Analysis of aluminum toxicity in Hordeum vulgare roots with an emphasis on DNA integrity and cell cycle
نویسندگان
چکیده
Barley is one of the cereals that are most sensitive to aluminum (Al). Al in acid soils limits barley growth and development and, as a result, its productivity. The inhibition of root growth is a widely accepted indicator of Al stress. Al toxicity is affected by many factors including the culture medium, pH, Al concentration and the duration of the treatment. However, Al can act differently in different species and still Al toxicity in barley deserves study. Since the mechanism of Al toxicity is discussed we cytogenetically describe the effects of different doses of bioavailable Al on the barley nuclear genome-mitotic activity, cell cycle profile and DNA integrity. At the same time, we tested an established deep-water culture (DWC) hydroponics system and analyzed the effects of Al on the root system parameters using WinRHIZO software. We demonstrated the cytotoxic and genotoxic effect of Al in barley root cells. We showed that Al treatment significantly reduced the mitotic activity of the root tip cells and it also induced micronuclei and damaged nuclei. The DNA-damaging effect of Al was observed using the TUNEL test. We define the inhibitory influence of Al on DNA replication in barley. Analysis with the labelling and detection of 5-ethynyl-2'-deoxyuridin (EdU) showed that the treatment with Al significantly decreased the frequency of S phase cells. We also demonstrated that Al exposure led to changes in the cell cycle profile of barley root tips. The delay of cell divisions observed as increased frequency of cells in G2/M phase after Al treatment was reported using flow cytometry.
منابع مشابه
Physiological Aspects of Aluminium Toxicity on Some Metabolic and Hormonal Contents of Hordeum Vulgare Seedlings
The aim of this investigation is to throw additional light and integrated view on the role of aluminium, as a toxic element in soil, in altering the growth, hormonal and chemical composition of 3 Hordeum vulgare Lcv. Giza 108. The grains were pre soaked in different concentrations of Al2(SO4) (0, 10, 2, 0.4 and 0.08μM) for 6 hr, then sown under controlled conditions in plastic pots. Samples wer...
متن کاملThe Role of chk2 in Response to DNA Damage in Cancer Cells
Accumulation of gene changes and chromosomal instability in response to cellular DNA damage lead to cancer. DNA damage induces cell cycle checkpoints pathways. Checkpoints regulate DNA replication and cell cycle progression, chromatin restructuring, and apoptosis. Checkpoint kinase 2 (chk2) is activated in response to DNA lesions. ATM phosphorylate chk2. The activated Chk2 kinase can phosphoryl...
متن کاملOsFRDL1 is a citrate transporter required for efficient translocation of iron in rice.
Multidrug and toxic compound extrusion (MATE) transporters represent a large family in plants, but their functions are poorly understood. Here, we report the function of a rice (Oryza sativa) MATE gene (Os03g0216700, OsFRDL1), the closest homolog of barley (Hordeum vulgare) HvAACT1 (aluminum [Al]-activated citrate transporter 1), in terms of metal stress (iron [Fe] deficiency and Al toxicity). ...
متن کاملMolecular mapping of a gene responsible for Al-activated secretion of citrate in barley.
Aluminium (Al) toxicity is an important limitation to barley (Hordeum vulgare L.) on acid soil. Al-resistant cultivars of barley detoxify Al externally by secreting citrate from the roots. To link the genetics and physiology of Al resistance in barley, genes controlling Al resistance and Al-activated secretion of citrate were mapped. An analysis of Al-induced root growth inhibition from 100 F2 ...
متن کاملEpigenetic modifications of nuclei differ between root meristematic tissues of Hordeum vulgare
Recent studies on the role of epigenetic modifications during plant development emphasize the fact that both positional information and tissue specificity are essential factors that establish epigenetic marks and thus determine cell fate and differentiation processes. The root apical meristem (RAM ), which contains stem cells and generates radial patterns of tissues, is an ideal model for study...
متن کامل