Cell and Molecular Sciences, The James Hutton Institute, Invergowrie, Dundee, DD2 5DA, UK.
SESVanderHave, Soldatenplein 15, 3300, Tienen, Belgium.
Theor Appl Genet. 2021 Jan;134(1):81-93. doi: 10.1007/s00122-020-03683-0. Epub 2020 Sep 29.
Meiotic recombination plays a crucial role in plant breeding through the creation of new allelic combinations. Therefore, lack of recombination in some genomic regions constitutes a constraint for breeding programmes. In sugar beet, one of the major crops in Europe, recombination occurs mainly in the distal portions of the chromosomes, and so the development of simple approaches to change this pattern is of considerable interest for future breeding and genetics. In the present study, the effect of heat stress on recombination in sugar beet was studied by treating F plants at 28 °C/25 °C (day/night) and genotyping the progeny. F plants were reciprocally backcrossed allowing the study of male and female meiosis separately. Genotypic data indicated an overall increase in crossover frequency of approximately one extra crossover per meiosis, with an associated increase in pericentromeric recombination under heat treatment. Our data indicate that the changes were mainly induced by alterations in female meiosis only, showing that heterochiasmy in sugar beet is reduced under heat stress. Overall, despite the associated decrease in fertility, these data support the potential use of heat stress to foster recombination in sugar beet breeding programmes.
减数分裂重组通过创造新的等位基因组合,在植物育种中起着至关重要的作用。因此,一些基因组区域缺乏重组是对育种计划的一个限制。在欧洲主要作物甜菜中,重组主要发生在染色体的远端部分,因此开发简单的方法来改变这种模式对于未来的育种和遗传学具有重要意义。在本研究中,通过在 28°C/25°C(白天/夜间)下处理 F 代植物并对后代进行基因分型,研究了热应激对甜菜重组的影响。F 代植物被相互回交,允许分别研究雄性和雌性减数分裂。基因型数据表明,每减数分裂大约增加了一个额外的交叉频率,在热处理下着丝粒周围的重组也随之增加。我们的数据表明,这些变化主要是由雌性减数分裂的改变引起的,这表明甜菜中的异质减数分裂在热应激下减少。总的来说,尽管与生育力下降有关,但这些数据支持在甜菜育种计划中利用热应激来促进重组。