262 resultados para Musca domestica


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The future bloom and risk of blossom frosts for Malus domestica were projected using regional climate realizations and phenological (= impact) models. As climate impact projections are susceptible to uncertainties of climate and impact models and model concatenation, the significant horizon of the climate impact signal was analyzed by applying 7 impact models, including two new developments, on 13 climate realizations of the IPCC emission scenario A1B. Advancement of phenophases and a decrease in blossom frost risk for Lower Saxony (Germany) for early and late ripeners was determined by six out of seven phenological models. Single model/single grid point time series of bloom showed significant trends by 2021-2050 compared to 1971-2000, whereas the joint signal of all climate and impact models did not stabilize until 2043. Regarding blossom frost risk, joint projection variability exceeded the projected signal. Thus, blossom frost risk cannot be stated to be lower by the end of the 21st century despite a negative trend. As a consequence it is however unlikely to increase. Uncertainty of temperature, blooming date and blossom frost risk projection reached a minimum at 2078-2087. The projected phenophases advanced by 5.5 d K-1, showing partial compensation of delayed fulfillment of the winter chill requirement and faster completion of the following forcing phase in spring. Finally, phenological model performance was improved by considering the length of day.

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La violenza domestica è un crimine difficile da denunciare: la vittima è sentimentalmente legata al suo aggressore e, non di rado, proviene da contesti sociali che giustificano questo genere di violenze. D’altra parte, non sempre gli interventi posti in essere dalle istituzioni e dai servizi preposti al trattamento dei casi di violenza domestica risultano efficaci. Per ovviare a tali problematiche, alcuni sistemi giuridici occidentali hanno attivato procedimenti specializzati in violenza domestica che promuovono la cooperazione multidisciplinare tra sistema giudiziario e professionisti dell'intervento socio-sanitario. Il presente articolo si propone di indagare le modalità attraverso le quali il Tribunale di Montréal e la Sezione Fasce Deboli della Procura della Repubblica di Torino praticano la cooperazione specializzata in materia di violenza domestica, nell’ambito di un’analisi comparata di due realtà giudiziarie che, seppur piuttosto diverse, presentano interessanti punti comuni. Taking action to stop domestic violence may be a ‘hard job’ for an abused woman, as she is sentimentally involved in the relationship with the batterer and, not so rarely, she often belongs to a social group in which such abuses are justified or tolerated. On the other hand, the domestic violence service programs provided by state institutions and agencies may lack in efficacy. To face such situations some western jurisdictional systems have established specialized courts in domestic violence, that promote a coordinated response and involve both judiciary experts and professionals from the social and health care area. By means of a comparative analysis of the Court of Montreal and the Procura della Repubblica di Torino, Weaker Members Department, this article aims at investigating how the two courts handle the specialized cooperation as to domestic violence: two courts that, though quite different, show interesting similarities.

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A deficiência hídrica é o principal fator limitante à agricultura, causando significativas perdas de produtividade nas mais diversas culturas vegetais. Novas tecnologias agrícolas, tais como a geração de plantas geneticamente modificadas melhor adaptadas a condições adversas de cultivo, são necessárias. Em um estudo anterior do grupo caracterizando a família gênica das desidrinas (DHNs) em macieira (Malus x domestica Borkh.), foi verificado que o gene MdDHN11 possui níveis de expressão cerca de 6 mil vezes maior em sementes em relação a outros tecidos. Sugere-se que o acúmulo nos últimos estágios de desenvolvimento de sementes possua papel protetor na tolerância à dessecação. Além disso, as DHNs são proteínas caracterizadas por seu envolvimento na resposta a mudanças na disponibilidade de água, principalmente os causados por estresses abióticos.

