988 resultados para Vitis spp


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O conhecimento dos processos germinativos de sementes com tegumentos resistentes, como ocorre em algumas espécies pertencentes à família Fabaceae, pode fornecer subsídios para a produção de mudas e recomposição de áreas degradadas. As sementes de Parkia apresentam germinação natural lenta e irregular, o que pode ser atribuído à impermeabilidade do tegumento. O trabalho foi desenvolvido com o objetivo de avaliar diferentes métodos de superação de dormência física das sementes de Parkia multijuga, P. velutina e P. panurensis. Foram utilizadas sementes coletadas na Base de Operações Geólogo Pedro de Moura (BOGPM), em Coari/AM, submetidas aos seguintes tratamentos: testemunha (T0), desponte (T1), desponte seguido da imersão em água por 8 horas (T2), escarificação mecânica do tegumento em esmeril elétrico (T3), escarificação mecânica do tegumento em esmeril elétrico seguido pela imersão em água por 8 horas (T4), punção com agulha quente (T5), punção com agulha quente seguido pela imersão em água por 8 horas (T6), imersão em ácido sulfúrico (H2SO4) por 30 minutos (T7), imersão em ácido sulfúrico (H2SO4) por 20 minutos (T8), imersão em ácido sulfúrico (H2SO4) por 15 minutos (T9). As sementes de cada tratamento foram submetidas ao teste de germinação, avaliando-se a porcentagem de germinação, tempo médio de emergência de plântulas, índice de velocidade de emergência de plântulas e índice de sincronização. Em geral, todos os tratamentos pré-germinativos aplicados às sementes das três espécies, foram eficientes para aumentar a porcentagem de germinação em relação à testemunha. Os tratamentos de escarificação mecânica com esmeril elétrico na lateral da semente foram mais eficientes na superação da dormência de sementes de P. panurensis e P. multijuga, enquanto a escarificação química com ácido sulfúrico em maior tempo de imersão foi mais eficiente para as sementes de P. panurensis e P. velutina tanto para emergência de plântulas quanto para a formação de plântulas normais.

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Tutkimuksen päätarkoituksena oli selvittää puutiaisten (Ixodes spp.) levinneisyyttä Suomessa vuonna 2014. Tarkoituksena oli samalla selvittää puutiaisten mahdollista runsastumista ja esiintyvyyttä ennakoivia tekijöitä sekä puutiaislevitteisten tautien (borrelioosin ja puutiaisaivokuumeen) esiintyvyyttä. Menetelmänä käytettiin valtakunnallista kyselytutkimusta, jossa ihmiset kertoivat internetissä olleelle kyselytutkimuslomakkeelle puutiaishavainnoistaan vuonna 2014. Kyselylomakkeeseen oli mahdollista vastata touko–marraskuun välisenä aikana. Vastauksista analysoitua puutiaistilannetta verrattiin viimeiseen kattavaan puutiaisten levinneisyyttä koskevaan tutkimukseen Suomessa vuosilta 1956–1958. Vertailun avulla saatiin tietoa puutiaisten levinneisyysalueen muutoksista. Tulokset osoittivat, että puutiaiset ovat levinneet yhä pohjoisemmaksi Suomessa viimeisen viidenkymmenen vuoden aikana. Havaintojen ja ihmisten kertomien kokemusten perusteella voitiin olettaa, että puutiaiskanta on myös paikoin runsastunut Suomessa. Puolet puutiaishavainnoista oli tehty eläimestä, joista suurin osa oli koirasta. Eniten havaintoja kertyi niityiltä ja heinikoilta, ja suurin osa näistä oli eläimestä tehtyjä havaintoja. Ihmisistä tehtyjä havaintoja tehtiin eniten puistoilta tai pihoilta. Eniten puutiaishavaintoja tehtiin touko–kesäkuussa, jonka jälkeen havaintomäärät vähenivät. Puutiaishavaintojen määrät eri säätiloissa ja kellonaikoina olivat todennäköisesti yhteydessä ihmisten aktiivisuuteen, sillä havaintoja kertyi eniten päiväsaikaan aurinkoisella ja puolipilvisellä säällä. Borrelioosin diagnoosin oli ilmoittanut saaneensa 110 havainnoitsijaa ja puutiaisaivokuumeen diagnoosin 1 havainnoitsija. Eniten diagnoosiin johtaneita havaintoja tehtiin niinä kuukausina ja niissä ympäristöissä, joissa puutiaishavaintojakin tehtiin eniten. Syyksi puutiaisen yleistymiseen on epäilty ilmastonmuutosta ja sen vaikutuksia suoraan puutiaisiin tai välillisesti isäntäeläimiin. Ilmaston yhä lämmetessä ja kasvukauden pidentyessä, puutiaiset todennäköisesti jatkavat levittäytymistä pohjoisemmaksi ja puutiaisten vuosittainen aktiivinen aika pidentyy. Tämän myötä voidaan myös olettaa, että puutiaisten levittämät taudit yleistyvät ja leviävät yhä laajemmalle Suomessa.

