journal·TypeObservational study·DateSep 8, 2021