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Genotypes-Independent Optimization of Nitrogen Supply for Isolated Microspore Cultures in Barley

机译:大麦中分离小孢子培养物氮供应的基因型无关优化

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摘要

To establish a high-efficiency system of isolated microspore culture for different barley genotypes, we investigated the effects of nitrogen sources and concentrations on callus induction and plant regeneration in different barley genotypes. The results showed that the organic nitrogen sources greatly increased the callus induction, and the great reduction of total nitrogen sources would significantly decrease the callus induction. And the further optimization experiments revealed that the increasing of organic nitrogen sources was much important in callus induction while it seemed different in plant regeneration. Based on the great effects of organic nitrogen on callus induction, the medium of N6-ANO1/4-2000 might be the best choice for the microspore culture system. In addition, the phylogenetic analysis indicated that there were clear differences of genetic backgrounds among these barley genotypes, and it also suggested that this medium for microspore culture had widespread utilization in different barley genotypes.
机译:为了建立针对不同大麦基因型的分离小孢子培养的高效体系,我们研究了氮源和浓度对不同大麦基因型对愈伤组织诱导和植物再生的影响。结果表明,有机氮源大大增加了愈伤组织的诱导,总氮源的大大减少将显着降低愈伤组织的诱导。进一步的优化实验表明,增加有机氮源在愈伤组织诱导中非常重要,而在植物再生中似乎有所不同。基于有机氮对愈伤组织诱导的巨大影响,N6-ANO1 / 4-2000培养基可能是小孢子培养系统的最佳选择。此外,系统发育分析表明,这些大麦基因型之间的遗传背景存在明显差异,这也表明这种用于小孢子培养的培养基已在不同大麦基因型中得到了广泛利用。

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