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Distribution of the <scp> N 2 </scp> ‐fixing cyanobacterium Candidatus Atelocyanobacterium thalassa in the Mexican Pacific upwelling system under two contrasting El Niño Southern Oscillation conditions

Citation
Vieyra‐Mexicano et al. (2024). Environmental Microbiology Reports 16 (1)
Names
Ca. Atelocyanobacterium thalassa
Abstract
Abstract The unicellular cyanobacterium Candidatus Atelocyanobacterium thalassa (UCYN‐A) is a key diazotroph in the global ocean owing to its high N 2 fixation rates and wide distribution in marine environments. Nevertheless, little is known about UCYN‐A in oxygen‐deficient zones (ODZs), which may be optimal environments for marine diazotrophy. Therefore, the distribution and di
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Metagenome-assembled genomes of three Hepatoplasmataceae provide insights into isopod-mollicute symbiosis

Citation
Kawato et al. (2024). Access Microbiology 6 (2)
Names
Hepatoplasma crinochetorum Ts Tyloplasma litorale Ts Tyloplasma Hepatoplasma vulgare Hepatoplasma scabrum
Abstract
The digestive organs of terrestrial isopods harbour bacteria of the recently proposed mollicute family Hepatoplasmataceae. The only complete genome available so far for Hepatoplasmataceae is that of ‘Candidatus Hepatoplasma crinochetorum’. The scarcity of genome sequences has hampered our understanding of the symbiotic relationship between isopods and mollicutes. Here, we present four complete metagenome-assembled genomes (MAGs) of uncultured Hepatoplasmataceae members identified from shotgun se
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SUITABILITY AREAS FOR Candidatus Liberibacter asiaticus UNDER DIFFERENT CLIMATE CHANGE SCENARIOS IN MEXICO

Citation
Rodríguez-Aguilar et al. (2024). Tropical and Subtropical Agroecosystems 27 (1)
Names
Ca. Liberibacter asiaticus
Abstract
&lt;p&gt;&lt;strong&gt;Background.&lt;/strong&gt; Climate change models have projected an increase in the distribution of certain crop pests of economic importance by forecasting more favorable future conditions for these organisms. In citrus farming, Huanglongbing is one of the most devastating diseases worldwide, since it has caused the death of millions of trees. &lt;strong&gt;Objetive.&lt;/strong&gt; The objective of this study was to estimate the current and future distribution of &lt;em&gt
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First detection of ‘Candidatus Phytoplasma ulmi’ in Switzerland and in Orientus ishidae Matsumura, 1902

Citation
Oggier et al. (2024). Alpine Entomology 8
Names
Ca. Phytoplasma ulmi
Abstract
‘CandidatusPhytoplasma ulmi’ (Ca.P. ulmi) belongs to the ribosomal subgroup 16SrV-A and is associated with dieback, shoot proliferation and yellows disease on variousUlmusspp. Other plant species, such asCarpinus betulusandPrunusspp. have also been reported infected by the same pathogen. In 2021, in the frame of research activities focused on grapevine’s Flavescence dorée (FD), one specimen ofOrientus ishidae- an East Palearctic leafhopper that was identified as an alternative vector of FD phyto
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Candidatus Liberibacter solananearum-tomato as an experimental system for the study of genes associated with Huanglongbing in Mexican lime

Citation
Hernández-Peraza et al. (2024). Revista Mexicana de Fitopatología, Mexican Journal of Phytopathology 40 (4)
Names
Liberibacter Ca. Liberibacter asiaticus
Abstract
The increasing impact of phloem-restricted bacteria on economically important crops has led to renewed interest in understanding the pathogenesis at the genomic and histological levels of these diseases. The genus Candidatus Liberibacter is associated with economically devastating diseases, highlighting Candidatus Liberibacter asiaticus (CLas) and Candidatus Liberibacter solanaceraum (CLso) in citrus and vegetables. Plant-pathogen interaction studies are limited due to the non-culturable nature
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