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In Posidonia oceanica cadmium induces changes in DNA methylation and chromatin patterning

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TLDR
The data demonstrate that Cd perturbs the DNA methylation status through the involvement of a specific methyltransferase, linked to nuclear chromatin reconfiguration likely to establish a new balance of expressed/repressed chromatin.
Abstract
In mammals, cadmium is widely considered as a non-genotoxic carcinogen acting through a methylation-dependent epigenetic mechanism. Here, the effects of Cd treatment on the DNA methylation patten are examined together with its effect on chromatin reconfiguration in Posidonia oceanica. DNA methylation level and pattern were analysed in actively growing organs, under short- (6 h) and long- (2 d or 4 d) term and low (10 mM) and high (50 mM) doses of Cd, through a Methylation-Sensitive Amplification Polymorphism technique and an immunocytological approach, respectively. The expression of one member of the CHROMOMETHYLASE (CMT) family, a DNA methyltransferase, was also assessed by qRT-PCR. Nuclear chromatin ultrastructure was investigated by transmission electron microscopy. Cd treatment induced a DNA hypermethylation, as well as an up-regulation of CMT, indicating that de novo methylation did indeed occur. Moreover, a high dose of Cd led to a progressive heterochromatinization of interphase nuclei and apoptotic figures were also observed after long-term treatment. The data demonstrate that Cd perturbs the DNA methylation status through the involvement of a specific methyltransferase. Such changes are linked to nuclear chromatin reconfiguration likely to establish a new balance of expressed/repressed chromatin. Overall, the data show an epigenetic basis to the mechanism underlying Cd toxicity in plants.

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Exogenous application of brassinosteroid offers tolerance to salinity by altering stress responses in rice variety Pusa Basmati-1.

TL;DR: Investigation of the response of various stress markers upon exogenous application of 24-epibrassinolide on Pusa Basmati-1, a commercially important rice variety, under salt stress conditions reveals the down regulation of OsDWF4 with application of EBL and upregulation of SalT in presence of salt stress thereby confirming the efficacy of the treatments.
Journal ArticleDOI

The new insights into cadmium sensing.

TL;DR: Recent advances in the research concerning cadmium signal transduction in plants are presented, including new insights into the involvement of reactive oxygen species (ROS), nitric oxide, plant growth regulators, and Cd-induced protein modifications.

The nuclear pore complex has entered the atomic age

TL;DR: The status of the field is reviewed and the challenges and the next steps toward a full understanding of the NPC at atomic resolution are laid out.
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Phytohormones and polyamines regulate plant stress responses by altering GABA pathway.

TL;DR: Information obtained from plants exposed to several stress conditions supports the view that highly conserved pathways connect primary and secondary metabolism, with an overlap of regulatory functions related to stress responses and tolerance among phytohormones, amino acids and polyamines.

Chloride salinity reduces cadmium accumulation by the Mediterranean halophyte species Atriplex halimus L.

TL;DR: In this paper, plants from the halophyte species Atriplex halimus were exposed for 12 and 14 days to a nutrient solution containing 50 mM CdCl2 in the presence of NaCl, KCl or NaNO3 50 mM.
References
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R Core Team
- 01 Jan 2014 - 
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Journal ArticleDOI

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