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The discovery of the causal agent of Minamata disease.

After the outbreak of an epidemic of a strange disease characterized by severe neurological signs in the small Japanese town of Minamata, a number of scientists in different disciplines were required to identify the causal agent. An account is given of the three-year program, with its disappointments and frustrations as a result of the limitations of knowledge of ecological principles and the absence of adequate techniques for detection and measurement. The lessons that have been learned on how toxic compounds can accumulate and concentrate in food chains are described as are the ecological contributions of environmentally safe waste disposal techniques. This article is based on the recollections of Dr. Shoji Kitamura, who contributed greatly to the discovery of the causative agent of Minamata disease.

Animals

RNAi in the Rhizarian Phytopathogen Plasmodiophora brassicae: The Causal Agent of Clubroot Disease in Cruciferous Crops.

Although RNA interference (RNAi) is widespread and functionally important across eukaryotes, RNAi pathways are diverse or even lost in some lineages. Rhizaria represents a major and distinct eukaryotic supergroup that includes Plasmodiophora brassicae (Pb), the causal agent of cruciferous clubroot disease, yet RNAi in this lineage remains poorly understood. Here, we characterized an unusual RNAi pathway in Pb. Small RNA sequencing across five representative Pb life stages revealed abundant siRNAs and miRNAs characterized by a predominant 21-nt length, phased genomic distribution, 2-nt 3' overhangs, and a strong 5'-cytidine bias. Three Pb miRNAs were further validated by northern blotting and stem-loop RT-qPCR. Genome analysis identified two canonical AGO homologs, PbAGO1 and PbAGO2, but no Dicer homologs, except for an RNase III-containing Drosha-like protein, PbDRL. Functional analyses showed that PbAGO1 and PbAGO2 mediate gene silencing, whereas PbDRL is required for sRNA biogenesis. Further, the cell wall component chitin was identified from Pb zoosporangia during the early infection and RNAi interfering with its biosynthesis in transgenic plants of Arabidopsis and Brassica napus blocked Pb early infection and conferred broad-spectrum resistance. Our study uncovers an unusual RNAi pathway in Rhizaria and provides a promising strategy to control cruciferous clubroot disease.

Plasmodiophora brassicae

Genomes of the ex-type strains of Elsinoë mangiferae and E. perseae, the causal agents of scab on mango and avocado.

Elsinoë species are slow-growing, hemibiotrophic to necrotrophic fungi that cause scab diseases on economically important fruit crops. Genome resources for many host-specific species remain limited. We report high-quality draft genome assemblies for the ex-type strains of Elsinoë mangiferae (CBS 226.50) and E. perseae (CBS 406.34), causal agents of mango and avocado scab, respectively. Among 5 approaches tested, a Nanopore-only NextDenovo assembly produced the most contiguous genomes, yielding 24.5 Mb (E. mangiferae) and 25.1 Mb (E. perseae) assemblies with 13 and 18 contigs, respectively, BUSCO completeness scores of ∼94%, and multiple putative telomere-to-telomere chromosomes. Gene prediction identified 9,134 and 9,243 genes, respectively. Functional annotation revealed enrichment of metabolic and regulatory pathways, including those involved in posttranslational modification, protein transport, and secondary metabolism. Carbohydrate-active enzyme repertoires were small but conserved, consistent with stealth pathogenicity strategies and low plant cell wall degradation. Both genomes encoded large secretomes (>850 proteins), diverse protease repertoires (>300 proteins), Ecp2-like effector proteins, and multiple biosynthetic gene clusters, including clusters with similarity to those associated with elsinochrome and ACT-toxin II biosynthesis, some of which may contribute to host-pathogen interactions and disease development. A large fraction of genes lacked functional characterization, suggesting incomplete databases and/or the presence of lineage-specific genes potentially involved in virulence or host adaptation. These genome resources fill critical gaps for underrepresented Elsinoë species and provide taxonomically anchored references essential for diagnostics, comparative genomics, and research into the molecular basis of host specificity and pathogenicity in scab-causing fungi.

Persea

[Borrelia burgdorferi may be the causal agent of sarcoidosis].

