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Phenotypic, biochemical and genomic variability in generations of the rapeseed (Brassica napus L.) mutant lines obtained via chemical mutagenesis

机译:通过化学诱变获得的油菜(Brassica napus L.)油菜突变体世代的表型,生化和基因组变异

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摘要

The phenotypic, biochemical and genetic variability was studied in M2-M5 generations of ethyl methansulfonat (EMS, 0.2%) mutagenized rapeseed lines generated from canola, ‘00’, B. napus cv. Vikros. EMS mutagenesis induced extensive diversity in morphological and agronomic traits among mutant progeny resulted in selection of EMS populations of B. napus- and B. rapa-morphotypes. The seeds of the obtained mutant lines were high-protein, low in oil and stabilized in contents of main fatty acids which make them useful for feed production. Despite the increased level of various meiotic abnormalities revealed in EMS populations, comparative karyotype analysis and FISH-based visualization of 45S and 5S rDNA indicated a high level of karyotypic stability in M2-M5 plants, and therefore, the obtained mutant lines could be useful in further rapeseed improvement. The revealed structural chromosomal reorganizations in karyotypes of several plants of B. rapa-type indicate that rapeseed breeding by chemical mutagenesis can result in cytogenetic instability in the mutant progeny, and therefore, it should include the karyotype examination. Our findings demonstrate that EMS at low concentrations has great potential in rapeseed improvement.
机译:从油菜双歧杆菌“ 00”的双低油菜籽中产生的M2-M5代乙基甲磺酸(EMS,0.2%)诱变油菜籽油中,研究了表型,生化和遗传变异性。维克罗斯。 EMS诱变在突变后代中引起形态和农艺性状的广泛多样性,导致选择了油菜双歧杆菌和油菜双歧杆菌的EMS种群。获得的突变株系的种子是高蛋白,低油且主要脂肪酸含量稳定的,使其可用于饲料生产。尽管在EMS种群中发现各种减数分裂异常的水平增加,但比较核型分析和基于FISH的45S和5S rDNA可视化显示M2-M5植物的核型稳定性水平很高,因此,获得的突变株可用于油菜籽进一步改良。几种B. rapa型植物的核型中揭示的结构染色体重组表明,通过化学诱变进行油菜育种可能会导致突变体后代的细胞遗传不稳定,因此,应包括核型检查。我们的发现表明,低浓度的EMS在改善油菜籽方面具有巨大潜力。

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