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1.
J Pain Symptom Manage ; 68(1): e62-e74, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38679306

RESUMEN

INTRODUCTION: This study explores the feasibility and effects of music therapy on anticipatory nausea and vomiting, stress, pain and quality of life in adolescents undergoing chemotherapy. METHODS: This is a single group, quasi-experimental study using pre/post-test design. Participants received four individual sessions of music therapy (MT), led by a certified music therapist. State-Trait-Anxiety Inventory Y-1, and a 0-4 Likert scale for pain, nausea and vomiting were recorded. Heart rate variability (LF/HF) was collected during sessions. PedsQL was collected before and at the end of the trial. Semi-structured interviews were conducted with participants. RESULTS: A significant reduction in anxiety, nausea and vomiting, both pre-post single sessions and between different sessions, was observed. A significant increase in LF/HF and PedsQL scores was observed. Relevant themes also emerged from interviews. CONCLUSION: Results support the feasibility of introducing music therapy with adolescents undergoing chemotherapy. Perceived stress and psychological/physical wellbeing were improved in participants.


Asunto(s)
Antineoplásicos , Ansiedad , Musicoterapia , Náusea , Neoplasias , Calidad de Vida , Estrés Psicológico , Vómitos , Humanos , Musicoterapia/métodos , Adolescente , Femenino , Masculino , Náusea/terapia , Ansiedad/terapia , Estrés Psicológico/terapia , Neoplasias/terapia , Neoplasias/psicología , Antineoplásicos/uso terapéutico , Antineoplásicos/efectos adversos , Vómitos/terapia , Estudios de Factibilidad , Resultado del Tratamiento , Dolor/psicología , Anticipación Psicológica , Frecuencia Cardíaca
3.
J Fungi (Basel) ; 8(5)2022 May 06.
Artículo en Inglés | MEDLINE | ID: mdl-35628739

RESUMEN

The fungus Monilinia fructicola is responsible for brown rot on stone and pome fruit and causes heavy yield losses both pre- and post-harvest. Several mycoviruses are known to infect fungal plant pathogens. In this study, a metagenomic approach was applied to obtain a comprehensive characterization of the mycovirome in a worldwide collection of 58 M. fructicola strains. Deep sequencing of double-stranded (ds)RNA extracts revealed a great abundance and variety of mycoviruses. A total of 32 phylogenetically distinct positive-sense (+) single-stranded (ss)RNA viruses were identified. They included twelve mitoviruses, one in the proposed family Splipalmiviridae, and twelve botourmiaviruses (phylum Lenarviricota), eleven of which were novel viral species; two hypoviruses, three in the proposed family Fusariviridae, and one barnavirus (phylum Pisuviricota); as well as one novel beny-like virus (phylum Kitrinoviricota), the first one identified in Ascomycetes. A partial sequence of a new putative ssDNA mycovirus related to viruses within the Parvoviridae family was detected in a M. fructicola isolate from Serbia. The availability of genomic sequences of mycoviruses will serve as a solid basis for further research aimed at deepening the knowledge on virus-host and virus-virus interactions and to explore their potential as biocontrol agents against brown rot disease.

4.
Front Microbiol ; 13: 854852, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-35356516

RESUMEN

Monilinia species are among the most devastating fungi worldwide as they cause brown rot and blossom blight on fruit trees. To understand the molecular bases of their pathogenic lifestyles, we compared the newly assembled genomes of single strains of Monilinia fructicola, M. fructigena and M. laxa, with those of Botrytis cinerea and Sclerotinia sclerotiorum, as the closest species within Sclerotiniaceae. Phylogenomic analysis of orthologous proteins and syntenic investigation suggest that M. laxa is closer to M. fructigena than M. fructicola, and is closest to the other investigated Sclerotiniaceae species. This indicates that M. laxa was the earliest result of the speciation process. Distinct evolutionary profiles were observed for transposable elements (TEs). M. fructicola and M. laxa showed older bursts of TE insertions, which were affected (mainly in M. fructicola) by repeat-induced point (RIP) mutation gene silencing mechanisms. These suggested frequent occurrence of the sexual process in M. fructicola. More recent TE expansion linked with low RIP action was observed in M. fructigena, with very little in S. sclerotiorum and B. cinerea. The detection of active non-syntenic TEs is indicative of horizontal gene transfer and has resulted in alterations in specific gene functions. Analysis of candidate effectors, biosynthetic gene clusters for secondary metabolites and carbohydrate-active enzymes, indicated that Monilinia genus has multiple virulence mechanisms to infect host plants, including toxins, cell-death elicitor, putative virulence factors and cell-wall-degrading enzymes. Some species-specific pathogenic factors might explain differences in terms of host plant and organ preferences between M. fructigena and the other two Monilinia species.

5.
Front Microbiol ; 12: 747560, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-34912308

RESUMEN

Brown rot, caused by different Monilinia species, is a most economically important disease of pome and stone fruits worldwide. In Europe and in Italy, the quarantine pathogen M. fructicola was recently introduced and rapidly spread and, by competing with the main indigenous species Monilinia fructigena and Monilinia laxa, caused relevant changes in Monilinia populations. As a result, in most areas, the pathogen almost replaced M. fructigena and now coexists with M. laxa. The availability of specific and easy-of-use quantification methods is essential to study the population dynamics, and in this work, a new method for the simultaneous quantification of M. fructicola and M. laxa based on droplet digital PCR (ddPCR) technique was established. Under the optimized reaction conditions, consisting of 250/500 nM of primers/probe sets concentration, 58°C as annealing temperature and 50 PCR cycles, the duplex-ddPCR assay was 200-fold more sensitive than duplex-real-time quantitative PCR (qPCR) assay, quantifying < 1 copy µL-1 of target DNA in the PCR mixture. The results obtained with the validation assay performed on apricot and peach fruits, artificially inoculated with conidial suspensions containing different ratios of M. fructicola and M. laxa, showed a high correlation (R 2 = 0.98) between the relative quantity of DNA of the two species quantified by ddPCR and qPCR and a more accurate quantification by ddPCR compared to qPCR at higher concentrations of M. fructicola. The herein described method represents a useful tool for the early detection of Monilinia spp. on stone fruits and for the improving knowledge on the epidemiology of brow rot and interactions between the two prevalent Monilinia species.

6.
Front Microbiol ; 9: 2073, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-30233545

RESUMEN

Trichoderma asperellum strain icc012 and Trichoderma gamsii strain icc080, the microbial active ingredients of RemedierTM (ISAGRO, Novara, Italy), are biocontrol agents (BCAs) employable for crop protection against a wide range of fungal pathogens, including soil-borne pathogens and fungi involved in grapevine trunk disease. In this study, single and duplex real-time quantitative PCR (qPCR) methods to detect and quantify T. asperellum and T. gamsii were developed. Primers/probe sets were designed on the T. asperellum and T. gamsii rpb2 genes and tested for specificity on a panel of microorganisms commonly associated with grape wood and soil. No differences were observed comparing single- and duplex-qPCR assays on different BCAs, 1 pg of target DNA was detected approximately at Cq = 34. R2-values and the efficiency were always equal to 0.99 and >80%, respectively. The detection limit of the duplex-qPCR assay on artificially inoculated samples was 2 × 103 and 4 × 104 conidia g-1 of grape wood tissue and soil, respectively. The methods will be useful to better schedule BCA application in the field and in grapevine nurseries, as well as for investigating the dynamic of BCA populations.

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