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The speed and magnitude of global change will have major impacts on riparian ecosystems, thereby leading to greater forest vulnerability. Assessing species' adaptive capacities to provide relevant information for vulnerability assessments remains challenging, especially for nonmodel species like the North American W. Bartram ex Marshall. The objective of this study was to understand how genomic diversity of this foundation species was shaped by its environment (climate, soil, and biotic interactions) to gauge its adaptive capacity. We used two complementary approaches to get a full portrait of genetic diversity at both the species and whole-genome ranges. First, we used a set of 93 nuclear and three chloroplastic SNP markers in 946 individuals covering most of the species' natural distribution. Then, to measure the degree of intraspecific divergence at the whole-genome level and to support the outlier and genomic-environment association analyses, we used a sequence capture approach on DNA pools. Three distinct lineages for were detected, and their current distribution was associated with abiotic and biotic variations. The comparison between both cpDNA and ncDNA patterns showed that gene flow between the lineages is unbalanced. The southern and northeastern populations may benefit from the input, through river flow, of novel alleles located upstream to their local gene pools. These alleles could migrate from populations that are already adapted to conditions that fit the predicted climates in the receiving local populations, hotter at the northeastern limit and drier in the Central United States. These "preadapted" incoming alleles may help to cope with maladaptation in populations facing changing conditions.
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http://dx.doi.org/10.1111/eva.12854 | DOI Listing |
J Nurs Scholarsh
September 2025
Bern University of Applied Sciences, Department of Health Professions, Bern, Switzerland.
Introduction: The climate crisis impacts global health and is exacerbated by the healthcare sector's emissions. Nurses, as the largest professional group, are key to promoting climate-resilient, low-carbon health systems. Integrating climate change and sustainable development into nursing education is crucial, yet gaps remain in understanding their representation in curricula and practice.
View Article and Find Full Text PDFJ Microbiol Immunol Infect
September 2025
Department of Pediatrics, MacKay Children's Hospital and MacKay Memorial Hospital, Taipei, Taiwan.
Background: Respiratory syncytial virus (RSV) is a leading cause of respiratory infections in infants and young children. The COVID-19 pandemic significantly disrupted global RSV epidemiology. This study aimed to investigate the impact of the pandemic on RSV epidemiology in northern Taiwan from 2018 to 2023.
View Article and Find Full Text PDFInfect Dis Clin North Am
September 2025
Divison of Healthcare Quality Promotion, U.S. Centers for Disease Control and Prevention, 1600 Clifton Road NE, MS A07, Atlanta, GA 30333, USA.
This article describes the epidemiology of Clostridioides difficile infection (CDI) by outlining common approaches to CDI surveillance, including the application of a case definition and risk adjustment, and summarizing recent global trends in the incidence or prevalence of CDI. The article also describes important risk factors for CDI and recent advancements in identifying sources of C difficile.
View Article and Find Full Text PDFPestic Biochem Physiol
November 2025
College of Plant Protection, Northwest A&F University, Yangling, Shaanxi 712100, China. Electronic address:
Tomato Fusarium wilt, caused by the soil-borne pathogen Fusarium oxysporum f. sp. lycopersici (Fol), poses a significant threat to global tomato production, resulting in severe losses in both yield and quality.
View Article and Find Full Text PDFPestic Biochem Physiol
November 2025
Department of Biology & CESAM-Centre for Environmental and Marine Studies, University of Aveiro, Campus Universitario de Santiago, 3810-193 Aveiro, Portugal.
Maize (Zea mays L.) is one of the world's most widely cultivated and economically important cereal crop, serving as a staple food and feed source in over 170 countries. However, its global productivity is threatened by late wilt disease (LWD), a disease caused by Magnaporthiopsis maydis, that spreads through soil and seeds and can cause severe yield losses.
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