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Premise Of The Study: The genetic structure of jack pine (Pinus banksiana Lamb.), a North American boreal conifer with large longitudinal distribution, was investigated to test for the possible existence of a genetically distinct lineage in the Maritimes region in northeastern North America, which could be indicative of a mid-latitude coastal refuge during the last glaciation. •
Methods: One maternally inherited mitochondrial DNA (mtDNA) minisatellite marker and four paternally inherited chloroplast DNA (cpDNA) microsatellite markers were used to assess the range-wide geographical structure of jack pine populations with particular focus on northeastern North America. •
Key Results: The populations from the Maritimes region presented a unique mtDNA background characterized by very low diversity and the preponderance of a distinctive mitotype. The distribution of cpDNA diversity was not spatially structured, though three chlorotypes were restricted to the east. •
Conclusions: MtDNA data suggest that populations from the Maritimes region derive from a genetically depauperated north-coastal refugium. Contrastingly, the much higher geographical uniformity observed for cpDNA variation indicates that gene flow by pollen had been much more effective than seed gene flow at homogenizing population structure.
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http://dx.doi.org/10.3732/ajb.1000148 | DOI Listing |
Nat Commun
September 2025
Clinical Memory Research Unit, Department of Clinical Sciences Malmö, Faculty of Medicine, Lund University, Lund, Sweden.
The distribution of tau pathology in Alzheimer's disease (AD) shows remarkable inter-individual heterogeneity, including hemispheric asymmetry. However, the factors driving this asymmetry remain poorly understood. Here we explore whether tau asymmetry is linked to i) reduced inter-hemispheric brain connectivity (potentially restricting tau spread), or ii) asymmetry in amyloid-beta (Aβ) distribution (indicating greater hemisphere-specific vulnerability to AD pathology).
View Article and Find Full Text PDFJACC Adv
September 2025
Schulich Heart Program, Sunnybrook Health Sciences Centre, University of Toronto, Toronto, Ontario, Canada; ICES, Toronto, Ontario, Canada; Temerty Faculty of Medicine, University of Toronto, Toronto, Ontario, Canada; Institute of Health Policy Management, and Evaluation, University of Toronto, Toro
Background: Poor cardiovascular health quantified by 8 health behaviors and factors is associated with incident cardiovascular disease (CVD). However, it is not clear if this association differs between women and men.
Objectives: The aim of the study was to determine whether the association between cardiovascular health status and incident CVD events differs by sex.
J Evid Based Soc Work (2019)
August 2025
Rod Library, University of Northern Iowa, Cedar Falls, Iowa, USA.
Purpose: High rates of comorbid psychopathology have driven a growing body of person-centered research to understand the grouping structure of youth comorbidity by identifying meaningful comorbidity patterns and validating them with neurobehavioral factors. The National Institute of Mental Health's Research Domain Criteria (RDoC) offers an etiological framework for systematically identifying constructs organized around major functioning domains. This scoping review study mapped person-centered comorbidity studies and synthesized the RDoC-informed factors of comorbidity patterns.
View Article and Find Full Text PDFACS Biomater Sci Eng
September 2025
Department of Mechanical Engineering, Cleveland State University, Cleveland, Ohio 44115, United States.
Peripheral nerve injuries (PNIs) have a significant impact on the quality of life for patients suffering from trauma or disease. In injuries with critical nerve gaps, PN regeneration requires tissue scaffolds with appropriate physiological properties that promote cell growth and functions. Hydrogel scaffolds represent a promising platform for engineering soft tissue constructs that meet key physiological requirements.
View Article and Find Full Text PDFBiochim Biophys Acta Mol Basis Dis
August 2025
Metabolic Pathophysiology, Universitat de Lleida-Irblleida, Lleida 25196, Spain. Electronic address:
Cholesterol is a central determinant of membrane architecture, signaling, and cellular homeostasis in the central nervous system (CNS). While historically viewed as a structural component, emerging evidence highlights its dynamic regulatory role in neuronal function, particularly through its compartmentalized synthesis, trafficking, and turnover. This review examines the complex landscape of cholesterol metabolism in the CNS, emphasizing the cooperative roles of astrocytes and neurons, the partitioning of biosynthetic pathways, and the barriers that distinguish brain cholesterol pools from peripheral sources.
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