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Although a substantial amount of research has been done on all aspects ofHeliconius biology and their ecological interactions with Passiflora, there has not hitherto been a phylogenetic examination of this association for coevolution. To test the HeliconiuslPassilfora association for coevolutionary congruence, phylogenies for each group were established and compared. The phylogeny for 14 species ofHeliconiinae from Costa Rica was based on combined sequence data from rRNA ITS 2 and partial EF-1a gene regions. For the Passifloraceae, 17 host plant species were utilized to establish a phylogeny based on tRNALeucine and ITS 1/5.8S1 ITS 2 sequence data. The phylogenies for both groups were largely in agreement with current classification (for Passifloraceae) and previously established phylogenies. Associations with the large subgenera Passiflora and Decaloba correspond with the two major Advanced Radiation groups in Heliconius. Although strict congruence above subgenus level was not observed, broad scale congruence was evident. One main host shift as well as other possible explanations for lack of strict congruence are suggested.

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Niagara Peninsula of Ontario is the largest viticultural area in Canada. Although it is considered to be a cool and wet region, in the last decade many water stress events occurred during the growing seasons with negative effects on grape and wine quality. This study was initiated to understand and develop the best strategies for water management in vineyards and those that might contribute to grape maturity advancement. The irrigation trials investigated the impact of time of initiation (fruit set, lag phase and veraison), water replacement level based on theoretical loss through crop evapotranspiration (ETc; 100,50 and 25%) and different irrigation strategies [partial root zone drying (PRD) versus regulated deficit irrigation (RD!)] on grape composition and wine sensory profiles. The irrigation experiments were conducted in a commercial vineyard (Lambert Vineyards Inc.) located in Niagara-on-the-Lake, Ontario, from 2005 through 2009. The two experiments that tested the combination of different water regimes and irrigation time initiation were set up in a randomized block design as follows: Baco noir - three replicates x 10 treatments [(25%, 50% and 100% of ETc) x (initiation at fruit set, lag phase and veraison) + control]; Chardonnay - three replicates x seven treatments [(25%, 50% and 100% of ETc) x (initiation at fruit set and veraison) + control]. The experiments that tested different irrigation strategies were set up on two cultivars as follows: Sauvignon blanc - four replicates x four treatments [control, fully irrigated (100% ETc), PRD (100% ETc) and RDI (25% ETc)]; Cabemet Sauvignon - four replicates x five treatments [control, fully irrigated (100% ETc), PRD (100% ETc), RDI (50% ETc) and RDI (25% ETc)]. The controls in each experiment were nonirrigated. The irrigation treatments were compared for many variables related to soil water status, vine physiology, berry composition, wine sensory profile, and hormone composition [(abscisic acid (ABA) and its catabolites]. Soil moisture profile was mostly affected by irrigation treatments between 20 and 60 em depth depending on the grapevine cultivar and the regime of water applied. Overall soil moisture was consistently higher throughout the season in 100 and 50% ETc compare to the control. Transpiration rates and leaf temperature as well as shoot growth rate were the most sensitive variables to soil water status. Drip irrigation associated with RDI treatments (50% ETc and 25% ETc) had the most beneficial effects on vine physiology, fruit composition and wine varietal typicity, mainly by maintaining a balance between vegetative and reproductive parts of the vine. Neither the control nor the 100 ETc had overall a positive effect on grape composition and wine sensory typicity. The time of irrigation initiation affected the vine physiology and grape quality, the most positive effect was found in treatments initiated at lag phase and veraison. RDI treatments were overall more consistent in their positive effect on grape composition and wine varietal typicity comparing to PRD treatment. The greatest difference between non-irrigated and irrigated vines in most of the variables studied was found in 2007, the driest and hottest season of the experimental period. Soil water status had a greater and more consistent effect on red grapevine cultivars rather than on white winegrape cultivars. To understand the relationships among soil and plant water status, plant physiology and the hormonal profiles associated with it, abscisic acid (ABA) and its catabolites [phaseic acid (PA), dihydrophaseic acid (DPA), 7-hydroxy-ABA (TOH-ABA), 8' -hydroxy-ABA, neophaseic acid and abscisic acid glucose ester (ABA-GE)] were analyzed in leaves and berries from the Baco noir and Chardonnay irrigation trials over two growing seasons. ABA and some of its catabolites accurately described the water status in the vines. Endogenous ABA and some of its catabolites were strongly affected in Baco noir and Chardonnay by both the water regime (i.e. ET level) and timing of irrigation initiation. Chardonnay grapevines produced less ABA in both leaves and berries compared to Baco noir, which indicated that ABA synthesis is also cultivar dependant. ABA-GE was the main catabolite in treatments with high water deficits, while PA and DPA were higher in treatments with high water status, suggesting that the vine produced more ABA-GE under water deficits to maintain rapid control of the stomata. These differences between irrigation treatments with respect to ABA and catabolites were particularly noticeable in the dry 2007 season. Two trials using exogenous ABA investigated the effect of different concentrations of ABA and organs targeted for spraying, on grape maturation and berry composition of Cabemet Sauvignon grapevines, in two cool and wet seasons (2008-2009). The fIrst experiment consisted of three replicates x three treatments [(150 and 300 mg/L, both applications only on clusters) + untreated control] while the second experiment consisted in three replicates x four treatments [(full canopy, only clusters, and only leaves sprayed with 300 ppm ABA) + untreated control]. Exogenous ABA was effective in hastening veraison, and improving the composition of Cabemet Sauvignon. Ability of ABA to control the timing of grape berry maturation was dependant on both solution concentration and the target organ. ABA affected not only fruit composition but also yield components. Berries treated with ABA had lower weight and higher skin dry mass, which constitutes qualitative aspects desired in the wine grapes. Temporal advancement of ripening through hormonal control can lead to earlier fruit maturation, which is a distinct advantage in cooler areas or areas with a high risk of early frost occurrence. Exogenous ABA could provide considerable benefits to wine industry in terms of grape composition, wine style and schedule activities in the winery, particularly in wet and cool years. These trials provide the ftrst comprehensive data in eastern North America on the response of important hybrid and Vitis vinifera winegrape cultivars to irrigation management. Results from this study additionally might be a forward step in understanding the ABA metabolism, and its relationship with water status. Future research should be focused on ftnding the ABA threshold required to trigger the ripening process, and how this process could be controlled in cool climates.

