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Fodder beet is a reservoir of drought tolerance alleles for sugar beet breeding

机译:饲料甜菜是糖甜菜育种的耐旱性等位基因储层

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Drought leads to serious yield losses and followed by increasing food prices. Thereby, drought tolerance is one of most important, pivotal issues for plant breeding and is determined by the very complex genetic architecture, which involves a lot of genes engaged in many cell processes. Within genomes of currently cultivated sugar beet forms, the number of favourable allelic variants is limited. However, there is a potential to identify genes related to drought tolerance deposited in genomes of wild or fodder relatives. Therefore, the goal of our study, was to identify the source of allelic variants involved in drought tolerance using a large spectrum of sugar or fodder beets and their wild relatives for analyses. Based on the drought tolerance index, calculated for morphophy-siological traits, it was demonstrated that some of selected fodder beets showed the highest level of drought tolerance. The most drought tolerant fodder beet genotype did not show differences in the level of expression of genes engaged in osmoprotection and the antioxidative system, between control and drought condition, compared to sugar and wild beets. The genetic distance between selected beet forms was broad and ranged from 18 to 87%, however the most drought tolerant sugar, fodder and wild beets showed high genetic similarity and formed the common Glade. Based on obtained results we propose that an adequate broad source of genes related to drought tolerance occurs in fodder beets, the crossing with which is easier, less time-consuming and more cost-effective than with wild forms of beets.
机译:干旱导致严重的产量损失,然后增加食品价格。由此,耐旱是植物育种最重要的关键问题之一,由非常复杂的遗传建筑确定,这涉及许多从事许多细胞过程的许多基因。在目前培养的甜菜形式的基因组中,有利的等位基因变体的数量是有限的。然而,潜力旨在鉴定与野生或饲料亲属基因组中的干旱耐受性有关的基因。因此,我们研究的目标是使用大型糖或饲料甜菜及其野生亲属来识别涉及干旱耐受性的等位基因变异来源。基于干旱耐受指数,针对Morphophy-Siologicatoricatoricatoricatoricatoriats计算出来,证明一些选定的饲料甜菜显示出最高水平的耐旱性。与糖和野生甜菜相比,最多耐旱性饲料甜菜基因型未显示在渗透量和抗氧化系统之间从事OsMophotection和抗氧化系统的表达水平的差异。所选甜菜形式之间的遗传距离宽,范围为18至87%,但最具干旱的耐溶剂,饲料和野生甜菜显示出高的遗传相似性并形成了普通的林林。基于所得的结果,我们提出了与腐殖甜菜发生的充足的广泛基因源发生,其交叉,比野生甜菜更容易,耗时更耗时,更具成本效益更具成本效益。

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