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7 result(s) for "Marques, Viviani V."
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Transcriptional Profile of Soybean Seeds with Contrasting Seed Coat Color
Soybean is the primary source of vegetable protein and is used for various purposes, mainly to feed animals. This crop can have diverse seed coat colors, varying from yellow, black, brown, and green to bicolor. Black seed coat cultivars have already been assigned as favorable for both seed and grain production. Thus, this work aimed to identify genes associated with soybean seed quality by comparing the transcriptomes of soybean seeds with contrasting seed coat colors. The results from RNA-seq analyses were validated with real-time PCR using the cultivar BRS 715A (black seed coat) and the cultivars BRS 413 RR and DM 6563 IPRO (yellow seed coat). We found 318 genes differentially expressed in all cultivars (freshly harvested seeds and seeds stored in cold chamber). From the in silico analysis of the transcriptomes, the following genes were selected and validated with RT-qPCR: ACS1, ACSF3, CYP90A1, CYP710A1, HCT, CBL, and SAHH. These genes are genes induced in the black seed coat cultivar and are part of pathways responsible for ethylene, lipid, brassinosteroid, lignin, and sulfur amino acid biosynthesis. The BRSMG 715A gene has almost 4times more lignin than the yellow seed coat cultivars. These attributes are related to the BRSMG 715A cultivar’s higher seed quality, which translates to more longevity and resistance to moisture and mechanical damage. Future silencing studies may evaluate the knockout of these genes to better understand the biology of soybean seeds with black seed coat.
Association of SO2-Generating Pads before Packaging and during Cold Storage to Extend the Conservation of ‘Italia’ Table Grapes
The SO2-generating pads contain different concentrations of sodium metabisulfite, which absorbs water from the grapes’ transpiration, releasing SO2 gas, and there are slow-(SlowSO2) and dual (DualSO2)-releasing pads (fast release in the first 48 h and slow for up to 60 days). The ultra-fast SO2-generating pad (FieldSO2) releases the SO2 quickly for up to 6 h, and it was designed to be used soon after the harvest and until the grapes’ packaging. The goal was to study the effect of FieldSO2 associated with SlowSO2 and DualSO2 pads on gray mold incidence and physicochemical and appearance characteristics of ‘Italia’ table grapes. Grapes were harvested from a commercial vineyard in Parana, Brazil, in 2020 and 2021, and packaged in cardboard boxes, and the treatments were as follows: control (without SO2-generating pads); FieldSO2 + SlowSO2; and FieldSO2 + DualSO2. After 30, 45, 60, 75, and 90 days of cold storage (1 ± 1 °C), the grapes were assessed for gray mold incidence, mass loss, shattered berries, stem browning, and filamentous fungi on the surface. The use of FieldSO2 associated with SO2-generating pads is effective in controlling gray mold on ‘Italia’ table grapes, especially the treatment FieldSO2 + DualSO2, which provides the lowest incidence of the disease up to 90 days of cold storage, while the combination with SlowSO2 results in intermediate efficacy. Treatments combining these SO2-generating pads extend the postharvest shelf life of ‘Italia’ grapes, with few shattered berries, low mass loss and freshness of the rachis without impairing the bunch’s appearance.
Enhanced resistance to citrus canker in transgenic sweet orange expressing the sarcotoxin IA gene
Citrus canker, caused by the bacterial pathogen Xanthomonas citri subp. Citri ( Xcc ), is a serious disease reported in most citrus-producing areas around the world. Although different levels of field resistance to citrus canker have been reported in sweet oranges, they are usually not sufficient to provide adequate control of the disease. Ectopic over-expression of antibacterial genes is one of the potential strategies to increase plant resistance to bacterial diseases. Previous in vitro results showed that sarcotoxin IA, an antimicrobial peptide isolated from the flesh fly ( Sarcophaga peregrina ), can be efficient to control different plant pathogenic bacteria, including Xcc . Transgenic “Pera” sweet orange ( Citrus sinensis [L.] Osbeck) plants constitutively expressing the sarcotoxin IA peptide fused to the PR1a signal peptide from Nicotiana tabacum for secretion in the intercellular space were obtained by Agrobacterium -mediated transformation using thin sections of mature explants. Citrus canker resistance evaluation in leaves of transgenic and non-transgenic plants was performed through inoculations with Xcc by infiltration and spraying. The Xcc population was up to 2 log unit lower in leaves of the transgenic plants compared to those of non-transgenic controls. Incidence of canker lesions was significantly higher in non-transformed controls (>10 lesions/cm 2 ) than in the transgenic plants (<5 lesions/cm 2 ) after injection infiltration or spraying with Xcc inoculum. Accumulation of sarcotoxin IA peptide in sweet orange tissue did not cause any deleterious effects on the growth and development of the transgenic plants, indicating this approach is suitable to provide resistance to citrus canker.