Serum antibody to Borrelia burgdorferi was measured in 33 patients with sarcoidosis who were confirmed clinically and pathologically. The results showed that 81.8% of the patients were positive. In addition, a strain of Borrelia burgdorferi was isolated from a patient's blood. Fourteen patients received ceftriaxone 2 g per day and/or penicillin 12 million per day and a patient received lincomycin 1.2 g per day. The antibody titer of the patients turned to normal level, their SACE turned to normal range, and chest X-ray findings were markedly improved in 3 cases after the treatment. According to the facts mentioned above, we consider that Borrelia burgdorferi may be the causal agent of sarcoidosis and sarcoidosis might be a special type of Lyme disease.

Adult

Host Range and Chemical Control of Cercospora citrullina, the Causal Agent of Watermelon Spot Disease.

This study systematically evaluated cultivation requirements, host range, and chemical control options for Cercospora citrullina causing watermelon spot disease. Among 11 chemically defined media tested, corn meal agar medium supported optimal mycelial growth of C. citrullina, with an average radial growth rate of 56.72 ± 1.45 mm under controlled conditions (25°C, darkness). Host range determination via artificial inoculation of 19 plant species confirmed that the host range of the strain UNL090101 is limited to the Cucurbitaceae species tested, with watermelon (Citrullus lanatus) exhibiting the highest susceptibility, followed by melon (Cucumis melo) and cucumber (Cucumis sativus). Fungicide screening of 17 commercial formulations identified 40% iminoctadine tris (albesilate) WP (EC50 = 2.82 μg·liter-1) and 64% mancozeb + 8% cymoxanil (WS) (EC50 = 48.75 μg·liter-1) as the most effective treatments, achieving control efficacies of 74.47 and 58.62%, respectively. These findings provide actionable guidelines for optimizing crop rotation, intercropping strategies, and fungicide selection in watermelon production systems.

Cercospora citrullina

Light chain 2 profile and activity of human ventricular myosin during dilated cardiomyopathy. Identification of a causal agent for impaired myocardial function.

BACKGROUND: A number of parameters reflecting the effects of idiopathic dilated cardiomyopathy (IDC) on the structure and function of myosin from the human myocardium were analyzed. METHODS AND RESULTS: The content of the regulatory light chain, LC2, was reduced in myopathic heart myosin in contrast to the controls in which it was present in stoichiometric amounts relative to the essential light chain, LC1. In IDC hearts, the absence or significant reduction in amount of LC2 was related to the presence of an active protease, which was isolated and purified about 130-fold. The protease exhibited a significant degree of specificity: It cleaved LC2 almost totally (but not the heavy chains) in human control heart myosin but only partially cleaved LC2 in canine heart or in rabbit skeletal muscle myosins. The protease was present at a very low level or was inactive in control heart tissue. When the LC1/LC2 molar ratio was calculated, it was found to be 1:1.0 in control heart myosin and remained constant in various samples analyzed, whereas in myopathic myosin from different individuals, this ratio varied from 1:0.1 to 1:0.69. The rates of ATP binding to control and myopathic myosins were similar, whereas the Vm of actin-activated ATPase of myopathic myosin was about 25% less than that of the control. However, ATP binding and its hydrolysis by control S1, i.e., the myosin head, were faster by a factor of 2 than that of the myopathic S1. In addition, control myosin synthetic thick filament length as well as turbidity in solution, measured by light scattering, were twice as large as those of the myopathic heart myosin. These effects induced by myopathy in both filament assembly and turbidity were reversed upon reassociation of IDC myosin with LC2. CONCLUSIONS: The changes in myosin structure and function were linked to a protease-mediated cleavage of LC2 in myosin; a possible role for the protease in the degenerative effects of idiopathic dilated cardiomyopathy is thus defined.

Adenosine Triphosphate

The complete and annotated mitochondrial genome of Hemileia vastatrix Race I, causal agent of coffee leaf rust.

