983 resultados para Plantas - Efeito da seca


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Coffea canephora is one of the most economically important coffee species and in Brazil, Conilon is the most widely cultivated plant of this species. Abiotic stresses such as temperature variations and drought periods are factors that significantly affect their production and tend to worsen with globally recognized climate changes. In an attempt to understand the molecular responses of coffee plants in water deficit conditions, recent studies have identified candidate genes (CGs) as CcDREB1D. This gene showed increased expression in response to drought in the leaves of clone 14 (drought tolerant) in relation to the clone 22 (sensitive to drought) of C. canephora Conilon. Based on these results, the identification of DREB genes and their subgroups (SGs) of C. canephora, the objective is to analyze in silico and also in vivo these genes expression in leaf and root of tolerant (14, 73 and 120) and sensitive clones (22) of C. canephora Conilon submitted or not to a water deficit. In silico expressions of all DREB genes were analyzed from the Coffee Genome Hub Database and in vivo expression was performed by the technique "reverse transcription-quantitative PCR" (RT-qPCR). In silico gene expression analysis was possible to identify DREB genes with potential responses to abiotic stresses, corroborating some validated in vivo results. In this analysis, several genes showed differential expression in response to drought among the SGs (IIV), the tolerant and sensitive clones and the leaf and root. These differentially expressed genes were identified as potential CGs and among them, it was found that most tolerant clones showed increased expression in relation to sensitive in response to drought, with higher expression levels for clones 14 and 73. These highest levels were observed in leaves compared to the roots and SG-I stood at greater number of genes expressed in response to drought. These results suggest that DREB CGs, as Cc05_g06840, Cc02_g03420 e Cc08_g13960, play an important role in the regulatory mechanisms of response to drought in C. canephora Conilon.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Agronomia (Agricultura) - FCA

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Os fatores ambientais podem causar estresse nas plantas acarretando alterações no metabolismo ou desenvolvimento, consequentemente modifica as condições ótimas que afetam o ciclo de vida e induz respostas em todos os níveis funcionais do organismo. A seca é um fator que tem grande influência nas plantas. Algumas espécies arbóreas desenvolveram mecanismos morfológicos, fisiológicos e bioquímicos para superar eventual suprimento inadequado de água. A espécie estudada, Copaifera langsdorffii Desf. está presente em formações vegetais de transição do cerrado stricto senso para a floresta semidecídua. Essa característica possibilita analisar respostas fisiológicas perante os efeitos sazonais da seca presente nestas formações florestais. O objetivo do trabalho foi comparar as respostas fisiológicas de Copaifera langsdorffii Desf. Em relação ao contraste hídrico característico de floresta estacional semidecídua. Para compreeender os efeitos desta sazonalidade avaliamos alguns parâmetros ecofisiológicos como Condutância Estomática (gs), Conteúdo Relativo de Água (Relative Water Content –RWC), Déficit Pressão de Vapor (DPV), potencial água foliar (Ψw) e fluorescência da clorofila. As avaliações foram feitas ao final da época úmida (FEU), final da época seca (FES) e início da época úmida (IEU) ao longo de 3 períodos do dia 5:00h (Predawn – PD), 12:00h (Midday – MD) e 17:00h (Afternoon – AF). Após as análises observamos queda de gs e aumento do DPV, valores constantes de RWC e Ψw foliar no FES. Mesmo em condições de déficit hídrico as plantas não apresentaram mecanismos de fotoinibição

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Reservoirs are the main sources of surface water in Brazil´s semiarid region. The majority of these water supplies, however, are compromised by eutrophication. A severe drought in 2012 contributed to significant losses in water volume, influencing the availability of resources (nutrients and light) for phytoplankton. The aim of this study is to understand the dynamics of the functional groups of phytoplankton and the factors that affect them during a severe drought in the semiarid reservoirs of the northeast. We therefore studied the Dourado, Gargalheiras and Passagem das Traíras reservoirs in Rio Grande do Norte from January 2012 to January 2013. The effect of drought favoured homogeneity within the reservoir, in relation to biotic and abiotic variables, notably the absence of water supply given the lack of flow from its tributaries (intermittent river). The phytoplankton functional groups of bloomforming cyanobacteria (SN, S1 and M) dominated throughout the year 2012, in both the shallow and deep areas of the three reservoirs studied. The groups were related to high concentrations of volatile solids, total phosphorus and ammonia, and high turbidity. Cylindrospermopsis raciborskii (SN group) was the species with the greatest biomass in the three reservoirs. M group (Sphaerocavum brasiliense) performed better in shallow waters with more available phosphorus. Our data showed that high concentrations of nutrients and low availability of light, besides the stability of the water column due to lack of flow and the system´s high residence time, favoured the dominance of bloom-forming cyanobacteria groups, especially those tolerant to shadow

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Pós-graduação em Agronomia (Agricultura) - FCA

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Agronomia (Horticultura) - FCA

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Agronomia (Agricultura) - FCA