Results 81 to 90 of about 15,314 (178)
Soil CO2 and CH4 emissions were higher in broadleaf than conifer afforestation systems in the southeastern U.S., particularly during the growing season. Machine learning analyses identified soil temperature, moisture, and atmospheric conditions as key drivers, emphasizing that soil greenhouse gas responses critically influence the climate mitigation ...
Jianing Liang +24 more
wiley +1 more source
Integrating edaphic properties in species distribution models reveals that climate‐driven projections may overpredict suitable habitat and range shifts of forest species. Soil heterogeneity reduces suitable habitats, suggesting more conservative responses to future warming for many species across elevational gradients.
Francesco Rota +5 more
wiley +1 more source
Global climate change has led to a shift in rainfall patterns. And as water is an essential ingredient for plant photosynthesis, shifts in rainfall patterns will inevitably affect plant growth. This study was conducted in Kunming, southwest China.
Huiping Zeng +6 more
doaj +1 more source
Conservation status of species used in the UK herbal medicine industry
Given the ongoing biodiversity crisis, sustainable use and management of medicinal plants is critical. We assessed the conservation status, threats and conservation actions of 298 species sold by UK suppliers to medical herbalists. We found that most species used are unevaluated, representing a gap in conservation knowledge, and of those with ...
Isabella Flowers +2 more
wiley +1 more source
Tracing change in the public perception of plants: insights from archives and social media in China
As urbanization accelerates, historic gardens serve as vital cultural treasures that offer spiritual and cultural support to the public. This study proposes an innovative approach that merges historical records from the Qing Dynasty with contemporary social media data to explore changes in public perceptions of these gardens.
Dong Xu +4 more
wiley +1 more source
Fraxinus excelsior Linnaeus 1753
Fraxinus excelsior Linnaeus, Species Plantarum 2: 1057. 1753. "Habitat in Europae sepibus." RCN: 7698. Lectotype (Green in Jarvis & al., Regnum Veg. 127: 47. 1993): Herb. Clifford: 469, Fraxinus 1 (BM-000647544).
Jarvis, Charlie
core +1 more source
In North America, a comparatively small number of Fraxinus (ash) cultivars were planted in large numbers in both urban and rural environments across the entire range of Fraxinus pennsylvanica Marsh (green ash) over the last 80 years.
Everett A Abhainn +5 more
doaj +1 more source
Image Databases for Pollen Grain Classification: Availability, Quality, and Challenges
Overview of the study process, from identifying gaps in pollen image databases to a systematic search across six libraries, resulting in 73 final studies, 18 datasets (10 public), and a seven‐point standardization framework proposed under FAIR principles.
Heloise Acco Tives Bedin +4 more
wiley +1 more source
Three different dissection treatments were applied to mature seeds of two European ash species: Fraxinus excelsior (L.) and Fraxinus angustifolia (Vahl.) in order to compare their relative efficiency for germination and further development.
Nathalie Frascaria-Lacoste +3 more
core +1 more source
Se coleccionaron hojas maduras de ejemplares adultos de Populus alba, Populus deltoides, Robinia pseudoacacia, Ulmus pumila y Fraxinus americana del Campus Universitario, Tandil, Buenos Aires, Argentina (37° 19S, 59° 08O) en febrero de 2004.
María L. Bakker, Patricia I. Alvarado
doaj

