DYNAMICS OF REPRODUCTION OF GRAPE ROOTSTOCKS IN THE SYSTEM IN VITRO

M.I. Grigorenko, I.A. Pavlova
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Abstract

In connection with the extension of areas under vineyards, it becomes necessary to use rootstocks, resistant to certain soil and climatic conditions (high content of active lime and salts in the soil, drought). Growth of the assortment of rootstocks available for propagation is one of the most important strategies of domestic nursery farming development, along with the production of improved planting material and better performance of its quality indicators. Today it is important to optimize clonal micro-propagation technology for promising grape rootstocks in order to increase net reproduction while maintaining the genetic identity of planting material. The purpose of the work was to study the dynamics of morphogenesis of grape rootstocks in the system in vitro to optimize the technology of clonal micro-propagation, taking into account the genetic specificity of particular genotypes. The study materials were the in vitro plants of grape rootstocks: Fercal clone 242, Ruggeri 140, and Gravesac (clones 11 and 12). The methods accepted in biotechnology and developed in the Breeding Department of the Institute Magarach were both used in the process of research. Cultivation was carried out on PG medium supplemented with NAA (α-naphthylacetic acid) 0.05 mg/l. The results showed that the dynamics of morphogenesis of rootstocks Ferсal clone 242, Gravesac clone 11 and Gravesac clone 12, analyzed on the basis of net propagation, did not differ significantly by varieties, with the exception of the second passage. The study of morphogenetic potential of Ruggeri 140 rootstock bud made it possible to reveal the dependence of net propagation on the line, it was especially noticeable in the first passage. Separate lines showed high net propagation in the second passage. The average indicator value for all lines was 2.59. In general for all rootstocks, similar results were obtained in successive passages, indicating a tendency for net propagation to be decreased. In order to increase the efficiency of technology, it is necessary to optimize the conditions of cultivation for industrial propagation, taking into account the genetic characteristics of every rootstock.
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葡萄砧木在离体系统中的繁殖动力学
随着葡萄园面积的扩大,有必要使用对某些土壤和气候条件(土壤中活性石灰和盐分含量高、干旱)有抵抗力的砧木。增加可用于繁殖的砧木种类是国内苗圃农业发展的最重要战略之一,同时还能生产改良的种植材料,提高其质量指标。如今,对有前景的葡萄砧木进行克隆微繁殖技术优化,以增加净繁殖量,同时保持种植材料的遗传特性,具有重要意义。这项工作的目的是研究葡萄砧木在离体系统中的形态发生动态,以优化克隆微繁殖技术,同时考虑到特定基因型的遗传特异性。研究材料是葡萄砧木的离体植株:Fercal 克隆 242、Ruggeri 140 和 Gravesac(克隆 11 和 12)。研究过程中采用了生物技术中公认的方法和马格拉赫研究所育种部开发的方法。培养是在 PG 培养基上进行的,并添加了 0.05 毫克/升的 NAA(α-萘乙酸)。结果表明,根据净繁殖分析,砧木 Ferсal 克隆 242、Gravesac 克隆 11 和 Gravesac 克隆 12 的形态发生动态,除第二阶段外,各品种之间没有显著差异。对鲁格瑞 140 根茎芽的形态发生潜能进行的研究揭示了净繁殖对品系的依赖性,这种依赖性在第一阶段尤为明显。不同品系在第二阶段表现出较高的净繁殖能力。所有品系的平均指标值为 2.59。一般来说,所有砧木在连续种植过程中都获得了相似的结果,表明净繁殖率有下降的趋势。为了提高技术效率,有必要优化工业化繁殖的栽培条件,同时考虑到每种砧木的遗传特性。
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