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Abstract. This study aims to determine the effect of giving various types of feed additives to the chemical composition value of super chicken chicken (Gallus domestica). This research is an experimental research using 20 super chicken chickens that come from chicken growth research (growth study). The design used in this study was Completely Randomized Design (RAL), consisting of 4 treatments and 5 replications. The treatment given was (A0 = control (Vita chick 0.7 gram / liter; A1 = 20 ml / liter probio-FM; A2 = 0.08% MOS-oligosaccharide / kg of feed and A3 = herbal leuser KI 5 ml / liter). is a 90 day old super chicken breast Chicken Variable observed moisture content, protein content and fat content The data obtained were analyzed by using vocabulary and tested further by Duncan's Multiple Range Test The results showed that treatment (P> 0,05) to the value of water content and protein of super chicken fowl.Average value of water content at each treatment A0 (69,81%), A1 (70,74%), A2 (71,56%) and A3 (71,52%) while mean value of protein A0 (18,95%), A1 (19,61%), A2 (19,01%) and A3 (19,14%)) P <0,05) to the fat content of super chicken flesh, mean of fat content were A0 (2.02%), A1 (1.49%), A2 (1.37%) and A3 (2.0%).

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Phloridzin is the predominant polyphenol in apple (Malus× domestica Borkh.) where it accumulates to high concentrations in many tissues including the leaves, bark, roots and fruit. Despite its relative abundance in apple the biosynthesis of phloridzin and other related dihydrochalcones remains only partially understood. The key unidentified enzyme in phloridzin biosynthesis is a putative carbon double bond reductase which is thought to act on p-coumaroyl-CoA to produce the dihydro p-coumaroyl-CoA precursor. A functional screen of six apple enoyl reductase-like (ENRL) genes was carried out using transient infiltration into tobacco and gene silencing by RNA interference (RNAi) in order to determine carbon double bond reductase activity and contribution to foliar phloridzin concentrations. The ENRL-3 gene caused a significant increase in phloridzin concentration when infiltrated into tobacco leaves whilst a second protein ENRL-5, with over 98% amino acid sequence similarity to ENRL-3, showed p-coumaroyl-CoA reductase activity in enzyme assays. Finally, an RNAi study showed that reducing the transcript levels of ENRL-3 in transgenic 'Royal Gala' led to a 66% decrease in the concentration of dihydrochalcones in the leaves in the one available silenced line. Overall these results suggest that ENRL-3, and its close homolog ENRL-5, may contribute to the biosynthesis of phloridzin in apple.

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Anthocyanin accumulation is coordinated in plants by a number of conserved transcription factors. In apple (Malus × domestica), an R2R3 MYB transcription factor has been shown to control fruit flesh and foliage anthocyanin pigmentation (MYB10) and fruit skin color (MYB1). However, the pattern of expression and allelic variation at these loci does not explain all anthocyanin-related apple phenotypes. One such example is an open-pollinated seedling of cv Sangrado that has green foliage and develops red flesh in the fruit cortex late in maturity. We used methods that combine plant breeding, molecular biology, and genomics to identify duplicated MYB transcription factors that could control this phenotype. We then demonstrated that the red-flesh cortex phenotype is associated with enhanced expression of MYB110a, a paralog of MYB10. Functional characterization of MYB110a showed that it was able to up-regulate anthocyanin biosynthesis in tobacco (Nicotiana tabacum). The chromosomal location of MYB110a is consistent with a whole-genome duplication event that occurred during the evolution of apple within the Maloideae family. Both MYB10 and MYB110a have conserved function in some cultivars, but they differ in their expression pattern and response to fruit maturity.

