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Somaclonal variation of sugar beet resistant to pathogenic root rot Fusarium oxysporum var. orthoceras

机译:抗病性根腐镰刀菌变种的甜菜的体细胞克隆变异。正畸

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Sugar beet (Beta vulgaris L.) - one of the most important crop in the world. In Kazakhstan, it is a traditional and major source of domestic sugar. The industry of cultivation and production of sugar beet is one of the priority areas of agricultural development of the country. In this paper, we studied the regeneration ability of different genotypes of sugar beet explants on selective media with the culture filtrate of the pathogen fungus F. oxysporum var. orthoceras. From the roots and shoots of sugar beet the pathogen Fusarium root rot was isolated. Was obtained pure cultures of the isolated pathogen. As a result, of morphological and cultural descriptions, as well as microbiological analysis it was revealed that the isolated pathogen is Fusarium Oxysporum. The results showed the pathogenicity of the fungus. For regeneration in vitro of the sugar beet genotypes resistant to the pathogen the culture media was optimized to the culture filtrate of the fungus F. oxysporum var. orthoceras. The frequency of shoot regeneration, depending on the genotype, was 1,0-12,5 %. On these explants the multiple shoot formations were observed.
机译:甜菜(Beta vulgaris L.)-世界上最重要的农作物之一。在哈萨克斯坦,它是国内糖的传统和主要来源。甜菜的种植和生产产业是该国农业发展的优先领域之一。本文研究了不同基因型甜菜外植体在病原真菌F. oxysporum var的培养滤液对选择性培养基的再生能力。正畸。从甜菜的根和芽中分离出病原镰刀菌根腐病。获得了分离病原体的纯培养物。结果,从形态和文化描述以及微生物学分析表明,分离出的病原体是尖孢镰刀菌。结果显示了真菌的致病性。为了在体外再生对病原体具有抗性的甜菜基因型,将培养基最优化为真菌氧化镰刀菌的培养滤液。正畸。取决于基因型,枝条再生的频率为1,0-12,5%。在这些外植体上观察到多个芽形成。

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