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1.
Ciênc. rural (Online) ; 51(6): e20200452, 2021. tab, graf
Article in English | LILACS-Express | LILACS | ID: biblio-1153920

ABSTRACT

ABSTRACT: This study determined the spatial variability of soil penetration resistance and yield of the soybean crop in lowland areas. The soil resistance to penetration at four different depths (0 to 0.10 m; 0.11 to 0.20 m; 0.21 to 0.30 m and 0.31 to 0.40 m), volumetric humidity of the soil at two depths (0 to 0.20 m and 0.21 to 0.40 m) and soybean yield were determined in an area of 1.13 hectares, using a sample mesh of 10 x 10 m. The corresponding data were subjected to descriptive statistical analysis. Pearson's simple linear correlation analysis (p≤0.05) was conducted and the spatial dependence was assessed by analyzing the isotropic semivariograms using spherical, exponential, linear, and Gaussian models. The results showed that the soil penetration resistance increased with depth, with restrictive values to root growth between 0.05 and 0.35 m. There was no correlation between yield and soil penetration resistance, and the semivariograms did not show a defined ascending region regarding the soil penetration resistance data. For the conditions under which the experiment was conducted, the sample 10 x 10 m mesh was suitable for assessing the spatial variability of soil resistance to penetration in depths exceeding 0.10 m.


RESUMO: Este trabalho teve como objetivo identificar a variabilidade espacial da resistência do solo à penetração e na produtividade da cultura da soja, em área de várzea. Foram realizadas determinações de resistência do solo à penetração, em quatro profundidades (0 a 0,10 m; 0,11 a 0,20 m; 0,21 a 0,30 m e 0,31 a 0,40 m); umidade volumétrica do solo, em duas profundidades (0 a 0,20 m e 0,21 a 0,40 m); e produtividade da soja em uma área de 1,13 hectares, utilizando-se malha amostral de 10 x 10 m. Os dados foram submetidos à análise estatística descritiva. Realizou-se análise de correlação linear simples de Pearson (p≤0,05) e a dependência espacial foi avaliada pela análise de semivariogramas isotrópicos, utilizando os modelos: esférico, exponencial, linear e gaussiano. Os resultados indicaram que, a resistência do solo à penetração aumentou em profundidade, com valores restritivos ao crescimento radicular entre 0,05 e 0,35 m. Não se obteve correlação entre produtividade e resistência do solo à penetração sendo que, para os dados de resistência do solo à penetração, os semivariogramas não apresentaram uma região ascendente definida. Para as condições em que o experimento foi realizado, a malha amostral de 10 x 10 m utilizada foi adequada para avaliar a variabilidade espacial da resistência do solo à penetração em profundidades superiores a 0,10 m.

2.
Bol. latinoam. Caribe plantas med. aromát ; 14(3): 190-205, mayo 2015. tab, ilus
Article in Spanish | LILACS | ID: biblio-907484

ABSTRACT

Este trabajo describe la variabilidad química del aceite esencial (AE) de N. megapotamica, utilizando análisis multivariado. Se colectaron hojas de tres individuos en una población en Santa Maria, Brasil, en cada estación durante un año y se clasificaron en hojas jóvenes y viejas. Los AE se obtuvieron por hidrodestilación y la composición química fue determinada por cromatografía de gases acoplada a espectrometría de masas. Se realizó un análisis de agrupamiento jerárquico para formación de grupos químicos (GQ) y análisis de componentes principales (ACP) para verificar cuáles constituyentes influenciaron la formación de grupos. Inicialmente se observaron dos agrupamientos en el dendrograma debido a concentraciones de α-pineno y biciclogermacreno, constituyentes mayoritarios. En el segundo corte se discriminaron cinco GQ, siendo este también el número de componentes principales con valores propios superiores a 1. Los isómeros de asarona se observaron solamente en el AE de dos individuos (GQ5), constituyendo los principales elementos de diferenciación.


This work describes the chemical variability of the essential oils (EO) of N. megapotamica using multivariate analysis. Leaves of three individuals of a population in Santa Maria-RS were collected per season for a year, and classified into young and old. The EO were obtained by hydrodistillation and the chemical composition was determined by gas chromatography coupled to mass spectrometry (GC/MS). Cluster analysis (HCA) were performed for formation of chemical groups (CG), and principal component analysis was done (PCA) to determine which constituents influenced the formation of groups. Initially, two clusters were observed in the dendrogram, due to the concentration of α-pinene and bicyclogermacrene, major constituents of the EO. The second section showed five different CG, which is also the number of principal components with eigenvalues greater than 1. The occurrence of isomers of asarone was observed only in EO of two individuals (CG5), containing the main elements of differentiation.


