Key Laboratory of Biology and Genetic Breeding of Sweetpotato, Xuzhou Institute of Agricultural Sciences in Jiangsu Xuhuai District, Ministry of Agriculture and Rural Affairs, Sweetpotato Research Institute, CAAS, Xuzhou, 221131, Jiangsu, China.
State Key Laboratory of Crop Biology, College of Agronomic Science, Shandong Agricultural University, Tai'an, 271018, China.
Plant J. 2024 Nov;120(3):950-965. doi: 10.1111/tpj.17029. Epub 2024 Sep 16.
The formation and development of storage roots is the most important physiological process in sweetpotato production. Sucrose transporters (SUTs) regulate sucrose transport from source to sink organs and play important roles in growth and development of plants. However, whether SUTs involved in sweetpotato storage roots formation is so far unknown. In this study, we show that IbSUT1, a SUT, is localized to the plasma membrane. Overexpression of IbSUT1 in sweetpotato promotes the sucrose efflux rate from leaves, leading to increased sucrose levels in roots, thus induces lignin deposition in the stele, which inhibits the storage roots formation and compromises the yield. Heterologous expression of IbSUT1 in Arabidopsis significantly increases the sucrose accumulation and promotes lignification in the inflorescence stems. RNA-seq and biochemical analysis further demonstrated that IbMYB1 negatively regulates the expression of IbSUT1. Overexpression of IbMYB1 in Arabidopsis reduces the sucrose accumulation and lignification degree in the inflorescence stems. Moreover, co-overexpression of IbMYB1 and IbSUT1 restores the phenotype of lignin over-deposition in Arabidopsis. Collectively, our results reveal that IbSUT1 regulates source-sink sucrose transport and participates in the formation of sweetpotato storage roots and highlight the potential application of IbSUT1 in improving sweetpotato yield in the future.
块根的形成和发育是甘薯生产中最重要的生理过程。蔗糖转运蛋白(SUTs)调节蔗糖从源器官到汇器官的运输,在植物的生长和发育中发挥重要作用。然而,目前尚不清楚 SUTs 是否参与甘薯块根的形成。在本研究中,我们表明 IbSUT1 是一种 SUT,定位于质膜。在甘薯中过表达 IbSUT1 会促进叶片中蔗糖的外排速率,导致根部蔗糖水平升高,从而诱导木质素在中柱中沉积,这抑制了块根的形成并降低了产量。IbSUT1 在拟南芥中的异源表达显著增加了蔗糖的积累,并促进了花序茎中的木质化。RNA-seq 和生化分析进一步表明 IbMYB1 负调控 IbSUT1 的表达。在拟南芥中过表达 IbMYB1 会降低花序茎中的蔗糖积累和木质化程度。此外,IbMYB1 和 IbSUT1 的共过表达恢复了拟南芥中木质素过度沉积的表型。总之,我们的结果表明 IbSUT1 调节源-库蔗糖运输,并参与甘薯块根的形成,并强调了 IbSUT1 在未来提高甘薯产量方面的潜在应用。