Literature DB >> 22990831

Edge effect and phenology in Erythroxylum tortuosum (Erythroxylaceae), a typical plant of the Brazilian Cerrado.

M N Ishino1, P R De Sibio, M N Rossi.   

Abstract

The edge of a forest fragment can be considered a zone of transition between the interior of the fragment and the surrounding habitat matrix. Plants along the edge are more exposed to disturbance and microclimate variation than interior plants, resulting in the so-called edge effect. In this study, we compared leaf area, fluctuating asymmetry and chemical (water, nitrogen and tannins) leaf traits between Erythroxylum tortuosum plants inhabiting the edge with those growing in the interior of a cerrado fragment in Brazil. We also describe the temporal variation in the vegetative and reproductive phenological events of E. tortuosum plants throughout the season. Nitrogen, leaf area and fluctuating asymmetry did not differ between the two plant groups. Young leaves of the edge plants had significantly higher levels of tannins and lower levels of water than those of interior plants. We suggest that differences in leaf chemical concentrations between edge and interior plants may occur due to factors such as light intensity, wind, temperature and leaf age rather than plant stress. With respect to plant phenology, most reproductive events occurred during the spring. Leaf buds and young leaves prevailed during the rainy season. In the dry season, however, the vegetative events decreased due to leaf senescence followed by leaf abscission.

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Year:  2012        PMID: 22990831     DOI: 10.1590/s1519-69842012000300023

Source DB:  PubMed          Journal:  Braz J Biol        ISSN: 1519-6984            Impact factor:   1.651


  1 in total

1.  Seasonal Chemical Evaluation of Miconia chamissois Naudin from Brazilian Savanna.

Authors:  Juliana de Freitas Ferreira; Manuel Humberto Mera López; João Victor Dutra Gomes; Diegue H Nascimento Martins; Christopher William Fagg; Pérola Oliveira Magalhães; Noel William Davies; Dâmaris Silveira; Yris Maria Fonseca-Bazzo
Journal:  Molecules       Date:  2022-02-08       Impact factor: 4.411

  1 in total

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