Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, China.
Southern Cross Plant Science, Southern Cross University, Lismore, NSW, Australia.
Plant Biotechnol J. 2022 Jul;20(7):1298-1310. doi: 10.1111/pbi.13807. Epub 2022 Mar 18.
Transposable element (TE) is prevalent in plant genomes. However, studies on their impact on phenotypic evolution in crop plants are relatively rare, because systematically identifying TE insertions within a species has been a challenge. Here, we present a novel approach for uncovering TE insertion polymorphisms (TIPs) using pan-genome analysis combined with population-scale resequencing, and we adopt this pipeline to retrieve TIPs in a Brassica rapa germplasm collection. We found that 23% of genes within the reference Chiifu-401-42 genome harbored TIPs. TIPs tended to have large transcriptional effects, including modifying gene expression levels and altering gene structure by introducing new introns. Among 524 diverse accessions, TIPs broadly influenced genes related to traits and acted a crucial role in the domestication of B. rapa morphotypes. As examples, four specific TIP-containing genes were found to be candidates that potentially involved in various climatic conditions, promoting the formation of diverse vegetable crops in B. rapa. Our work reveals the hitherto hidden TIPs implicated in agronomic traits and highlights their widespread utility in studies of crop domestication.
转座元件(TE)在植物基因组中普遍存在。然而,关于它们对作物表型进化影响的研究相对较少,因为系统地鉴定一个物种内的 TE 插入一直是一个挑战。在这里,我们提出了一种使用泛基因组分析结合群体规模重测序来揭示转座元件插入多态性(TIP)的新方法,并采用该方案在芸薹属作物种质资源中检索 TIP。我们发现,参考品种 Chiifu-401-42 基因组中的 23%的基因含有 TIP。TIP 倾向于产生较大的转录效应,包括通过引入新的内含子来改变基因表达水平和改变基因结构。在 524 个不同的品种中,TIP 广泛影响与性状相关的基因,并在芸薹属植物形态的驯化中起着关键作用。例如,发现四个特定的含有 TIP 的基因可能与各种气候条件有关,促进了芸薹属蔬菜作物的多样化形成。我们的工作揭示了迄今隐藏在农业性状中的 TIP,并强调了它们在作物驯化研究中的广泛应用。