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Background Some apple (Malus × domestica Borkh.) varieties have attractive striping patterns, a quality attribute that is important for determining apple fruit market acceptance. Most apple cultivars (e.g. 'Royal Gala') produce fruit with a defined fruit pigment pattern, but in the case of 'Honeycrisp' apple, trees can produce fruits of two different kinds: striped and blushed. The causes of this phenomenon are unknown. Results Here we show that striped areas of 'Honeycrisp' and 'Royal Gala' are due to sectorial increases in anthocyanin concentration. Transcript levels of the major biosynthetic genes and MYB10, a transcription factor that upregulates apple anthocyanin production, correlated with increased anthocyanin concentration in stripes. However, nucleotide changes in the promoter and coding sequence of MYB10 do not correlate with skin pattern in 'Honeycrisp' and other cultivars differing in peel pigmentation patterns. A survey of methylation levels throughout the coding region of MYB10 and a 2.5 Kb region 5' of the ATG translation start site indicated that an area 900 bp long, starting 1400 bp upstream of the translation start site, is highly methylated. Cytosine methylation was present in all three contexts, with higher methylation levels observed for CHH and CHG (where H is A, C or T) than for CG. Comparisons of methylation levels of the MYB10 promoter in 'Honeycrisp' red and green stripes indicated that they correlate with peel phenotypes, with an enrichment of methylation observed in green stripes. Conclusions Differences in anthocyanin levels between red and green stripes can be explained by differential transcript accumulation of MYB10. Different levels of MYB10 transcript in red versus green stripes are inversely associated with methylation levels in the promoter region. Although observed methylation differences are modest, trends are consistent across years and differences are statistically significant. Methylation may be associated with the presence of a TRIM retrotransposon within the promoter region, but the presence of the TRIM element alone cannot explain the phenotypic variability observed in 'Honeycrisp'. We suggest that methylation in the MYB10 promoter is more variable in 'Honeycrisp' than in 'Royal Gala', leading to more variable color patterns in the peel of this cultivar.

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Anthocyanin concentration is an important determinant of the colour of many fruits. In apple (Malus x domestica), centuries of breeding have produced numerous varieties in which levels of anthocyanin pigment vary widely and change in response to environmental and developmental stimuli. The apple fruit cortex is usually colourless, although germplasm does exist where the cortex is highly pigmented due to the accumulation of either anthocyanins or carotenoids. From studies in a diverse array of plant species, it is apparent that anthocyanin biosynthesis is controlled at the level of transcription. Here we report the transcript levels of the anthocyanin biosynthetic genes in a red-fleshed apple compared with a white-fleshed cultivar. We also describe an apple MYB transcription factor, MdMYB10, that is similar in sequence to known anthocyanin regulators in other species. We further show that this transcription factor can induce anthocyanin accumulation in both heterologous and homologous systems, generating pigmented patches in transient assays in tobacco leaves and highly pigmented apple plants following stable transformation with constitutively expressed MdMYB10. Efficient induction of anthocyanin biosynthesis in transient assays by MdMYB10 was dependent on the co-expression of two distinct bHLH proteins from apple, MdbHLH3 and MdbHLH33. The strong correlation between the expression of MdMYB10 and apple anthocyanin levels during fruit development suggests that this transcription factor is responsible for controlling anthocyanin biosynthesis in apple fruit; in the red-fleshed cultivar and in the skin of other varieties, there is an induction of MdMYB10 expression concurrent with colour formation during development. Characterization of MdMYB10 has implications for the development of new varieties through classical breeding or a biotechnological approach.

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Fruit softening in apple (Malus 3 domestica) is associated with an increase in the ripening hormone ethylene. Here, we show that in cv Royal Gala apples that have the ethylene biosynthetic gene ACC OXIDASE1 suppressed, a cold treatment preconditions the apples to soften independently of added ethylene. When a cold treatment is followed by an ethylene treatment, a more rapid softening occurs than in apples that have not had a cold treatment. Apple fruit softening has been associated with the increase in the expression of cell wall hydrolase genes. One such gene, POLYGALACTURONASE1 (PG1), increases in expression both with ethylene and following a cold treatment. Transcriptional regulation of PG1 through the ethylene pathway is likely to be through an ETHYLENE-INSENSITIVE3-like transcription factor, which increases in expression during apple fruit development and transactivates the PG1 promoter in transient assays in the presence of ethylene. A coldrelated gene that resembles a COLD BINDING FACTOR (CBF) class of gene also transactivates the PG1 promoter. The transactivation by the CBF-like gene is greatly enhanced by the addition of exogenous ethylene. These observations give a possible molecular mechanism for the coldand ethylene-regulated control of fruit softening and suggest that either these two pathways act independently and synergistically with each other or cold enhances the ethylene response such that background levels of ethylene in the ethylene-suppressed apples is sufficient to induce fruit softening in apples.

