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Efficiency of selection–biotechnological system of selection for creation of breeding source material of sunflower resistant to herbicides and broomrape

机译:selection-biotechnological系统的效率选择育种创造的来源向日葵耐除草剂和材料列当属植物

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Abstract The sunflower is a strategically important oil crop. Every year the area under this crop grows, and the rapid returning of sunflowers back to the fields provokes the formation of new more aggressive races of broomrape (Orobanche cumana Wallr.). Broomrape is a parasite that interferes with the normal development of sunflower and can lead to significant crop losses. For creating a sunflower hybrid (F1) it is needed to cross the parental components, which have a complex of important traits, among which there is a resistance to the herbicides and a broomrape. Considering that the creation of each of the components of the hybrid involves many years of painstaking work in the breeding process, modern approaches and methods are used to accelerate the creation of a new source material. Thus, using the technology of cultivating immature embryos in vitro culture, it is possible to reduce the time to create lines resistant to herbicides, for example. And during selection for resistance to pathogenic organisms, testing is most often used against an artificial infectious background, both in the field and in laboratory conditions, in order to differentiate the material on this basis. The aim of this work was to establish the effectiveness system when creating an initial breeding material resistant to herbicides and broomrape. As a result of testing the lines on an artificial infectious background, was identified plants which have high resistance to the G-race broomrape and were isolated from hybrid combinations resistant to tribenuron-methyl and imidazolinones. Thus, among the analyzed plants which are resistant to tribenuron‐methyl, four lines were isolated, which are highly resistant to the G-race broomrape from a hybrid combinations BH0118/SURES–2 (101/1, 101/4, 101/6, 101/7), and BH0318/SURES–2 (101/21, 101/24, 101/28, 101/30), and five lines (101/11, 101/12, 101/16, 101/17, 101/18) from a hybrid combination BH0218/SURES–2. Among imidazolinone-resistant sunflower lines – line 3 was isolated as highly resistant to the G-race broomrape.
机译:抽象的向日葵是一种战略重要的油料作物。这种作物生长,快速返回向日葵回到田野引起形成新的更激进的种族列当属植物(列当cumana Wallr)。干扰正常的寄生虫向日葵和可能导致的发展重要的农作物损失。混合(F1)需要父母组件,它有一个复杂的重要特征,其中有一个阻力除草剂和列当属植物。创建的每个组件的混合需要多年的艰苦的工作育种过程,现代方法和手段是用来加速创建一个新的源材料。培养成熟的胚胎体外培养,它可以减少时间创建行吗例如,抗除草剂。选择抗致病菌,测试通常是用来对付一个人工在领域和传染性的背景实验室条件下,以区分在此基础上的材料。有效性是建立系统什么时候创建一个初始抗性育种材料除草剂和列当属植物。在人工感染测试线背景,被确认有高的植物格雷丝肉苁蓉和阻力隔绝对杂交组合起始和imidazolinones。分析了植物抵抗tribenuron高甲基四行是孤立的,这是高度耐格雷丝列当属植物杂交组合BH0318 /测量(101/21—2、101/24 101/28 101/30)和五行(101/11,101/12,101/16,101/17,从混合组合BH0218 / SURES-2 101/18)。在imidazolinone-resistant向日葵行-第3行和高度耐孤立格雷丝列当属植物。

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