Results 11 to 20 of about 13,587,073 (120)

Calliopsida cinnabarina

open access: yes, 2021
Calliopsida cinnabarina (Berg, 1879) Tettigades cinnabarina Berg 1879: 137. Jacobi (1907) recorded the species from Chile and Argentina without specific location data.
Sanborn, Allen F.
core   +1 more source

Haemaphysalis cinnabarina Koch 1844

open access: yes, 2023
<p> <i>30.</i> <i>Haemaphysalis cinnabarina</i> Koch, 1844a.</p> <p> Neotropical: 1) Brazil (Hoogstraal 1973b, Barros-Battesti <i>et al.</i> 2008).</p> <p> This tick is known from two ...
Nava, Santiago   +2 more
core   +1 more source

Calliaspis cinnabarina Boheman 1850

open access: yes, 2020
<i>Calliaspis cinnabarina</i> Boheman, 1850 <p> <b>Published record.</b> Amparo (Sංආõൾඌ +| Mඈඇඇඣ 2011).</p> <p> <b>Distribution.</b> Brazil (Bahia,? Rio de Janeiro,?
Sekerka, Lukáš
core   +1 more source

Fungal Polysaccharides as Next‐Generation Bioactive: Advances in Structure–Activity Mapping, Mode of Action, and Biotechnological Horizons

open access: yesFood Frontiers, Volume 7, Issue 3, May 2026.
ABSTRACT Fungal polysaccharides (FPs) represent a diverse class of bioactive macromolecules widely studied for their nutritional, therapeutic, and biotechnological value. This review synthesizes recent advances (2020–2025) in the structural characterization, biological functions, and translational potential of FPs.
Muhammad Aaqil   +6 more
wiley   +1 more source

Osmia (Neosmia) cinnabarina Perez 1895

open access: yes, 2020
Osmia (Neosmia) cinnabarina Pérez, 1895 Global distribution: West-Palearctic Regional distribution: Tanger-Tetouan-Al Hoceima; Oriental; Fès-Meknès; Drâa-Tafilalet; Souss-Massa References: Nadig & Nadig (1933); Tkalců (1977b); Müller (2019 ...
Lhomme, Patrick
core   +1 more source

Orthoquinone, Cyclic, and Acyclic α‐Diketone Natural Products: From Food Applications to Pharmacotherapy

open access: yesPhytochemicals in Food and Medicine, Volume 1, Issue 1, March 2026.
The orthoquinone metabolites from plants have antimicrobial, antioxidant, antiviral, cytotoxic, and anti‐inflammatory effects. ABSTRACT The structural diversity of natural products is vast and fascinating, and they have been recognized as an enormously diverse source of new lead compounds.
Hidayat Hussain   +5 more
wiley   +1 more source

Widespread Latent Presence of Cryptostroma corticale in Sycamore Maple in France

open access: yesPlant Pathology, Volume 75, Issue 1, January/February 2026.
Increasing drought events promote forest disease emergence, exemplified by Sooty Bark Disease (SBD) of Acer pseudoplatanus caused by Cryptostroma corticale. Across six French regions, the pathogen was detected in 13.6% of asymptomatic trees, indicating widespread latent presence that could trigger disease outbreaks under future drought and high host ...
Elodie Muller   +5 more
wiley   +1 more source

Chemical profiling and characterisation of anthraquinone‐based polyphenols as biocolourants from Cortinarius semisanguineus

open access: yesColoration Technology, Volume 141, Issue 6, Page 855-888, December 2025.
Abstract Anthraquinone dyes are known for their significant colour (brightness of shade in the red, blue and green areas) and light fastness properties compared with other synthetic dyes (such as azo‐based dyes). However, challenging multi‐step synthesis of anthraquinones and limited access to fewer substituents result in insufficient reactivity ...
Arvind Negi   +2 more
wiley   +1 more source

Species of the Botryosphaeriaceae Are Associated With Blackcurrant Dieback in New Zealand

open access: yesPlant Pathology, Volume 74, Issue 6, Page 1718-1729, August 2025.
We describe the isolation, identification and pathogenicity of species of the Botryosphaeriaceae associated with blackcurrant dieback in New Zealand. Diplodia seriata and D. mutila were the most prevalent species. ABSTRACT Dieback of blackcurrants (Ribes nigrum) is an increasing problem worldwide with several pathogens including the Botryosphaeriaceae ...
Patanun Kanjanamaneesathian   +3 more
wiley   +1 more source

Biological Flora of Britain and Ireland: Cytisus scoparius*

open access: yesJournal of Ecology, Volume 113, Issue 7, Page 1877-1933, July 2025.
Broom is an attractive and common native plant across Britain, Ireland and most of Europe, and yet it is considered a harmful and invasive weed around the rest of the world. This is aided by broom thriving on poor dry soils, helped by using green stems for photosynthesis and having root nodules to fix nitrogen.
Peter A. Thomas   +9 more
wiley   +1 more source

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