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While nitrogen is critical for all plants, they are unable to utilize organically bound nitrogen in soils. Therefore, the majority of plants obtain useable nitrogen through nitrogen fixing bacteria and the microbial decomposition of organic matter. In the majority of cases, symbiotic microorganisms directly furnish plant roots with inorganic forms of nitrogen. More than 80% of all land plants form intimate symbiotic relationships with root colonizing fungi. These common plant/fungal interactions have been defined largely through nutrient exchange, where the plant receives limiting soil nutrients, such as nitrogen, in exchange for plant derived carbon. Fungal endophytes are common plant colonizers. A number of these fungal species have a dual life cycle, meaning that they are not solely plant colonizers, but also saprophytes, insect pathogens, or plant pathogens. By using 15N labeled, Metarhizium infected, wax moth larvae (Galleria mellonella) in soil microcosms, I demonstrated that the common endophytic, insect pathogenic fungi Metarhizium spp. are able to infect living soil borne insects, and subsequently colonize plant roots and furnish ts plant host with useable, insect-derived nitrogen. In addition, I showed that another ecologically important, endophytic, insect pathogenic fungi, Beauveria bassiana, is able to transfer insect-derived nitrogen to its plant host. I demonstrated that these relationships between various plant species and endophytic, insect pathogenic fungi help to improve overall plant health. By using 13C-labeled CO2, added to airtight plant growth chambers, coupled with nuclear magnetic resosnance spectroscopy, I was able to track the movement of carbon from the atmosphere, into the plant, and finally into the root colonized fungal biomass. This indicates that Metarhizium exists in a symbiotic partnership with plants, where insect nitrogen is exchanged for plant carbon. Overall these studies provide the first evidence of nutrient exchange between an insect pathogenic fungus and plants, a relationship that has potentially useful implications on plant primary production, soil health, and overall ecosystem stability.

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Tesis (Maestría en Ciencias con Especialidad en Botánica). UANL

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Tesis (Maestría en Salud Pública Especialidad en Nutrición Comunitaria) UANL

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Tesis (Maestría en Ciencias con Especialidad en Microbiología) U.A.N.L.