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Molecular characterization of ‘Candidatus Phytoplasma phoenicium’ infecting almond (Prunus dulcis) and evaluation of biochemical defenses produced in the plants

Citation
Akkurak et al. (2024). Journal of Phytopathology 172 (1)
Names
Ca. Phytoplasma phoenicium
Abstract
AbstractIncreasing incidences of phytoplasma infestations in Almond trees warrants the better management approach to prevent yield losses. Disease management rely on identification of the pathogen based on molecular profiling. The present study aimed, to identify the phytoplasma agent in almond trees and to measure the biochemical responses it causes in the host. Direct and Nested PCRs performed using phytoplasma specific primer pairs 16S rRNA, detected the presence of phytoplasma agent in sympt

An update on the presence of Leucomigus candidatus candidatus (Coleoptera, Curculionidae, Lixinae) in Romania

Citation
Olariu et al. (2023). Travaux du Muséum National d’Histoire Naturelle “Grigore Antipa” 66 (2)
Names
Abstract
This survey presents the first precise records of Leucomigus candidatus candidatus (Pallas, 1781) in Romania, confirming thus the presence of this species almost a century after its first and single record. Furthermore, ecology, habitat preference and distribution are discussed. We illustrate this taxon with high quality macro photographs, including the male genitalia with the everted and inflated endophallus. Comparative plates with similar-looking species are provided. New localities from Roma

A comprehensive overview of the Chloroflexota community in wastewater treatment plants worldwide

Citation
Petriglieri et al. (2023). mSystems 8 (6)
Names
“Epilinea brevis” “Epilinea” “Leptofilum” “Epilineaceae” “Epilineales” “Avedoeria danica” “Avedoeria” “Brachythrix odensensis” “Brachythrix” “Defluviilinea gracilis” “Defluviilinea” “Defluviilinea proxima” “Villigracilis vicinus” “Villigracilis adiacens” “Villigracilis propinquus” “Villigracilis” “Villigracilis affinis” “Villigracilis proximus” “Villigracilis saccharophilus” “Villigracilaceae” “Hadersleviella danica” “Hadersleviella” “Trichofilum aggregatum” “Trichofilum” “Promineofilum glycogenicum” “Leptofilum gracile” “Leptofilum proximum” “Leptovillus gracilis” “Leptovillus affinis” “Leptovillus” “Flexicrinis affinis” “Flexicrinis proximus” “Flexicrinis” “Flexifilum breve” “Flexifilum affine” “Flexifilum” “Flexifilaceae” “Amarolinea dominans” “Fredericiella danica” “Fredericiella” “Caldilinea saccharophila” “Ribeiella danica” “Ribeiella” “Kouleothrix ribensis” “Amarobacter glycogenicus” “Amarobacter” “Amarobacillus elongatus” “Amarobacillus”
Abstract
ABSTRACT Filamentous Chloroflexota are abundant in activated sludge wastewater treatment plants (WWTPs) worldwide and are occasionally associated with poor solid-liquid separation or foaming, but most of the abundant lineages remain undescribed. Here, we present a comprehensive overview of Chloroflexota abundant in WWTPs worldwide, using high-quality metagenome-assembled genomes (MAGs) and 16S rRNA amplicon data from 740 Danish and global WWTPs. Many novel taxa were descri