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Ferreira, M. V.

Publications and source records attributed to Ferreira, M. V..

2 recordsLinked to original sources

Bacterial wilt resistance is correlated with rhizosphere bacterial communities in wild potato Solanum malmeanum

Wild potatoes are long-evolving relatives of the cultivated potatoes we have today. These wild Solanum species harbor traits that can be exploited to develop more nutritive and resilient potato varieties, providing the genetic basis for resistance to abiotic and biotic stresses such as drought, low temperatures, diseases and pests. Wild potato species are widely used as valuable genetic resources in breeding programs, including efforts aimed at improving resistance to bacterial wilt caused by Ralstonia solanacearum. Among the wild species native to Uruguay, Solanum malmeanum has emerged as a particularly valuable source of resistance. The aim of this work was to investigate weather differences in bacterial wilt resistance among S. malmeanum accessions are associated with structural and compositional changes of rhizosphere bacterial communities. Two S. malmeanum accessions were compared, one susceptible (RN9P2) and the other resistant (A11P1) to bacterial wilt. The impact of plant resistance and pathogen colonization on the structure of rhizosphere bacterial communities were evaluated using high throughput 16S rRNA gene amplicon-sequencing. Significant differences were observed between accessions and pronounced shifts in rhizosphere bacterial communities were detected in response to pathogen inoculation. Cryseobacterium, Sphingobacterium, Komagataeibacter, Gluconobacter, Lactobacillus and Dyella were differential genera and enriched in the rhizosphere of the resistant accession. Several of these genera have been previously associated with disease suppression. Overall, these results suggest that the rhizosphere bacterial community associated with resistant S. malmeanum accessions may contribute to protection against R. solanacearum infection.

microbiology↗

Morphine-induced side effects can be differentially modulated by cannabidiol in male and female rats.

Opioid use disorder (OUD) is a public health problem that includes symptoms such as withdrawal syndrome and opioid-induced hyperalgesia (OIH). Currently, drugs to treat side effects of opioids also have undesirable effects, which lead to limitations. This study investigated the effect of a treatment with cannabidiol (CBD) in morphine-induced hyperalgesia and withdrawal signs in morphine-dependent rats. Male and female rats were submitted to morphine-induced physical dependence protocol consisting of a twice daily treatment with morphine (7.89 mg/kg, 1ml/kg, s.c.) for 10 days. Nociception was measured using the hot plate test and morphine-induced thermal hyperalgesia was equally achieved following 7-10 days of morphine administration in male and female rats. Repeated treatment with CBD (30 mg/kg) was sufficient to prevent thermal hyperalgesia in male and female rats. Subsequently, rats received an acute administration of naloxone (2 mg/kg. s.c.), 90 minutes after the morphine treatment on day 11, the number of withdrawal signs was scored. Rats that received treatment exclusively with morphine presented significant withdrawal signs compared to control (Water). Morphine-dependent female rats showed a prevalent stereotyped behavior of rearing, whereas male rats had the sign of teeth chattering as the most preeminent. Treatment with CBD on day 11 partially attenuated the withdrawal signs in morphine-dependent male rats, but not female rats. Altogether, our data provide evidence of an anti-hyperalgesic effect of CBD in rats. Male and female rats treated chronically with morphine exhibited withdrawal signs in different ratios, indicating sex-differences in withdrawal behavior and CBD attenuated withdrawal signs in a sex-dependent manner.

pharmacology and toxicology↗