Hemileia vastatrix is the fungal pathogen responsible for coffee leaf rust (CLR), the most economically important disease of Coffea arabica worldwide. Recently, the nuclear genome of this fungus was completely deciphered. However, the mitochondrial genome of H. vastatrix has remained undercharacterized. Here, we present the complete, circularized mitochondrial genome of H. vastatrix Race I (isolate HvRI), assembled using a hybrid approach combining PacBio HiFi long reads and BGIseq short reads. The genome is 173,525 bp in length with a GC content of 33.1% and encodes 41 functional genes, including 15 protein-coding genes, 2 rRNAs, and 24 tRNAs. The assembly reveals significant structural complexity, driven by intron expansion in the cox1 and cob genes. Notably, the atp8 gene contains a group II intron, rare for this locus, whose internal open reading frame displays evidence of pseudogenization via internal stop codons.. We also characterized a putative replication initiation zone (~1.2 kb) defined by a poly-G homopolymer and conserved regulatory motifs. The mitogenome of the HvRI isolate does not contain cob mutations that lead to amino acid substitutions G143A and F129L associated with the quinone outside inhibitor (QoI) fungicide resistance. This high-quality mitogenome is an important resource for comparative mitogenomics, population diversity studies, and the molecular surveillance of QoI fungicide resistance.

Genome, Mitochondrial

Emmonsia parva as causal agent of adiaspiromycosis in a fox.

The authors report on adiaspiromycosis of a fox (Vulpes vulpes) caused by Emmonsia parva. Species diagnosis was made on the basis of dimensions of the fungus found in the lungs of the animal, the histopathological picture of tissue changes and the properties of the isolated culture. The identification of the fungus was also confirmed by experimental infection. The differential diagnosis of the agent of adiaspiromycosis is discussed by experimental infection. The differential diagnosed of the agent of adiaspiromycosis is discussed and attention is called to confusion of the species. E. crescens and E. parva in the past. The finding represents the first case of adiaspiromycosis due to E. parva in Europe.

Animals

W. bancrofti as a causal agent of polymyositis.

A case of polymyositis associated with Bancroftian filariasis in an adult male who presented with generalised painful swelling and weakness of muscles is presented. He had elevated muscle enzymes, a myopathic EMG pattern, focal vasculitis on gastrocnemius muscle biopsy and W. bancrofti in the peripheral blood. There was clinical, biochemical and histopathological evidence of resolution of the disorder and total clearance of microfilaremia with diethyl carbamazine (DEC) therapy.

Acute Disease

[Viruses as causal agents of gastroenteritis in infants and young children (author's transl)].

Electron microscopic examination of stool samples from 195 infants and young children with acute gastroenteritis revealed rota virus in 31 samples (= 16%), corona virus in 44 samples (= 23%) and adenovirus in 13 samples (= 7%). Viruses were excreted for between 4 and 8 days in patients infected with rota virus and corona virus respectively. An outbreak of acute gastroenteritis in a premature baby unit with 24 cases is reported: corona virus was found in the stools of 15 infants. It is suggested that corona virus as well as rota virus may cause gastroenteritis in infants and small children.

Acute Disease

[Rotavirus diarrhea in a health center and a hospital of Managua, Nicaragua].

Diarrhoea has been considered by WHO as a major problem of morbidity and mortality in children under 5 years. Rotavirus has been reported as one of the main causal agents, although its frequency as causal agent of diarrhoea in Nicaragua is not known. A study was carried out on 206 samples from an equal number of children under 5 years, who presented at a health center and a pediatric hospital in Managua during 9 months in 1987. In order to detect the presence of Rotavirus in faeces, the ELISA technique was used. It was proved that Rotavirus is not a significant cause of diarrhoea in children under 5 years in the places studied.

Age Distribution

Treatment of nocardial mycetoma with trimethoprim and sulfamethoxazole.

Two cases of nocardial mycetoma were successfully treated with a mixture of trimethoprim and sulfamethoxazole (Bacterim). The patient in case 1 showed resistance to treatment with antibiotics and sulfamethoxypyridazine, and the causal agent of the disease could not be isolated. In case 2, bone involvement was seen; the causal agent was N asteroides. No adverse effects of the drug occurred in a period of treatment ranging from three to nine months.

Adult