2017
DOI: 10.30969/acsa.v13i4.886
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Análise fisiológica em mudas de guanandi (calophyllum BRASILIENSE cambess) submetidas ao déficit hídrico

Abstract: O guanandi (Calophyllum brasiliense Cambess) é uma espécie pertencente à família Clusiaceae, desenvolve-se preferencialmente em florestas semidecíduas, ombrófila densa, originária na região amazônica e do cerrado. Este trabalho teve por objetivo avaliar as respostas fisiológicas em plantas jovens de guanandi submetidas ao déficit hídrico. Foram utilizados 3 tratamentos hídricos: rega diária, rega a cada 5 dias e rega a cada 15 dias, com 5 repetições por tratamento, durante um período de 29 dias. Os parâmetros … Show more

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Cited by 11 publications
(11 citation statements)
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“…The decrease in water availability, influenced by the increase in abscisic acid, induces stomatal closure (França et al, 2017), reducing the assimilation and diffusion of CO2 (Ashraf & Harris, 2013), as we observed in S. terebinthifolia. Conditions of low water availability result in a decrease in stomatal conductance (Wong et al, 1979).…”
Section: Resultssupporting
confidence: 54%
See 1 more Smart Citation
“…The decrease in water availability, influenced by the increase in abscisic acid, induces stomatal closure (França et al, 2017), reducing the assimilation and diffusion of CO2 (Ashraf & Harris, 2013), as we observed in S. terebinthifolia. Conditions of low water availability result in a decrease in stomatal conductance (Wong et al, 1979).…”
Section: Resultssupporting
confidence: 54%
“…Tropical regions, particularly the Cerrado ecoregion, are characterized by different vegetation types and climatic seasonality that are caused by water fluctuations, leading to water deficit in certain periods of the year as a consequence of precipitation fluctuations (Fonseca et al, 2017). The low water availability in the soils of the Cerrado region can cause functional and metabolic damage to plants, such as stomatal closure, reduced Rubisco carboxylation efficiency, and increased intercellular CO2 concentration and production of reactive oxygen species (ROS), thereby compromising plant photosynthetic capacity and growth (França et al, 2017;Resende et al, 2019).…”
Section: Introductionmentioning
confidence: 99%
“…O crescimento radicular (Figura 1 D) foi a única variável biométrica acrescida com o estresse hídrico (comparação de cada tratamento individualmente nas respectivas coletas). Diversos estudos descrevem que o aprofundamento radicular é um atributo comum às plantas que são capazes de tolerar à seca (OLIVEIRA et al, 2010;FRANÇA et al, 2017;CUNHA et al, 2018). Esse recurso é útil, pois permite que a planta explore camadas mais profundas do solo em busca de água, possibilitando a manutenção de suas atividades fisiológicas e bioquímicas mesmo em situações adversas (NASCIMENTO, 2013).…”
Section: Resultsunclassified
“…Low soil water availability has been observed to result in metabolic changes in different plant species (Taiz and Zeiger, 2013;Costa et al, 2015;Rosa et al, 2017;Nunes et al, 2017;França et al, 2017), changes in photosynthesis and transpiration, damage to the photosynthetic apparatus leading to decreased growth rate, and protection mechanisms such as increased antioxidant activity in response the reactive oxygen species (ROS). According to the review of Watkins et al (2017), the RODS can be generated by the oxidase enzymes (NADPH oxidase/RBOH), which are induced by hormones, such as ABA.…”
Section: Introductionmentioning
confidence: 99%