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Mutations in the genes encoding for either the biosynthetic or transcriptional regulation of the anthocyanin pathway have been linked to color phenotypes. Generally, this is a loss of function resulting in a reduction or a change in the distribution of anthocyanin. Here, we describe a rearrangement in the upstream regulatory region of the gene encoding an apple (Malus x domestica) anthocyanin-regulating transcription factor, MYB10. We show that this modification is responsible for increasing the level of anthocyanin throughout the plant to produce a striking phenotype that includes red foliage and red fruit flesh. This rearrangement is a series of multiple repeats, forming a minisatellite-like structure that comprises five direct tandem repeats of a 23-bp sequence. This MYB10 rearrangement is present in all the red foliage apple varieties and species tested but in none of the white fleshed varieties. Transient assays demonstrated that the 23-bp sequence motif is a target of the MYB10 protein itself, and the number of repeat units correlates with an increase in transactivation by MYB10 protein. We show that the repeat motif is capable of binding MYB10 protein in electrophoretic mobility shift assays. Taken together, these results indicate that an allelic rearrangement in the promoter of MYB10 has generated an autoregulatory locus, and this autoregulation is sufficient to account for the increase in MYB10 transcript levels and subsequent ectopic accumulation of anthocyanins throughout the plant.

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Proanthocyanidins (PAs) are products of the flavonoid pathway, which also leads to the production of anthocyanins and flavonols. Many flavonoids have antioxidant properties and may have beneficial effects for human health. PAs are found in the seeds and fruits of many plants. In apple fruit (Malus × domestica Borkh.), the flavonoid biosynthetic pathway is most active in the skin, with the flavan-3-ols, catechin, and epicatechin acting as the initiating units for the synthesis of PA polymers. This study examined the genes involved in the production of PAs in three apple cultivars: two heritage apple cultivars, Hetlina and Devonshire Quarrenden, and a commercial cultivar, Royal Gala. HPLC analysis shows that tree-ripe fruit from Hetlina and Devonshire Quarrenden had a higher phenolic content than Royal Gala. Epicatechin and catechin biosynthesis is under the control of the biosynthetic enzymes anthocyanidin reductase (ANR) and leucoanthocyanidin reductase (LAR1), respectively. Counter-intuitively, real-time quantitative PCR analysis showed that the expression levels of Royal Gala LAR1 and ANR were significantly higher than those of both Devonshire Quarrenden and Hetlina. This suggests that a compensatory feedback mechanism may be active, whereby low concentrations of PAs may induce higher expression of gene transcripts. Further investigation is required into the regulation of these key enzymes in apple.

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Coloured foliage due to anthocyanin pigments (bronze/red/black) is an attractive trait that is often lacking in many bedding, ornamental and horticultural plants. Apples (Malus × domestica) containing an allelic variant of the anthocyanin regulator, Md-MYB10R6, are highly pigmented throughout the plant, due to autoregulation by MYB10 upon its own promoter. We investigated whether Md-MYB10R6 from apple is capable of functioning within the heterologous host Petunia hybrida to generate plants with novel pigmentation patterns. The Md-MYB10R6 transgene (MYB10–R6pro:MYB10:MYB10term) activated anthocyanin synthesis when transiently expressed in Antirrhinumroseadorsea petals and petunia leaf discs. Stable transgenic petunias containing Md-MYB10R6 lacked foliar pigmentation but had coloured flowers, complementing the an2 phenotype of ‘Mitchell’ petunia. The absence of foliar pigmentation was due to the failure of the Md-MYB10R6 gene to self-activate in vegetative tissues, suggesting that additional protein partners are required for Md-MYB10 to activate target genes in this heterologous system. In petunia flowers, where endogenous components including MYB-bHLH-WDR (MBW) proteins were present, expression of the Md-MYB10R6 promoter was initiated, allowing auto-regulation to occur and activating anthocyanin production. Md-MYB10 is capable of operating within the petunia MBW gene regulation network that controls the expression of the anthocyanin biosynthesis genes, AN1 (bHLH) and MYBx (R3-MYB repressor) in petals.