Association of SOsub.2-Generating Pads before Packaging and during Cold Storage to Extend the Conservation of 'Italia' Table Grapes
The SO[sub.2] -generating pads contain different concentrations of sodium metabisulfite, which absorbs water from the grapes’ transpiration, releasing SO[sub.2] gas, and there are slow-(SlowSO[sub.2] ) and dual (DualSO[sub.2] )-releasing pads (fast release in the first 48 h and slow for up to 60 days). The ultra-fast SO[sub.2] -generating pad (FieldSO[sub.2] ) releases the SO[sub.2] quickly for up to 6 h, and it was designed to be used soon after the harvest and until the grapes’ packaging. The goal was to study the effect of FieldSO[sub.2] associated with SlowSO[sub.2] and DualSO[sub.2] pads on gray mold incidence and physicochemical and appearance characteristics of ‘Italia’ table grapes. Grapes were harvested from a commercial vineyard in Parana, Brazil, in 2020 and 2021, and packaged in cardboard boxes, and the treatments were as follows: control (without SO[sub.2] -generating pads); FieldSO[sub.2] + SlowSO[sub.2] ; and FieldSO[sub.2] + DualSO[sub.2] . After 30, 45, 60, 75, and 90 days of cold storage (1 ± 1 °C), the grapes were assessed for gray mold incidence, mass loss, shattered berries, stem browning, and filamentous fungi on the surface. The use of FieldSO[sub.2] associated with SO[sub.2] -generating pads is effective in controlling gray mold on ‘Italia’ table grapes, especially the treatment FieldSO[sub.2] + DualSO[sub.2] , which provides the lowest incidence of the disease up to 90 days of cold storage, while the combination with SlowSO[sub.2] results in intermediate efficacy. Treatments combining these SO[sub.2] -generating pads extend the postharvest shelf life of ‘Italia’ grapes, with few shattered berries, low mass loss and freshness of the rachis without impairing the bunch’s appearance.
Association of SO 2 -Generating Pads before Packaging and during Cold Storage to Extend the Conservation of 'Italia' Table Grapes
The SO -generating pads contain different concentrations of sodium metabisulfite, which absorbs water from the grapes' transpiration, releasing SO gas, and there are slow-(SlowSO ) and dual (DualSO )-releasing pads (fast release in the first 48 h and slow for up to 60 days). The ultra-fast SO -generating pad (FieldSO ) releases the SO quickly for up to 6 h, and it was designed to be used soon after the harvest and until the grapes' packaging. The goal was to study the effect of FieldSO associated with SlowSO and DualSO pads on gray mold incidence and physicochemical and appearance characteristics of 'Italia' table grapes. Grapes were harvested from a commercial vineyard in Parana, Brazil, in 2020 and 2021, and packaged in cardboard boxes, and the treatments were as follows: control (without SO -generating pads); FieldSO + SlowSO ; and FieldSO + DualSO . After 30, 45, 60, 75, and 90 days of cold storage (1 ± 1 °C), the grapes were assessed for gray mold incidence, mass loss, shattered berries, stem browning, and filamentous fungi on the surface. The use of FieldSO associated with SO -generating pads is effective in controlling gray mold on 'Italia' table grapes, especially the treatment FieldSO + DualSO , which provides the lowest incidence of the disease up to 90 days of cold storage, while the combination with SlowSO results in intermediate efficacy. Treatments combining these SO -generating pads extend the postharvest shelf life of 'Italia' grapes, with few shattered berries, low mass loss and freshness of the rachis without impairing the bunch's appearance.
Supplementation with selenium, iron, and vitamin E in calves under immunological challenge
IntroductionThe management and nutrition of young calves are important for the production system due to their great impact on future milk production potential. This study was to evaluate the performance and health of calves in the suckling phase, with supplementation of selenium, iron, and vitamin E while undergoing immunological challenge with Anaplasma marginale .MethodsAn experiment was conducted on an experimental farm using 42 newborn Holstein male calves, aged up to 60 days, in a completely randomized design, and they were assigned to the following three treatments: C (control milk replacer, N = 14); SeVitE (milk replacer supplemented with 0.6 mg organic selenium/kg + 100 IU vitamin E, N = 14); SeVitEFe (milk replacer supplemented with 0.6 mg organic selenium/kg + 100 IU vitamin E + 200 mg Fe chelate/kg, N = 14).ResultsSelenium, iron, and vitamin E intakes were higher in supplemented animals. The mean blood count of Anaplasma marginale was lower in supplemented calves compared to controls and increased with time after inoculation. Increased serum selenium was observed in supplemented calves, without vitamin E and iron changes. Plasma lactate concentration was lower in supplemented animals and those with SeVitEFe had lower urea concentration at 60 days compared to control. Treatments did not influence hematological parameters, while some only changed with the age of animals. Plasma glutathione peroxidase concentrations were higher in supplemented animals, with the interaction between treatment and time, where higher concentrations were observed at 40 days of experiment for supplemented calves compared to control. Treatments did not influence the performance of animals. Animals with SeVitEFe showed a lower incidence of diarrhea in the first thirty days of the experiment.DiscussionSupplementation of selenium, iron, and vitamin E showed effectiveness in improving the animals’ oxidative metabolism, altering biochemical and hematological parameters, and reducing the pathogens of Anaplasma marginale , and the incidence of diarrhea, but did not enhance the animals’ performance.
Heisenberg's uncertainty principle in the PTOLEMY project: a theory update
We discuss the consequences of the quantum uncertainty on the spectrum of the electron emitted by the \\(\\)-processes of a tritium atom bound to a graphene sheet. We analyze quantitatively the issue recently raised in [Cheipesh et al., Phys. Rev. D 104, 116004 (2021)], and discuss the relevant time scales and the degrees of freedom that can contribute to the intrinsic spread in the electron energy. We perform careful calculations of the potential between tritium and graphene with different coverages and geometries. With this at hand, we propose possible avenues to mitigate the effect of the quantum uncertainty.