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Development of Novel Protocol to Al(3+) Stress Tolerance at Germination Stage in Indica Rice through Statistical Approaches

Rice production is decreasing by abiotic stresses like heavy metals. In such circumstances, producing food for growing human population is a challenge for plant breeders. Excess of Al(3+) in soil has become threat for high yield of rice. Improvement of crop is one of potential solution for high prod...

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Autores principales: Jahan, Nusrat, Abd Manan, Fazilah, Mansoor, Arsala, Zaidi, Mudassir Asrar, Shahwani, Muhammad Naeem, Javed, Muhammad Arshad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6178175/
https://www.ncbi.nlm.nih.gov/pubmed/30356418
http://dx.doi.org/10.1155/2018/8180174
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author Jahan, Nusrat
Abd Manan, Fazilah
Mansoor, Arsala
Zaidi, Mudassir Asrar
Shahwani, Muhammad Naeem
Javed, Muhammad Arshad
author_facet Jahan, Nusrat
Abd Manan, Fazilah
Mansoor, Arsala
Zaidi, Mudassir Asrar
Shahwani, Muhammad Naeem
Javed, Muhammad Arshad
author_sort Jahan, Nusrat
collection PubMed
description Rice production is decreasing by abiotic stresses like heavy metals. In such circumstances, producing food for growing human population is a challenge for plant breeders. Excess of Al(3+) in soil has become threat for high yield of rice. Improvement of crop is one of potential solution for high production. The aim of this study was to develop the new method for optimization of Al(3+) toxicity tolerance in indica rice at germination stag using two-way ANOVA and Duncan's multiple-range test (DMRT). Seeds of two indica rice cultivars (Pokkali and Pak Basmati) were exposed in different concentrations (control, 5 mM, 15 mM, and 20 mM) of Al(3+) toxicity at pH 4 ±0.2 for two weeks. Germination traits such as final germination percentage (FG%), germination energy (GE), germination speed (GS), germination index (GI), mean time of germination (MGT), germination value (GV), germination velocity (GVe), peak value of germination (GPV), and germination capacity (GC) and growth traits such as root length (RL), shoot length (SL), total dry biomass (TDB), and germination vigour index (GVI) were measured. To obtain the maximum number of significance (≤ 0.01%) parameters in each concentration of Al(3+) toxicity with control, two-way ANOVA was established and comparison of mean was done using DMRT. The results showed that 5 mM, 10 mM, and 15 mM have less significant effects on the above-mentioned parameters. However, 20 mM concentration of Al(3+) produced significant effects (≤ 0.01%). Therefore, 20 mM of Al(3+) is considered optimized limit for indica cultivars (Pokkali and Pak Basmati).
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spelling pubmed-61781752018-10-23 Development of Novel Protocol to Al(3+) Stress Tolerance at Germination Stage in Indica Rice through Statistical Approaches Jahan, Nusrat Abd Manan, Fazilah Mansoor, Arsala Zaidi, Mudassir Asrar Shahwani, Muhammad Naeem Javed, Muhammad Arshad ScientificWorldJournal Research Article Rice production is decreasing by abiotic stresses like heavy metals. In such circumstances, producing food for growing human population is a challenge for plant breeders. Excess of Al(3+) in soil has become threat for high yield of rice. Improvement of crop is one of potential solution for high production. The aim of this study was to develop the new method for optimization of Al(3+) toxicity tolerance in indica rice at germination stag using two-way ANOVA and Duncan's multiple-range test (DMRT). Seeds of two indica rice cultivars (Pokkali and Pak Basmati) were exposed in different concentrations (control, 5 mM, 15 mM, and 20 mM) of Al(3+) toxicity at pH 4 ±0.2 for two weeks. Germination traits such as final germination percentage (FG%), germination energy (GE), germination speed (GS), germination index (GI), mean time of germination (MGT), germination value (GV), germination velocity (GVe), peak value of germination (GPV), and germination capacity (GC) and growth traits such as root length (RL), shoot length (SL), total dry biomass (TDB), and germination vigour index (GVI) were measured. To obtain the maximum number of significance (≤ 0.01%) parameters in each concentration of Al(3+) toxicity with control, two-way ANOVA was established and comparison of mean was done using DMRT. The results showed that 5 mM, 10 mM, and 15 mM have less significant effects on the above-mentioned parameters. However, 20 mM concentration of Al(3+) produced significant effects (≤ 0.01%). Therefore, 20 mM of Al(3+) is considered optimized limit for indica cultivars (Pokkali and Pak Basmati). Hindawi 2018-09-26 /pmc/articles/PMC6178175/ /pubmed/30356418 http://dx.doi.org/10.1155/2018/8180174 Text en Copyright © 2018 Nusrat Jahan et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Jahan, Nusrat
Abd Manan, Fazilah
Mansoor, Arsala
Zaidi, Mudassir Asrar
Shahwani, Muhammad Naeem
Javed, Muhammad Arshad
Development of Novel Protocol to Al(3+) Stress Tolerance at Germination Stage in Indica Rice through Statistical Approaches
title Development of Novel Protocol to Al(3+) Stress Tolerance at Germination Stage in Indica Rice through Statistical Approaches
title_full Development of Novel Protocol to Al(3+) Stress Tolerance at Germination Stage in Indica Rice through Statistical Approaches
title_fullStr Development of Novel Protocol to Al(3+) Stress Tolerance at Germination Stage in Indica Rice through Statistical Approaches
title_full_unstemmed Development of Novel Protocol to Al(3+) Stress Tolerance at Germination Stage in Indica Rice through Statistical Approaches
title_short Development of Novel Protocol to Al(3+) Stress Tolerance at Germination Stage in Indica Rice through Statistical Approaches
title_sort development of novel protocol to al(3+) stress tolerance at germination stage in indica rice through statistical approaches
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6178175/
https://www.ncbi.nlm.nih.gov/pubmed/30356418
http://dx.doi.org/10.1155/2018/8180174
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