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Diachasmimorpha kraussii is a polyphagous endoparasitoid of dacine fruit flies. The fruit fly hosts of D. krausii, in turn, attack a wide range of fruits and vegetables. The role that fruits play in host selection behaviour of D. kraussii has not been previously investigated. This study examines fruit preference of D. kraussii through a laboratory choice-test trial and field fruit sampling. In the laboratory trial, oviposition preference and offspring performance measures (sex ratio, developmental time, body length, hind tibial length) of D. kraussii were investigated with respect to five fruit species [Psidium guajava L. (guava), Prunis persica L. (peach), Malus domestica Borkh. (apple), Pyrus communis L. (pear) and Citrus sinensis L. (orange)], and two fruit fly species (Bactrocera jarvisi and B. tryoni). Diachasmimorpha kraussii responded to infested fruit of all fruit types in both choice and no-choice tests, but showed stronger preference for guava and peach in the choice tests irrespective of the species of fly larvae within the fruit. The wasp did not respond to uninfested fruit. The offspring performance measures differed in a non-consistent fashion between the fruit types, but generally wasp offspring performed better in guava, peach and orange. The offspring sex ratio, except for one fruit/fly combination (B. jarvisi in apple), was always female biased. The combined results suggest that of the five fruits tested, guava and peach are the best fruit substrates for D. krausii. Field sampling indicated a non-random use of available, fruit fly infested fruit by D. kraussii. Fruit fly maggots within two fruit species, Plachonia careya and Terminalia catappa, had disproportionately higher levels of D. krausii parasitism than would be expected based on the proportion of different infested fruit species sampled, or levels of fruit fly infestation within those fruit.

