Max Planck Institute of Molecular Plant Physiology, Potsdam Science Park, Am Mühlenberg 1, 14476, Potsdam, Germany.
Business Academy Aarhus, 8260, Viby J, Denmark.
Plant Reprod. 2024 Dec;37(4):463-468. doi: 10.1007/s00497-024-00504-y. Epub 2024 Jun 5.
The DNA methylation status at an epigenetic quantitative trait locus in the Arabidopsis chromosome 2 is linked to the formation of apomictic-like endosperms. Seed development in most angiosperms is coupled to fertilization of the maternal gametes by two sperm cells. However, apomictic species can reproduce asexually via seeds. This trait is of great agricultural interest, as it would fix complex genotypes and allow for pollen-independent seed production. However, engineering full apomixis requires three independent processes: apomeiosis, parthenogenesis and autonomous endosperm development. While the first two have been successfully engineered in some crops, the formation of autonomous endosperms remains a challenge. Although it is known that this trait is under epigenetic control, such as of DNA methylation, the underlying mechanisms remain mostly undiscovered. Here, using epigenetic recombinant inbred lines, we identified an epigenetic quantitative trait locus in the Arabidopsis chromosome 2, which correlates with permissiveness for the formation of asexual seeds: hypomethylation at this genomic region allows the formation of larger autonomous endosperms. Importantly, the methylation at this locus only correlates with asexual seed size, and not to the size of sexual seeds or that of other organs. With this, we aim to show that screening for epialleles is a promising strategy to uncover loci underlying relevant traits and could pave the way to identifying genes necessary for the engineering of apomixis.
拟南芥 2 号染色体上的一个表观遗传数量性状位点的 DNA 甲基化状态与无融合生殖样胚乳的形成有关。大多数被子植物的种子发育与两个精细胞对母配子的受精有关。然而,无融合生殖的物种可以通过种子进行无性繁殖。这种特性在农业上具有很大的意义,因为它可以固定复杂的基因型,并允许花粉独立的种子生产。然而,工程化完全无融合生殖需要三个独立的过程:无减数分裂、孤雌生殖和自主胚乳发育。虽然前两个过程已经在一些作物中成功工程化,但自主胚乳的形成仍然是一个挑战。虽然已知该特性受表观遗传控制,如 DNA 甲基化,但潜在的机制仍大多未被发现。在这里,我们使用表观遗传重组自交系,在拟南芥 2 号染色体上鉴定到一个与无融合生殖种子形成的许可性相关的表观遗传数量性状位点:该基因组区域的低甲基化允许形成更大的自主胚乳。重要的是,该位点的甲基化仅与无性种子大小相关,而与有性种子大小或其他器官大小无关。通过这一点,我们旨在表明筛选表观等位基因是揭示相关性状下潜在基因座的一种有前途的策略,并为鉴定工程化无融合生殖所需的基因铺平道路。