Cell lysis in the formation of secretory cavities in plants has been questioned by some authors and considered as result of technical artifacts. To describe the formation of secretory resin cavities in Hymenaea stigonocarpa leaves, leaflet samples at different stages of differentiation were collected, fixed, and processed for light and electron microscopy as per usual methods. The initial cells of secretory resin cavities are protodermal and grow towards the mesophyll ground meristem; these cells then divide producing cell groups that are distinguished by the shape and arrangement of cytoplasm, and density. At the initial stages of differentiation of the secretory cavities, some central cells in these groups show dark cytoplasm and condense...
Transmission electron microscopy has been used to determine the ultrastructure of secretory tissues ...
The ecological and economic importance of oleoresin produced by Copaifera langsdorffii is well estab...
Secretory cavities produce compounds that protect plants from herbivory and pathogenic microorganism...
The lipophilic secretory cavities observed in the leaf of Porophyllum lanceolatum (Asteraceae) are s...
The genus Hymenaea is characterized by a great diversity of secretory structures, but there are no r...
Background and Aims Considering that few studies on nectary anatomy and ultrastructure are available...
The ultrastructure of foliar secretory cavities of Porophyllum lanceolatum DC. was studied at three ...
The origin, development and ultrastructure of secretory cavities in leaf of Ginkgo biloba and its re...
The genus Hymenaea is characterized by a great diversity of secretory structures, but there are no r...
Copaifera langsdorffii Desf., popularly known as copaiba, is an oleoresin-producing tree has been ov...
A study of developing transmitting tissue of Lilium Leucanthum pistils was undertaken in order to co...
A study of the anatomy and ultrastructural aspects of leaf mesophyll and floral nectaries of Hymenae...
Although studies have addressed the chemical analysis and the biological activity of oleoresin in sp...
Development of capitate glands on the leaves of annual wormwood (Artemisia annua L.) was monitored w...
The structure and ultrastructure of immature to fully mature glandular dots in the leaf, floral orga...
Transmission electron microscopy has been used to determine the ultrastructure of secretory tissues ...
The ecological and economic importance of oleoresin produced by Copaifera langsdorffii is well estab...
Secretory cavities produce compounds that protect plants from herbivory and pathogenic microorganism...
The lipophilic secretory cavities observed in the leaf of Porophyllum lanceolatum (Asteraceae) are s...
The genus Hymenaea is characterized by a great diversity of secretory structures, but there are no r...
Background and Aims Considering that few studies on nectary anatomy and ultrastructure are available...
The ultrastructure of foliar secretory cavities of Porophyllum lanceolatum DC. was studied at three ...
The origin, development and ultrastructure of secretory cavities in leaf of Ginkgo biloba and its re...
The genus Hymenaea is characterized by a great diversity of secretory structures, but there are no r...
Copaifera langsdorffii Desf., popularly known as copaiba, is an oleoresin-producing tree has been ov...
A study of developing transmitting tissue of Lilium Leucanthum pistils was undertaken in order to co...
A study of the anatomy and ultrastructural aspects of leaf mesophyll and floral nectaries of Hymenae...
Although studies have addressed the chemical analysis and the biological activity of oleoresin in sp...
Development of capitate glands on the leaves of annual wormwood (Artemisia annua L.) was monitored w...
The structure and ultrastructure of immature to fully mature glandular dots in the leaf, floral orga...
Transmission electron microscopy has been used to determine the ultrastructure of secretory tissues ...
The ecological and economic importance of oleoresin produced by Copaifera langsdorffii is well estab...
Secretory cavities produce compounds that protect plants from herbivory and pathogenic microorganism...