QUANTITY DETERMINATION OF MOLYBDENUM FROM PISUM SATIVUM PLANTS AND THE INFLUENCE OF HEAVY METAL TO CHEMICAL ELEMENTS ACCUMULATION
The aim of this study was to test the pea plant as sentinel specie for the heavy metal molybdenum. Evaluation of soil quality after the molybdenum uptake by pea revealed the following results: Pea plant is a bioindicator that concentrates molybdenum with fast reaction to increasing concentrations in...
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Agroprint Timisoara
2008-05-01
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doaj-ce56c6ef61224bff9595b8bd3e0222b62020-11-25T03:08:42ZengAgroprint TimisoaraScientific Papers Animal Science and Biotechnologies1841-93642344-45762008-05-014117357431202QUANTITY DETERMINATION OF MOLYBDENUM FROM PISUM SATIVUM PLANTS AND THE INFLUENCE OF HEAVY METAL TO CHEMICAL ELEMENTS ACCUMULATIONMONICA BUTNARIU0ROBERT ARMON1ELENA TONEA2Banat’s University of Agricultural Sciences and Veterinary Medicine TimisoaraFaculty of Civil & Environmental Engineering, Division of Environmental, Water and Agricultural Engineering, Technion, HaifaBanat’s University of Agricultural Sciences and Veterinary Medicine TimisoaraThe aim of this study was to test the pea plant as sentinel specie for the heavy metal molybdenum. Evaluation of soil quality after the molybdenum uptake by pea revealed the following results: Pea plant is a bioindicator that concentrates molybdenum with fast reaction to increasing concentrations in soil. Molybdenum had a positive effect concerning the plant growth (throughout all experimental process, pea plants treated with highest concentrated metal solution reached the largest dimensions). Accumulated molybdenum was directly proportional to increasing concentration of the applied solution to roots, stem, leaves and flowers of the experimental plants; however it resided in flowerpot soil too .In the leguminous roots where the nitroreductase and nitrogenese activity is increased, molybdenum content was much higher compared to the aerial parts of the plant. All the way through molybdenum accumulation in the experimental plants up to high concentrations, other chemical elements revealed lower concentration although within the normal limits, with the exception of phosphorus. These plants were found to assimilate high molybdenum quantities without any detrimental consequences for them since molybdenum accumulation occurred in vacuoles in innocuous chemical forms.http://spasb.ro/index.php/spasb/article/view/1280molybdenumpisum sativumbiomonitoringsoilsentinel specie |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
MONICA BUTNARIU ROBERT ARMON ELENA TONEA |
spellingShingle |
MONICA BUTNARIU ROBERT ARMON ELENA TONEA QUANTITY DETERMINATION OF MOLYBDENUM FROM PISUM SATIVUM PLANTS AND THE INFLUENCE OF HEAVY METAL TO CHEMICAL ELEMENTS ACCUMULATION Scientific Papers Animal Science and Biotechnologies molybdenum pisum sativum biomonitoring soil sentinel specie |
author_facet |
MONICA BUTNARIU ROBERT ARMON ELENA TONEA |
author_sort |
MONICA BUTNARIU |
title |
QUANTITY DETERMINATION OF MOLYBDENUM FROM PISUM SATIVUM PLANTS AND THE INFLUENCE OF HEAVY METAL TO CHEMICAL ELEMENTS ACCUMULATION |
title_short |
QUANTITY DETERMINATION OF MOLYBDENUM FROM PISUM SATIVUM PLANTS AND THE INFLUENCE OF HEAVY METAL TO CHEMICAL ELEMENTS ACCUMULATION |
title_full |
QUANTITY DETERMINATION OF MOLYBDENUM FROM PISUM SATIVUM PLANTS AND THE INFLUENCE OF HEAVY METAL TO CHEMICAL ELEMENTS ACCUMULATION |
title_fullStr |
QUANTITY DETERMINATION OF MOLYBDENUM FROM PISUM SATIVUM PLANTS AND THE INFLUENCE OF HEAVY METAL TO CHEMICAL ELEMENTS ACCUMULATION |
title_full_unstemmed |
QUANTITY DETERMINATION OF MOLYBDENUM FROM PISUM SATIVUM PLANTS AND THE INFLUENCE OF HEAVY METAL TO CHEMICAL ELEMENTS ACCUMULATION |
title_sort |
quantity determination of molybdenum from pisum sativum plants and the influence of heavy metal to chemical elements accumulation |
publisher |
Agroprint Timisoara |
series |
Scientific Papers Animal Science and Biotechnologies |
issn |
1841-9364 2344-4576 |
publishDate |
2008-05-01 |
description |
The aim of this study was to test the pea plant as sentinel specie for the heavy metal molybdenum. Evaluation of soil quality after the molybdenum uptake by pea revealed the following results: Pea plant is a bioindicator that concentrates molybdenum with fast reaction to increasing concentrations in soil. Molybdenum had a positive effect concerning the plant growth (throughout all experimental process, pea plants treated with highest concentrated metal solution reached the largest dimensions). Accumulated molybdenum was directly proportional to increasing concentration of the applied solution to roots, stem, leaves and flowers of the experimental plants; however it resided in flowerpot soil too .In the leguminous roots where the nitroreductase and nitrogenese activity is increased, molybdenum content was much higher compared to the aerial parts of the plant. All the way through molybdenum accumulation in the experimental plants up to high concentrations, other chemical elements revealed lower concentration although within the normal limits, with the exception of phosphorus. These plants were found to assimilate high molybdenum quantities without any detrimental consequences for them since molybdenum accumulation occurred in vacuoles in innocuous chemical forms. |
topic |
molybdenum pisum sativum biomonitoring soil sentinel specie |
url |
http://spasb.ro/index.php/spasb/article/view/1280 |
work_keys_str_mv |
AT monicabutnariu quantitydeterminationofmolybdenumfrompisumsativumplantsandtheinfluenceofheavymetaltochemicalelementsaccumulation AT robertarmon quantitydeterminationofmolybdenumfrompisumsativumplantsandtheinfluenceofheavymetaltochemicalelementsaccumulation AT elenatonea quantitydeterminationofmolybdenumfrompisumsativumplantsandtheinfluenceofheavymetaltochemicalelementsaccumulation |
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