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Effect of EMS induced mutation in rice cultivar Nagina 22 on salinity tolerance
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Abstract
Salinized hydroponic culture experiment with three salinity levels (EC control, 6 and 12 dS/m) was performed to screen salt tolerant mutants of aerobic rice cultivar Nagina 22 and to study the nature of salt tolerance from a total of 432 EMS induced M4 mutants. Plants were harvested 30 days after sowing. Growth parameters viz. root weight, shoot weight, root length, shoot length, Na and K concentrations in shoot and roots were measured. Combined Factor scores of growth parameters was computed by Principle Component Analysis using Minitab software.
At EC 12 dS/m 10 mutants out of 432 were able to survive. At moderate salinity, some mutant lines produced higher shoot weight compared to their respective control showing inverse trend and the effectiveness of EMS induced mutation in inducing salinity tolerance to these mutants. At high salinity only10 mutants survived (remained green) up to the time of 30 days harvest. These mutants performed well in terms of overall growth recording 2.1-2.5 times higher factor score and 8-14 times higher shoot weight compared to the N 22 check. One mutant N22-L-1010 almost completely excluded Na at xylem parenchyma level. Two other mutants N22-L-1013 and N22-L-806 maintained Na exclusion compared to the N22 check. N22 check and mutant N22-L-1009 maintained similar degree of Na exclusion though the N22 check died because it cannot maintain adequate K in shoot.
We conclude that EMS has induced salinity tolerance in some mutants. The study can be advanced further to characterize the putative mutants through molecular genetics approaches.
Title: Effect of EMS induced mutation in rice cultivar Nagina 22 on salinity tolerance
Description:
Abstract
Salinized hydroponic culture experiment with three salinity levels (EC control, 6 and 12 dS/m) was performed to screen salt tolerant mutants of aerobic rice cultivar Nagina 22 and to study the nature of salt tolerance from a total of 432 EMS induced M4 mutants.
Plants were harvested 30 days after sowing.
Growth parameters viz.
root weight, shoot weight, root length, shoot length, Na and K concentrations in shoot and roots were measured.
Combined Factor scores of growth parameters was computed by Principle Component Analysis using Minitab software.
At EC 12 dS/m 10 mutants out of 432 were able to survive.
At moderate salinity, some mutant lines produced higher shoot weight compared to their respective control showing inverse trend and the effectiveness of EMS induced mutation in inducing salinity tolerance to these mutants.
At high salinity only10 mutants survived (remained green) up to the time of 30 days harvest.
These mutants performed well in terms of overall growth recording 2.
1-2.
5 times higher factor score and 8-14 times higher shoot weight compared to the N 22 check.
One mutant N22-L-1010 almost completely excluded Na at xylem parenchyma level.
Two other mutants N22-L-1013 and N22-L-806 maintained Na exclusion compared to the N22 check.
N22 check and mutant N22-L-1009 maintained similar degree of Na exclusion though the N22 check died because it cannot maintain adequate K in shoot.
We conclude that EMS has induced salinity tolerance in some mutants.
The study can be advanced further to characterize the putative mutants through molecular genetics approaches.
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