Zhuzhzhalova T P, Kolesnikova E O, Vasilchenko E N, Cherkasova N N
A.L. Mazlumov All-Russia Research Institute of Sugar Beet, VNIISS, Ramon raion, Voronezh oblast, Russia.
Vavilovskii Zhurnal Genet Selektsii. 2020 Feb;24(1):40-47. doi: 10.18699/VJ20.593.
Here we consider aspects of the application of biotechnological methods to rapid creation, propagation, and maintenance of plants with improved or new traits in sugar beet breeding. The results of the works carried out in these fields by the Federal State Budgetary Scientific Institution "The A.L. Mazlumov All-Russia Research Institute of Sugar Beet" are reviewed. A close association between morphological and physiological changes in in vitro cultured organs and tissues, on the one hand, and breeding traits, on the other hand, which allows the development of experimental systems for non-amphimictic plant reconstruction is shown. The influence of in vitro growth conditions on haploid cells of unfertilized sugar beet ovules in the course of obtaining doubled haploid lines with high degree of homozygosity and maintenance of valuable breeding properties is considered. As compared to common inbreeding, this method shortens the time for development of homozygous material from 10-12 to 3-5 years, which is of great importance for speeding-up the breeding process. The results of studies on the culturing of mature sugar beet zygotic embryos based on in vitro selective systems have made it possible to improve the adaptive potential of plants and to provide complex resistance to environmental stress factors. Strict selection under abiotic stress conditions allowed creation of sugar beet isogenic lines with tolerance of drought, salinity, and soil acidity. It is shown that the proposed original design of mass-scale microclonal in vitro reproduction and deposition of elite plants as components of highly productive hybrids can be used to obtain seeds of uniform high-quality breeding material. The technologies developed by biotechnological methods are a topical and innovative direction of inquiry, since the application of these techniques to sugar beet breeding will promote obtaining of competitive hybrids with a set of commercially valuable traits. The combination of biotechnology methods, including tissue culture, and traditional breeding techniques is expected to provide an opportunity to obtain a new starting material to develop domestic varieties and hybrids of new generation with heterosis effect and a wide resistance spectrum persisting across generations.
本文探讨了生物技术方法在甜菜育种中快速培育、繁殖和保存具有改良或新性状植物方面的应用。综述了俄罗斯联邦国家预算科研机构“A.L. 马兹卢莫夫全俄甜菜研究所”在这些领域开展工作的成果。一方面展示了体外培养的器官和组织的形态和生理变化与另一方面的育种性状之间的紧密联系,这使得开发非两性融合植物重建的实验系统成为可能。考虑了体外生长条件对未受精甜菜胚珠单倍体细胞在获得高度纯合的双单倍体系以及保持有价值的育种特性过程中的影响。与普通近亲繁殖相比,这种方法将纯合材料的发育时间从10 - 12年缩短至3 - 5年,这对于加快育种进程具有重要意义。基于体外选择系统对成熟甜菜合子胚进行培养的研究结果,使得提高植物的适应潜力并提供对环境胁迫因子的综合抗性成为可能。在非生物胁迫条件下进行严格选择,培育出了具有耐旱、耐盐和耐土壤酸度特性的甜菜同基因系。结果表明,所提出的大规模微克隆体外繁殖和作为高产杂交种组成部分的优良植株保存的原始设计,可用于获得均匀高质量育种材料的种子。生物技术方法开发的技术是一个热门且创新的研究方向,因为将这些技术应用于甜菜育种将有助于获得具有一系列商业价值性状的有竞争力的杂交种。包括组织培养在内的生物技术方法与传统育种技术的结合,有望提供机会获得新的起始材料,以培育具有杂种优势效应和跨代持久广泛抗性谱的新一代国内品种和杂交种。