Physiological and Biochemical Responses to Aluminum Stress in the Root of a Biodiesel Plant Jatropha curcas L.
We investigated J. curcas responses to aluminum stress, histochemically and biochemically. Histochemical stainings were observed to analysis aluminum accumulation, lipid peroxidation and the loss of plasma membrane integrity on the surface and tissue of the root apex. Enzymatic analysis was conducte...
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Bogor Agricultural University
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doaj-30641fa4c95449c0afa29957f4f463902020-11-24T23:28:52ZengBogor Agricultural UniversityHayati Journal of Biosciences1978-30192012-03-01191374310.4308/hjb.19.1.37Physiological and Biochemical Responses to Aluminum Stress in the Root of a Biodiesel Plant Jatropha curcas L.RADITE TISTAMA0UTUT WIDYASTUTI1DIDY SOPANDIE2AKIHO YOKOTA3KINYA AKASHI4SUHARSONO5Department of Biology, Faculty of Mathemathics and Natural Sciences, Bogor Agriculture University, Darmaga Campus, Bogor 16680, IndonesiaDepartment of Biology, Faculty of Mathemathics and Natural Sciences, Bogor Agriculture University, Darmaga Campus, Bogor 16680, IndonesiaDepartment of Agronomy and Horticulture, Faculty of Agricultural, Bogor Agricultural University, Darmaga Campus, Bogor 16680, IndonesiaNara Institute for Science and Technology, 8916-5 Takayama, Ikoma, NARA 630-0192, JapanNara Institute for Science and Technology, 8916-5 Takayama, Ikoma, NARA 630-0192, JapanDepartment of Biology, Faculty of Mathemathics and Natural Sciences, Bogor Agriculture University, Darmaga Campus, Bogor 16680, IndonesiaWe investigated J. curcas responses to aluminum stress, histochemically and biochemically. Histochemical stainings were observed to analysis aluminum accumulation, lipid peroxidation and the loss of plasma membrane integrity on the surface and tissue of the root apex. Enzymatic analysis was conducted to measure malate content in leaf, root and malate efflux in the medium. We used M. malabathricum as a comparison for Al-tolerance plant. J. curcas root elongation was inhibited by 0.4 mM AlCl3, while M. malabathricum root elongation was inhibited by 0.8 mM AlCl3 treatment. Inhibition of root elongation has high correlation with Al accumulation in the root apex, which caused lipid degradation and cell death. Generally, malate content in J. curcas leaf and root was higher than that in M. malabathricum. In the contrary malate efflux from the root into the medium was lower. J. curcas root has a different pattern compared to M. malabathricum in malate synthesis and malate secretion when treated with a different Al concentration. We categorized J. curcas acc IP3 as more sensitive to aluminum than M. malabathricum.http://www.sciencedirect.com/science/article/pii/S1978301916301309Jatropha curcasaluminum stressmalate content |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
RADITE TISTAMA UTUT WIDYASTUTI DIDY SOPANDIE AKIHO YOKOTA KINYA AKASHI SUHARSONO |
spellingShingle |
RADITE TISTAMA UTUT WIDYASTUTI DIDY SOPANDIE AKIHO YOKOTA KINYA AKASHI SUHARSONO Physiological and Biochemical Responses to Aluminum Stress in the Root of a Biodiesel Plant Jatropha curcas L. Hayati Journal of Biosciences Jatropha curcas aluminum stress malate content |
author_facet |
RADITE TISTAMA UTUT WIDYASTUTI DIDY SOPANDIE AKIHO YOKOTA KINYA AKASHI SUHARSONO |
author_sort |
RADITE TISTAMA |
title |
Physiological and Biochemical Responses to Aluminum Stress in the Root of a Biodiesel Plant Jatropha curcas L. |
title_short |
Physiological and Biochemical Responses to Aluminum Stress in the Root of a Biodiesel Plant Jatropha curcas L. |
title_full |
Physiological and Biochemical Responses to Aluminum Stress in the Root of a Biodiesel Plant Jatropha curcas L. |
title_fullStr |
Physiological and Biochemical Responses to Aluminum Stress in the Root of a Biodiesel Plant Jatropha curcas L. |
title_full_unstemmed |
Physiological and Biochemical Responses to Aluminum Stress in the Root of a Biodiesel Plant Jatropha curcas L. |
title_sort |
physiological and biochemical responses to aluminum stress in the root of a biodiesel plant jatropha curcas l. |
publisher |
Bogor Agricultural University |
series |
Hayati Journal of Biosciences |
issn |
1978-3019 |
publishDate |
2012-03-01 |
description |
We investigated J. curcas responses to aluminum stress, histochemically and biochemically. Histochemical stainings were observed to analysis aluminum accumulation, lipid peroxidation and the loss of plasma membrane integrity on the surface and tissue of the root apex. Enzymatic analysis was conducted to measure malate content in leaf, root and malate efflux in the medium. We used M. malabathricum as a comparison for Al-tolerance plant. J. curcas root elongation was inhibited by 0.4 mM AlCl3, while M. malabathricum root elongation was inhibited by 0.8 mM AlCl3 treatment. Inhibition of root elongation has high correlation with Al accumulation in the root apex, which caused lipid degradation and cell death. Generally, malate content in J. curcas leaf and root was higher than that in M. malabathricum. In the contrary malate efflux from the root into the medium was lower. J. curcas root has a different pattern compared to M. malabathricum in malate synthesis and malate secretion when treated with a different Al concentration. We categorized J. curcas acc IP3 as more sensitive to aluminum than M. malabathricum. |
topic |
Jatropha curcas aluminum stress malate content |
url |
http://www.sciencedirect.com/science/article/pii/S1978301916301309 |
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