Ishikawa Prefectural University, 1-308, Suematsu, Nonoichi, Ishikawa, 921-8836, Japan.
Department of Animal, Plant and Soil Sciences, AgriBio Building, La Trobe University, 5 Ring Road, Bundoora, VIC, 3086, Australia.
Theor Appl Genet. 2023 May 18;136(6):132. doi: 10.1007/s00122-023-04378-y.
We identified and characterized a dominant FT allele for flowering without vernalization in Brassica rapa, while demonstrating its potential for deployment in breeding to accelerate flowering in various Brassicaceae crops. Controlling the timing of flowering is key to improving yield and quality of several agricultural crops including the Brassicas. Many Brassicaceae crops possess a conserved flowering mechanism in which FLOWERING LOCUS C (FLC) represses the transcription of flowering activators such as FLOWERING LOCUS T (FT) during vernalization. Here, we employed genetic analysis based on next-generation sequencing to identify a dominant FT allele, BraA.FT.2-C, for flowering in the absence of vernalization in the Brassica rapa cultivar 'CHOY SUM EX CHINA 3'. BraA.FT.2-C harbors two large insertions upstream of its coding region and is expressed without vernalization, despite FLC expression. We show that BraA.FT.2-C offers an opportunity to introduce flowering without vernalization requirement into winter-type brassica crops, including B. napus, which have many functional FLC paralogs. Furthermore, we demonstrated the feasibility of using B. rapa harboring BraA.FT.2-C as rootstock for grafting to induce flowering in radish (Raphanus sativus), which requires vernalization for flowering. We believe that the ability of BraA.FT.2-C to overcome repression by FLC can have significant applications in brassica crops breeding to increase yields by accelerating or delaying flowering.
我们在芸薹属植物中鉴定并描述了一个在没有春化作用的情况下促进开花的 FT 等位基因,同时证明了其在各种芸薹属作物的育种中应用的潜力,可以加速其开花。控制开花时间是提高包括芸薹属作物在内的几种农作物产量和品质的关键。许多芸薹属作物具有保守的开花机制,其中 FLOWERING LOCUS C (FLC) 在春化过程中抑制开花激活因子如 FLOWERING LOCUS T (FT) 的转录。在这里,我们利用基于下一代测序的遗传分析鉴定了一个在 Brassica rapa 品种 'CHOY SUM EX CHINA 3' 中不需要春化作用就能促进开花的显性 FT 等位基因 BraA.FT.2-C。BraA.FT.2-C 在其编码区上游有两个大的插入,尽管 FLC 表达,但它在没有春化作用的情况下表达。我们表明,BraA.FT.2-C 为引入不需要春化作用的开花提供了机会,包括具有许多功能 FLC 同源物的冬型芸薹属作物 B. napus。此外,我们还证明了利用含有 BraA.FT.2-C 的 B. rapa 作为砧木进行嫁接以诱导萝卜(Raphanus sativus)开花的可行性,萝卜开花需要春化作用。我们相信,BraA.FT.2-C 克服 FLC 抑制的能力在芸薹属作物的育种中有重要的应用,可以通过加速或延迟开花来提高产量。