Cytotoxic and molecular impacts of allelopathic effects of leaf residues of Eucalyptus globulus on soybean (Glycine max)

Eucalyptus trees litter plays a crucial role in structuring plant populations and regulating crop quality. To help characterize the allelopathic impact of Eucalyptus plantations and understand the interactions between tree litter and understorey plant populations, we performed two different genomic...

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Main Authors: Hala M. Abdelmigid, Maissa M. Morsi
Format: Article
Language:English
Published: SpringerOpen 2017-12-01
Series:Journal of Genetic Engineering and Biotechnology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1687157X17300732
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spelling doaj-71c0158747be4ad7a88278e92eb095032020-11-25T02:40:32ZengSpringerOpenJournal of Genetic Engineering and Biotechnology1687-157X2017-12-0115229730210.1016/j.jgeb.2017.08.005Cytotoxic and molecular impacts of allelopathic effects of leaf residues of Eucalyptus globulus on soybean (Glycine max)Hala M. Abdelmigid0Maissa M. Morsi1Botany Dept., Fac. of Science, Mansoura University, EgyptBotany Dept., Faculty of Women for Art, Science and Education, Ain Shams University, EgyptEucalyptus trees litter plays a crucial role in structuring plant populations and regulating crop quality. To help characterize the allelopathic impact of Eucalyptus plantations and understand the interactions between tree litter and understorey plant populations, we performed two different genomic approaches to determine soybean (Glycine max) crop plant response to biotic stress induced by leaf residues of Eucalyptus globulus trees. For assessing cell death, a qualitative method of DNA fragmentation test (comet assay) was employed to detect cleavage of the genomic DNA into oligonucleosomal fragments and help to characterize the apoptotic event among the experimental samples. In addition, quantitative method of genome analysis at the transcriptional level also was conducted to investigate the expression responses of soybean genome to allelochemicals. Expression of specific genes, which are responsible for the breakdown of proteins during programmed cell death PCD (cysteine proteases and their inhibitors), was examined using semi-quantitative RT-PCR (sqPCR). Results of both conducted analyses proved significant genetic effects of Eucalyptus leaf residues on soybean crop genome, revealed by steady increase in DNA damage as well as variation in the transcript levels of cysteine proteases and inhibitors. Further detailed studies using more sensitive methods are necessary for a comprehensive understanding of the allelopathic effects of Eucalyptus plantations on crops.http://www.sciencedirect.com/science/article/pii/S1687157X17300732Eucalyptus globulusGlycine maxComet assayCysteine proteases
collection DOAJ
language English
format Article
sources DOAJ
author Hala M. Abdelmigid
Maissa M. Morsi
spellingShingle Hala M. Abdelmigid
Maissa M. Morsi
Cytotoxic and molecular impacts of allelopathic effects of leaf residues of Eucalyptus globulus on soybean (Glycine max)
Journal of Genetic Engineering and Biotechnology
Eucalyptus globulus
Glycine max
Comet assay
Cysteine proteases
author_facet Hala M. Abdelmigid
Maissa M. Morsi
author_sort Hala M. Abdelmigid
title Cytotoxic and molecular impacts of allelopathic effects of leaf residues of Eucalyptus globulus on soybean (Glycine max)
title_short Cytotoxic and molecular impacts of allelopathic effects of leaf residues of Eucalyptus globulus on soybean (Glycine max)
title_full Cytotoxic and molecular impacts of allelopathic effects of leaf residues of Eucalyptus globulus on soybean (Glycine max)
title_fullStr Cytotoxic and molecular impacts of allelopathic effects of leaf residues of Eucalyptus globulus on soybean (Glycine max)
title_full_unstemmed Cytotoxic and molecular impacts of allelopathic effects of leaf residues of Eucalyptus globulus on soybean (Glycine max)
title_sort cytotoxic and molecular impacts of allelopathic effects of leaf residues of eucalyptus globulus on soybean (glycine max)
publisher SpringerOpen
series Journal of Genetic Engineering and Biotechnology
issn 1687-157X
publishDate 2017-12-01
description Eucalyptus trees litter plays a crucial role in structuring plant populations and regulating crop quality. To help characterize the allelopathic impact of Eucalyptus plantations and understand the interactions between tree litter and understorey plant populations, we performed two different genomic approaches to determine soybean (Glycine max) crop plant response to biotic stress induced by leaf residues of Eucalyptus globulus trees. For assessing cell death, a qualitative method of DNA fragmentation test (comet assay) was employed to detect cleavage of the genomic DNA into oligonucleosomal fragments and help to characterize the apoptotic event among the experimental samples. In addition, quantitative method of genome analysis at the transcriptional level also was conducted to investigate the expression responses of soybean genome to allelochemicals. Expression of specific genes, which are responsible for the breakdown of proteins during programmed cell death PCD (cysteine proteases and their inhibitors), was examined using semi-quantitative RT-PCR (sqPCR). Results of both conducted analyses proved significant genetic effects of Eucalyptus leaf residues on soybean crop genome, revealed by steady increase in DNA damage as well as variation in the transcript levels of cysteine proteases and inhibitors. Further detailed studies using more sensitive methods are necessary for a comprehensive understanding of the allelopathic effects of Eucalyptus plantations on crops.
topic Eucalyptus globulus
Glycine max
Comet assay
Cysteine proteases
url http://www.sciencedirect.com/science/article/pii/S1687157X17300732
work_keys_str_mv AT halamabdelmigid cytotoxicandmolecularimpactsofallelopathiceffectsofleafresiduesofeucalyptusglobulusonsoybeanglycinemax
AT maissammorsi cytotoxicandmolecularimpactsofallelopathiceffectsofleafresiduesofeucalyptusglobulusonsoybeanglycinemax
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