A study on physiological and biochemical characterization of selected radish plant

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Research Paper 01/02/2021
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A study on physiological and biochemical characterization of selected radish plant

Shehnaz Kousar, Saba, Muhammad Zubair, Hamna Asif, Sana Ashraf, Abdul Karim, Sobia Tariq, Muhammad Imran Anwar, Asia Arooj
J. Bio. Env. Sci.18( 2), 1-5, February 2021.
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Abstract

Substantial metals are boss natural contaminations and their heightening poisonousness causes danger for biological and ecological reasons. Nickel as one of the significant hefty metal poisons is of impressive concern since its focus is quickly expanding in soils of various pieces of the world. Nickel is generally utilized in silver processing plants, amalgam, shades electroplating, zinc based projecting and capacity batteries. The aims of this study included the study of anatomy and biochemical characterization of radish plant under stress conditions. The objective of this paper is to summarize the overview of the sources, essentiality, uptake Ni toxicity in plants. To check the effect of Nickel sulphate on Radish, amounts(0, 50, 100, 150mM) on radish seedlings through Foliar medium, whole soil culture experiment was performed in the wire house of old Botanical Garden, University of Agriculture Faisalabad. Statistical analysis was achieved after collection of data by using appropriate computer software such as ANOVA. All morphological changes were observed to collect the data for the biochemical analysis. Nickel Sulphate act as suppressor that bring the reduction in growth as well as weight of fresh root (P≥0.001). Under controlled conditions maximum reduction was observed as compared at 150mM Nickel sulphate that was applied in Foliar medium. Nickel pollution is a serious environmental concern which led to research on phytoremediation.

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Alexander PD, Alloway BJ, Dourado AM. 2006. Genotypic variations in the accumulation of Cd, Cu, Pb and Zn exhibited by six commonly grown vegetables. Environ. Pollut 144, 736-745.

Antoniadis V, Robinson JS, Alloway BJ. 2008. Effects of short-term pH fluctuations on cadmium, nickel, lead, and zinc availability to ryegrass in a sewage sludge-amended field. Chemosphere 71, 759-764.

Ashraf MY, Sadiq R, Hussain M, Ashraf M. 2011. Toxic effect of nickel (Ni) on growth and metabolism in germinating seeds of sunflower (Helianthus annuus L.). Biol. Trace Elem. Res 143, 1695-1703.

Choudhari AMM. 1997. Differential Effect of Pb2+ and Hg2+ on Inhibition of germination of seeds of two Rice cultivars. Ind. J. plant physiol 2, 41-44.

Espen LL, Pirovano L, Sergio MC. 1997.Effect of nickel during the early Phase of radish (Raphanus sativus) seed germination. Environ. Exp. Bot 38, 187-197.

Ghani U, Naeem M, Rafeeq H, Imtiaz U, Amjad A, Ullah S, Rehman A, Qasim F. 2019. A Novel Approach towards Nutraceuticals and Biomedical Applications. Scholars International Journal of Biochemistry 2(10), 245-252.

Li T. 2019. Calcium signals are necessary to establish auxin transporter polarity in a plant stem cell niche. Nature communications 10, 1-9.

Meng F, Xiang D, Zhu J. 2019. Molecular mechanisms of root development in rice. Rice 12, 1-10.

Naeem M, Hussain A, Azmi UR, Maqsood S, Imtiaz U, Ali H, Rehman SU, Kaleemullah, Munir MU, Ghani U. 2019.Comparative Anatomical studies of epidermis with different stomatal patterns in some selected plants using compound light microscopy; International Journal of Scientific and Research Publications (IJSRP) 9(10), 375-380

Van S. 2012. Simulation of organ patterning on the floral meristem using a polar auxin transport model. PloS one 7, 155-159.