Radiation-induced in vitro mutagenesis system for salt tolerance and other agronomic characters in sugarcane(Saccharum officinarum L.)

被引:1
|
作者
Ashok A.Nikam [1 ]
Rachayya M. Devarumath [2 ]
Akash Ahuja [2 ]
Harinath Babu [2 ]
Mahadeo G.Shitole [3 ]
Penna Suprasanna [4 ]
机构
[1] Tissue Culture Section, Vasantdada Sugar Institute,Manjari (Bk), Pune 412307, India
[2] Molecular Biology and Genetic Engineering Division, Vasantdada Sugar Institute,Manjari (Bk), Pune 412307, India
[3] Department of Botany, Pune University
[4] Plant Stress Physiology & Biotechnology Section, Nuclear Agriculture & Biotechnology Division, Bhabha Atomic Research Centre
关键词
Gamma-rays; Mutagenesis; Embryogenic callus; Saccharum officinarum L; Salt tolerance;
D O I
暂无
中图分类号
S566.1 [甘蔗];
学科分类号
摘要
Gamma ray-induced in vitro mutagenesis and selection for salt(NaC l) tolerance were investigated in sugarcane(Saccharum officinarum L.). Embryogenic callus cultures were irradiated(10 to 80 Gy) and subjected to in vitro selection by exposure of irradiated callus to NaC l(0, 50, 100,150, 200, and 250 mmol L-1). Increasing NaC l concentrations resulted in growth reduction and increased membrane damage. Salt-selected callus lines were characterized by the accumulation of proline, glycine betaine, and Na+and K+concentration. Higher accumulation of proline and glycine betaine was observed in NaC l stressed callus irradiated at 20 Gy. Na+concentration increased and K+concentration decreased with increasing salt level. Irradiated callus showed50–60% regeneration under NaC l stress, and in vitro-regenerated plants were acclimatized in the greenhouse, with 80–85% survival. A total of 138 irradiated and salt-selected selections were grown to maturity and their agronomic performance was evaluated under normal and saline conditions. Of these, 18 mutant clones were characterized for different agro-morphological characters and some of the mutant clones exhibited improved sugar yield with increased Brix%,number of millable canes, and yield. The result suggest that radiation-induced mutagenesis offers an effective way to enhance genetic variation in sugarcane.
引用
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页码:46 / 56
页数:11
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