Copper microlocalisation, ultrastructural alterations and antioxidant responses in the nodules of white lupin and soybean plants grown under conditions of copper excess

9 páginas, ilustraciones y tablas estadísticas.

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Main Authors: Sánchez Pardo, Beatriz, Fernández-Pascual, Mercedes, Zornoza, P.
Format: artículo biblioteca
Language:English
Published: Elsevier 2012
Subjects:Copper excess, Energy-dispersive X-ray microanalysis, Glycine max L., Lupinus albus L., Nodule ultrastructure, Oxidative stress,
Online Access:http://hdl.handle.net/10261/59033
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spelling dig-ica-es-10261-590332021-06-07T07:41:07Z Copper microlocalisation, ultrastructural alterations and antioxidant responses in the nodules of white lupin and soybean plants grown under conditions of copper excess Sánchez Pardo, Beatriz Fernández-Pascual, Mercedes Zornoza, P. Copper excess Energy-dispersive X-ray microanalysis Glycine max L. Lupinus albus L. Nodule ultrastructure Oxidative stress 9 páginas, ilustraciones y tablas estadísticas. Copper (Cu) is a heavy metal which, at high concentrations, is toxic to organisms. Some plants, however, possess systems for dealing with excess Cu, such as its cell localisation, and have antioxidant enzymes that help to reduce the oxidative stress. The present work examines the microlocalisation of Cu and the antioxidant enzyme activity present in the nodules of white lupin and soybean plants grown hydroponically for 35 days in the presence of 1.6 M (control) or 192 M (excess) Cu. The effect of these conditions on nodule (ultra)structure was also examined. Energy-dispersive X-ray microanalysis showed the cell walls to be the main area of Cu binding in the inner and outer cortex and infected zone of white lupin nodules grown under the excess Cu conditions, while in soybean a high Cu signal was detected inside cells (cytoplasm or vacuoles) both in the inner cortex and infected zone. At the tissue level, an increasing Cu gradient was seen from the outer towards the inner nodule cortex in white lupin nodules, while the opposite was seen in soybean. Cu excess also induced oxidative stress and promoted damage to the ultrastructure of nodules. In the white lupin infected cells, a breakdown of the peribacteroidal membrane was seen, along with an increased number of vesicles in the cytosol of these cells. In the infected cells of the soybean nodules, the bacteroidal membrane became degraded and precipitation was seen within the vacuoles of the infected and uninfected cells. Finally, the white lupin nodules seemed to be more sensitive to Cu excess than those of soybean, with the nodulation process, N2 fixation, and the ultrastructure of bacteroids more strongly affected. A less effective antioxidative stress response against Cu was also seen in white lupin than in soybean nodules: the excess copper treatment induced a smaller increase in the total thiol content and ascorbate peroxidase activity in white lupin nodules than in soybean nodules, and promoted a greater reduction in catalase activity. CTM2010-21922-C02-02/TECNO--------- S2009/AMB-1478)---------------------- POII10-0211-5015). Peer reviewed 2012-10-29T09:33:53Z 2012-10-29T09:33:53Z 2012 artículo http://purl.org/coar/resource_type/c_6501 Environmental and Experimental Botany 84:52-60(2012) 0098-8472 http://hdl.handle.net/10261/59033 10.1016/j.envexpbot.2012.04.017 en http://dx.doi.org/10.1016/j.envexpbot.2012.04.017 none Elsevier
institution ICA ES
collection DSpace
country España
countrycode ES
component Bibliográfico
access En linea
databasecode dig-ica-es
tag biblioteca
region Europa del Sur
libraryname Biblioteca del ICA España
language English
topic Copper excess
Energy-dispersive X-ray microanalysis
Glycine max L.
Lupinus albus L.
Nodule ultrastructure
Oxidative stress
Copper excess
Energy-dispersive X-ray microanalysis
Glycine max L.
Lupinus albus L.
Nodule ultrastructure
Oxidative stress
spellingShingle Copper excess
Energy-dispersive X-ray microanalysis
Glycine max L.
Lupinus albus L.
Nodule ultrastructure
Oxidative stress
Copper excess
Energy-dispersive X-ray microanalysis
Glycine max L.
Lupinus albus L.
Nodule ultrastructure
Oxidative stress
Sánchez Pardo, Beatriz
Fernández-Pascual, Mercedes
Zornoza, P.
Copper microlocalisation, ultrastructural alterations and antioxidant responses in the nodules of white lupin and soybean plants grown under conditions of copper excess
description 9 páginas, ilustraciones y tablas estadísticas.
format artículo
topic_facet Copper excess
Energy-dispersive X-ray microanalysis
Glycine max L.
Lupinus albus L.
Nodule ultrastructure
Oxidative stress
author Sánchez Pardo, Beatriz
Fernández-Pascual, Mercedes
Zornoza, P.
author_facet Sánchez Pardo, Beatriz
Fernández-Pascual, Mercedes
Zornoza, P.
author_sort Sánchez Pardo, Beatriz
title Copper microlocalisation, ultrastructural alterations and antioxidant responses in the nodules of white lupin and soybean plants grown under conditions of copper excess
title_short Copper microlocalisation, ultrastructural alterations and antioxidant responses in the nodules of white lupin and soybean plants grown under conditions of copper excess
title_full Copper microlocalisation, ultrastructural alterations and antioxidant responses in the nodules of white lupin and soybean plants grown under conditions of copper excess
title_fullStr Copper microlocalisation, ultrastructural alterations and antioxidant responses in the nodules of white lupin and soybean plants grown under conditions of copper excess
title_full_unstemmed Copper microlocalisation, ultrastructural alterations and antioxidant responses in the nodules of white lupin and soybean plants grown under conditions of copper excess
title_sort copper microlocalisation, ultrastructural alterations and antioxidant responses in the nodules of white lupin and soybean plants grown under conditions of copper excess
publisher Elsevier
publishDate 2012
url http://hdl.handle.net/10261/59033
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