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Structural Evidence in Plectroniella armata (Rubiaceae) for Possible Material Exchange between Domatia and Mites

Domatia are small structures on the lower surface of a leaf, usually taking the form of cavities, pouches, domes with an opening, or hairs (or a combination of these), and located in the axils between the main veins. They are found in many dicotyledons including certain members of the Rubiaceae. As...

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Autores principales: Tilney, Patricia M., van Wyk, Abraham E., van der Merwe, Chris F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3390328/
https://www.ncbi.nlm.nih.gov/pubmed/22792206
http://dx.doi.org/10.1371/journal.pone.0039984
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author Tilney, Patricia M.
van Wyk, Abraham E.
van der Merwe, Chris F.
author_facet Tilney, Patricia M.
van Wyk, Abraham E.
van der Merwe, Chris F.
author_sort Tilney, Patricia M.
collection PubMed
description Domatia are small structures on the lower surface of a leaf, usually taking the form of cavities, pouches, domes with an opening, or hairs (or a combination of these), and located in the axils between the main veins. They are found in many dicotyledons including certain members of the Rubiaceae. As part of an ongoing study of selected southern African members of the tribe Vanguerieae of this family, their structure in transverse section was investigated. In some taxa, such as Plectroniella armata, light microscopic (LM) observations revealed large numbers of stomata in the domatia as well as a number of channel-like structures extending across the cuticle toward the cavity of the domatia. The cuticle of the epidermis lining the domatia also appeared thicker than in other parts of the leaves. The epidermis in P. armata was also examined using transmission electron microscopy (TEM). Domatia have been shown to house mainly mites, many of which are predatory or fungivorous, in a symbiotic (mutualistic) relationship with the plant. To date, much research has focussed on the role of domatia in providing shelter for various organisms, their eggs and their young. However, the TEM study revealed the apparent “channels” and thick cuticle seen under LM to be electron dense non-cellulosic branching fibrils within pronounced, often closely spaced cuticular folds. The functional significance of these fibrils and folds requires further investigation. Folding of cell walls and membranes at ultrastructural level is usually functionally associated with an increased surface area to facilitate active exchange of compounds/metabolites. This may indicate that translocation of substances and/or other forms of communication is possible between the domatium and its inhabitants. This therefore suggests a far more active role for the leaf in the symbiotic relationship than was previously thought. More work is required to test such a possibility.
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spelling pubmed-33903282012-07-12 Structural Evidence in Plectroniella armata (Rubiaceae) for Possible Material Exchange between Domatia and Mites Tilney, Patricia M. van Wyk, Abraham E. van der Merwe, Chris F. PLoS One Research Article Domatia are small structures on the lower surface of a leaf, usually taking the form of cavities, pouches, domes with an opening, or hairs (or a combination of these), and located in the axils between the main veins. They are found in many dicotyledons including certain members of the Rubiaceae. As part of an ongoing study of selected southern African members of the tribe Vanguerieae of this family, their structure in transverse section was investigated. In some taxa, such as Plectroniella armata, light microscopic (LM) observations revealed large numbers of stomata in the domatia as well as a number of channel-like structures extending across the cuticle toward the cavity of the domatia. The cuticle of the epidermis lining the domatia also appeared thicker than in other parts of the leaves. The epidermis in P. armata was also examined using transmission electron microscopy (TEM). Domatia have been shown to house mainly mites, many of which are predatory or fungivorous, in a symbiotic (mutualistic) relationship with the plant. To date, much research has focussed on the role of domatia in providing shelter for various organisms, their eggs and their young. However, the TEM study revealed the apparent “channels” and thick cuticle seen under LM to be electron dense non-cellulosic branching fibrils within pronounced, often closely spaced cuticular folds. The functional significance of these fibrils and folds requires further investigation. Folding of cell walls and membranes at ultrastructural level is usually functionally associated with an increased surface area to facilitate active exchange of compounds/metabolites. This may indicate that translocation of substances and/or other forms of communication is possible between the domatium and its inhabitants. This therefore suggests a far more active role for the leaf in the symbiotic relationship than was previously thought. More work is required to test such a possibility. Public Library of Science 2012-07-05 /pmc/articles/PMC3390328/ /pubmed/22792206 http://dx.doi.org/10.1371/journal.pone.0039984 Text en Tilney et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Tilney, Patricia M.
van Wyk, Abraham E.
van der Merwe, Chris F.
Structural Evidence in Plectroniella armata (Rubiaceae) for Possible Material Exchange between Domatia and Mites
title Structural Evidence in Plectroniella armata (Rubiaceae) for Possible Material Exchange between Domatia and Mites
title_full Structural Evidence in Plectroniella armata (Rubiaceae) for Possible Material Exchange between Domatia and Mites
title_fullStr Structural Evidence in Plectroniella armata (Rubiaceae) for Possible Material Exchange between Domatia and Mites
title_full_unstemmed Structural Evidence in Plectroniella armata (Rubiaceae) for Possible Material Exchange between Domatia and Mites
title_short Structural Evidence in Plectroniella armata (Rubiaceae) for Possible Material Exchange between Domatia and Mites
title_sort structural evidence in plectroniella armata (rubiaceae) for possible material exchange between domatia and mites
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3390328/
https://www.ncbi.nlm.nih.gov/pubmed/22792206
http://dx.doi.org/10.1371/journal.pone.0039984
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