Subject(s)
Lauraceae/chemistry , Oils, Volatile/chemistry , Phenylpropionates/analysis , Plant Extracts/chemistry , Terpenes/analysis , Multivariate Analysis
3.
Braz. arch. biol. technol ; 58(1): 12-21, Jan-Feb/2015. tab, graf
Article in English | LILACS | ID: lil-735812

ABSTRACT

This study evaluated the seasonal influence on the yield and chemical composition of the essential oil (EO) of Nectandra megapotamica. Fresh young (YL) and old leaves (OL) obtained from three trees in each season (Nov/2010 to Sep/2011) collected in Santa Maria-RS were hydrodistilled in triplicate. The chemical composition was determined by the gas chromatography coupled to mass spectrometry (GC-MS) and the yield on dry basis was evaluated by two-way ANOVA (seasons, development stage). Spring (Sp) and summer (Su) showed higher average incomes (0.45 and 0.33%), which occurred when flowering, fruiting, and growth of YL and senescence of OL took place, while autumn (Au) presented the lowest yield (0.25%) during the rustification of OL. The highest yield was obtained for the YL in Sp (0.59%) and the lowest for the OL in Au (0.21%). The major constituents of the EO were independent from the season and were identified as α-pinene, bicyclogermacrene, β-pinene, germacrene D, and limonene. Seasonality and phenology influenced the production of EO probably due to morphological and metabolic alterations in the leaves as well as due to the needs of the tree, such as attraction and/or protection.

4.
Neotrop. ichthyol ; 11(3): 667-674, jun. 2013. tab, graf
Article in English | LILACS | ID: lil-690109

ABSTRACT

This study analyzed the chemical composition and anesthetic potential of essential oil (EO) of Nectandra megapotamica in fat snook (Centropomus parallelus). For the extraction of EO by hydrodistillation, leaves were separated in young (EO-Y) or old (EO-O), and the chemical composition of the EOs was determined by CG-MS. The anesthetic potential was assessed by the evaluation of induction and recovery time of anesthesia and stress response from anesthesia and transport. Three experiments were carried out: i) four different concentrations of each EO were tested to evaluate anesthesia induction and recovery time; ii) two concentrations of EO-O were tested for the evaluation of its effects on stress parameters (glucose, lactate, and Na+ and K+ plasma levels) caused by anesthesia; and iii) fish were transported in plastic bags, supplied with two concentrations of EO-O for the evaluation of water quality and mortality. All experiments were performed on fish acclimated to 0 and 33 ppt salinity. The main constituents of the Y and O-EOs were bicyclogermacrene (46.5/34.6%), α-pinene (26.8/26.2%), β-pinene (7.9/12.3%), and germacrene D (9.6/9.1%). Mild sedation was achieved at 30 °L L-1(1.3-3.2 min) and deep anesthesia at 150 °L L-1 (5.6-8.0 min) with both EOs. The recovery time ranged from 1-10 min. The EO-O was not able to avoid the stress of anesthesia evidenced by elevated glucose and lactate plasma levels observed in all groups. Plasma levels of Na+ and K+ were not significantly affected by treatments. During transport, the use of EO-O did not prevent deterioration in water quality and the post-transport mortality. In conclusion, the EO of N. megapotamica has anesthetic activity in fat snook, but it was not able to prevent the stress of anesthesia and transport.


Este estudo analisou a composição química e o potencial anestésico do óleo essencial (OE) de Nectandra megapotamica em robalos-peva (Centropomus parallelus). Para a extração do OE por hidrodestilação, as folhas foram separadas em jovens (OE-J) ou velhas (OE-V) e a composição química foi determinada por CG-EM. O potencial anestésico foi acessado através da avaliação do tempo de indução e recuperação da anestesia e resposta ao estresse do procedimento anestésico e transporte. Foram realizados três experimentos: em primeiro lugar, quatro concentrações diferentes de cada OE foram testadas para avaliar o tempo de indução à anestesia e de recuperação; em segundo lugar, duas concentrações do OE-V foram testadas para avaliar os efeitos sobre os parâmetros de estresse (níveis plasmáticos de glicose, lactato, Na+ e K+) causados pelo procedimento anestésico; em terceiro lugar, os peixes foram transportados em sacos plásticos com duas concentrações do OE-V para avaliação da qualidade da água e mortalidade. Todos os experimentos foram realizados em peixes aclimatados à salinidade zero e 33. Os constituintes majoritários do OE-J e OE-V foram: biciclogermacreno (46,5/34,6%), α-pineno (26,8/26,2%), β-pineno (7,9/12,3%) e germacreno D (9,6/9,1%). Sedação leve foi alcançada com 30 °L L-1(1,3-3,2 min) e anestesia profunda a partir de 150 °L L-1 (5,6-8,0 min) com ambos OEs. O tempo de recuperação variou entre 1-10 min.O OE-V não foi capaz de evitar o estresse do procedimento anestésico, evidenciado pelos elevados níveis plasmáticos de glicose e lactato observados em todos os grupos. Os níveis plasmáticos de Na+ e K+ não foram significativamente afetados pelos tratamentos. Durante o transporte, o OE-V não impediu a deterioração da qualidade da água e a mortalidade pós-transporte. Concluindo, o OE de Nectandra megapotamica apresenta atividade anestésica em robalos-peva, mas não foi capaz de evitar o estresse do procedimento anestésico e transporte.


Subject(s)
Animals , Anesthesia , Bass , Hypnotics and Sedatives/analysis , Nectandra amare/analysis , Stress, Mechanical , Fishes/classification
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