College of Life Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China.
Cell and Molecular Sciences, The James Hutton Institute, Invergowrie, Dundee, DD2 5DA, UK.
Plant J. 2020 Sep;103(6):2263-2278. doi: 10.1111/tpj.14898. Epub 2020 Jul 14.
Potato tuber formation is a secondary developmental programme by which cells in the subapical stolon region divide and radially expand to further differentiate into starch-accumulating parenchyma. Although some details of the molecular pathway that signals tuberisation are known, important gaps in our knowledge persist. Here, the role of a member of the TERMINAL FLOWER 1/CENTRORADIALIS gene family (termed StCEN) in the negative control of tuberisation is demonstrated for what is thought to be the first time. It is shown that reduced expression of StCEN accelerates tuber formation whereas transgenic lines overexpressing this gene display delayed tuberisation and reduced tuber yield. Protein-protein interaction studies (yeast two-hybrid and bimolecular fluorescence complementation) demonstrate that StCEN binds components of the recently described tuberigen activation complex. Using transient transactivation assays, we show that the StSP6A tuberisation signal is an activation target of the tuberigen activation complex, and that co-expression of StCEN blocks activation of the StSP6A gene by StFD-Like-1. Transcriptomic analysis of transgenic lines misexpressing StCEN identifies early transcriptional events in tuber formation. These results demonstrate that StCEN suppresses tuberisation by directly antagonising the function of StSP6A in stolons, identifying StCEN as a breeding marker to improve tuber initiation and yield through the selection of genotypes with reduced StCEN expression.
块茎形成是一种次级发育程序,通过该程序,亚顶端匍匐茎区域中的细胞分裂并径向扩展,进一步分化为淀粉积累的薄壁组织。尽管已经了解了指示块茎形成的分子途径的一些细节,但我们的知识仍然存在重要的空白。在这里,首次证明了 TERMINAL FLOWER 1/CENTRORADIALIS 基因家族的一个成员(称为 StCEN)在负调控块茎形成中的作用。结果表明,StCEN 的表达减少会加速块茎形成,而过表达该基因的转基因系则表现出块茎形成延迟和块茎产量降低。蛋白-蛋白相互作用研究(酵母双杂交和双分子荧光互补)表明,StCEN 与最近描述的块茎原激活复合物的成分结合。使用瞬时转激活测定,我们表明 StSP6A 块茎形成信号是块茎原激活复合物的激活靶标,并且 StCEN 的共表达阻断了 StFD-Like-1 对 StSP6A 基因的激活。错误表达 StCEN 的转基因系的转录组分析鉴定了块茎形成中的早期转录事件。这些结果表明,StCEN 通过直接拮抗 StSP6A 在匍匐茎中的功能来抑制块茎形成,从而将 StCEN 鉴定为一种通过选择具有降低的 StCEN 表达的基因型来改善块茎起始和产量的育种标记。