Lauschke Angelique, Maibaum Leonie, Engel Mira, Eisengräber Luise, Bayer Sina, Hackel Aleksandra, Kühn Christina
Department of Plant Physiology, Institute of Biology, Humboldt-Universität zu Berlin, Philippstr. 13 Building 12, 10115 Berlin, Germany.
Plant Physiol. 2024 Dec 23;197(1). doi: 10.1093/plphys/kiae602.
The main phloem loader in potato, sucrose transporter StSUT1, is coexpressed with 2 members of the SWEET gene family: StSWEET11b, a clade III member of SWEET carriers assumed to be involved in sucrose efflux, and StSWEET1g, a clade I member involved in glucose efflux into the apoplast, that physically interacts with StSUT1. We investigated the functionality of SWEET carriers via uptake experiments with fluorescent glucose or sucrose analogs. Inhibition or overexpression of StSWEET1g/SlSWEET1e affected tuberization and flowering in transgenic potato plants. Isolation of the apoplasmic fluid by vacuum infiltration centrifugation revealed changes in the apoplasmic hexose composition and mono-to-disaccharide ratio, affecting sink strength. Downregulation of StSWEET1g expression affected the expression of SP6A, a tuberigen, and miR172 under long-day conditions, leading to early flowering and tuberization. A systematic screen for StSWEET1g-interacting protein partners revealed several proteins affecting cell wall integrity and strengthening. StSWEET1g and the main interaction partners were strongly downregulated during tuber development. We discuss whether StSWEET1g activity might be linked to cell wall remodeling during tuber development and the switch from apoplasmic to symplasmic phloem unloading.
马铃薯中的主要韧皮部装载蛋白——蔗糖转运蛋白StSUT1,与SWEET基因家族的两个成员共表达:StSWEET11b,一种假定参与蔗糖外排的SWEET载体进化枝III成员;以及StSWEET1g,一种参与葡萄糖向质外体流出的进化枝I成员,它与StSUT1发生物理相互作用。我们通过使用荧光葡萄糖或蔗糖类似物的摄取实验研究了SWEET载体的功能。StSWEET1g/SlSWEET1e的抑制或过表达影响了转基因马铃薯植株的块茎形成和开花。通过真空渗透离心法分离质外体流体,揭示了质外体己糖组成和单糖与双糖比例的变化,影响了库强度。在长日照条件下,StSWEET1g表达的下调影响了块茎形成素SP6A和miR172的表达,导致早期开花和块茎形成。对StSWEET1g相互作用蛋白伙伴的系统筛选揭示了几种影响细胞壁完整性和强化的蛋白质。在块茎发育过程中,StSWEET1g及其主要相互作用伙伴的表达被强烈下调。我们讨论了StSWEET1g的活性是否可能与块茎发育过程中的细胞壁重塑以及从质外体到共质体韧皮部卸载的转变有关。