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Vadelman (Rubus idaeus L.) viljelyala on kasvanut Suomessa voimakkaasti viimeisten viiden vuoden aikana. Vuonna 2005 vadelmaa viljeltiin 473 hehtaarilla. Vadelman satoindeksi on alhainen. Sen pääverso on pitkä, mikä hankaloittaa hoitotoimenpiteitä. Kasvin satoisimmat silmut ovat pääverson kärjessä, joten latvontaa ei kannata tehdä. Suomessakin haluttaisiin kehittää vadelman kasvihuonetuotantoa satokauden pidentämiseksi. Kasvihuonetuotannossa vegetatiivisen kasvun säätäminen on vielä tärkeämpää kuin avomaan viljelyssä. Proheksadioni-kalsium (ProCa) on gibberelliinisynteesi-inhibiittori, jonka on havaittu lyhentävän nivelvälejä sekä lisäävän versojen ja lehtien hiilihydraattipitoisuutta mm. omenalla (Malus domestica Borkh.). Tämän Helsingin yliopiston soveltavan biologian laitoksella toteutetun tutkimuksen tarkoituksena oli selvittää, miten ProCa vaikuttaa kahden kesävadelmalajikkeen ensimmäisen vuoden versojen vegetatiiviseen kasvuun ja edelleen sadontuottokykyyn. Tässä pro gradu -työssä tutkittiin ProCa:n vaikutusta kahden kesävadelmalajikkeen vegetatiiviseen kasvuun, satopotentiaaliin sekä versojen ja silmujen hiilihydraattipitoisuuksiin kesällä 2005 ja talvella 2006. Koetaimina oli 120 Tulameen-lajikkeen ja 150 Glen Ample -lajikkeen tainta. Taimet käsiteltiin kesäkuussa ja käsittely uusittiin osalle taimista neljän viikon kuluttua ensimmäisestä käsittelystä. Koekäsittelyitä oli neljä: ProCa 100 ppm, ProCa 200 ppm, ProCa 100 ppm + ProCa 100 ppm ja ProCa 200 ppm + ProCa 200 ppm. Kontrollikäsittelyitä oli kaksi: vesi sekä vesi + vesi. Kesän aikana havainnoitiin pääverson pituuskasvua ja nivelien määrää. Kesän kasvatuskauden päätyttyä Glen Ample -lajikkeen silmujen ja versojen liukoiset hiilihydraatit ja tärkkelys määritettiin entsymaattisesti. Kylmävarastoinnin jälkeen (71 vrk) tammikuussa 2006 taimet siirrettiin hyötöön kasvihuoneeseen. Hyödön aikana havainnoitiin silmujen puhkeamista ja kukintaa. Hyödön päättyessä hanka- ja pääversojen kuivapaino sekä hankaversojen pituus mitattiin. Kesän 2005 aikana ProCa lyhensi uusien nivelvälien pituuksia väliaikaisesti 1 4 viikon kuluttua käsittelystä. Nivelien lukumäärässä ei tapahtunut suuria muutoksia. Tulameen-lajikkeella kasvu kiihtyi käsittelyn vaikutuksen loputtua. Nivelvälien lyhentymisen takia pääverson kokonaispituus jäi kontrolliin verrattuna 35 % lyhyemmäksi Glen Ample -lajikkeella (ProCa 200 + ProCa 200) ja 14 % lyhyemmäksi Tulameen-lajikkeella samalla käsittelyllä. Myös käsittely ProCa 200 vähensi pääverson pituutta 6 % kontrolliin verrattuna Tulameen-lajikkeella. ProCa-käsittely lisäsi versojen ja silmujen hiilihydraattipitoisuuksia, mutta tuloksissa oli paljon hajontaa. Glen Ample -lajikkeella kaksinkertaiset käsittelyt vähensivät puhjenneiden silmujen osuutta 8 15 päivän kuluttua hyödön aloittamisesta 24 29 %, mutta käsittelyiden väliset erot tasoittuivat hyödön loppuun mennessä. Lisäksi kaksinkertaiset ProCa-käsittelyt vähensivät kukkien määrää 29 44 % 33 65 päivää hyödön alusta, mutta erot tasoittuivat hyödön loppuun mennessä. Käsittelyt eivät vaikuttaneet Tulameen-lajikkeen silmujen puhkeamiseen ja kukintaan. Satopotentiaalissa ei ollut eroa ProCa-käsittelyiden välillä kummallakaan lajikkeella. Glen Ample -lajikkeella hankaversojen kokonaismäärä väheni 27 32 % kasveilla, joita oli käsitelty kaksi kertaa ProCa:lla. Hankaversot olivat kuitenkin vastaavasti 29 43 % pidempiä. Tulameen-lajikkeella ProCa 100 -käsittely vähensi hankaversojen määrää 15 %, mutta hankaversojen pituuteen käsittelyillä ei ollut vaikutusta. Käsittelyillä ei ollut vaikutusta hankaversojen nivelvälien pituuteen kummallakaan lajikkeella. Tutkimuksen perusteella kesällä annetulla ProCa-käsittelyllä voidaan lyhentää pääverson pituutta, mutta satopotentiaaliin käsittelyllä ei ole vaikutusta. Käsittelyajankohta on kriittinen, koska kukkasilmujen kehitys näyttäisi häiriintyvän, jos ruiskutus tehdään loppukesällä.