Shaanxi Engineering Research Center for Vegetables/College of Horticulture, Northwest A&F University, Yangling, Shaanxi 712100, China.
Mid-Florida Research and Education Center, University of Florida, Institute of Food and Agricultural Sciences, 2725 South Binion Road, Apopka, FL 32703, USA.
Plant Physiol. 2023 May 31;192(2):1080-1098. doi: 10.1093/plphys/kiad162.
The functions of sucrose transporters (SUTs) differ among family members. The physiological function of SUT1 has been studied intensively, while that of SUT4 in various plant species including tomato (Solanum lycopersicum) is less well-understood. In this study, we characterized the function of tomato SlSUT4 in the regulation of flowering using a combination of molecular and physiological analyses. SlSUT4 displayed transport activity for sucrose when expressed in yeast (Saccharomyces cerevisiae), and it localized at both the plasma membrane and tonoplast. SlSUT4 interacted with SlSUT1, causing partial internalization of the latter, the main phloem loader of sucrose in tomato. Silencing of SlSUT4 promoted SlSUT1 localization to the plasma membrane, contributing to increased sucrose export and thus increased sucrose level in the shoot apex, which promoted flowering. Both silencing of SlSUT4 and spraying with sucrose suppressed gibberellin biosynthesis through repression of ent-kaurene oxidase and gibberellin 20-oxidase-1 (2 genes encoding key enzymes in gibberellin biosynthesis) expression by SlMYB76, which directly bound to their promoters. Silencing of SlMYB76 promoted gibberellin biosynthesis. Our results suggest that SlSUT4 is a functional SUT in tomato; downregulation of SlSUT4 expression enhances sucrose transport to the shoot apex, which promotes flowering by inhibiting gibberellin biosynthesis.
蔗糖转运蛋白(SUTs)的功能因家族成员而异。SUT1 的生理功能已得到深入研究,而番茄(Solanum lycopersicum)等各种植物中的 SUT4 功能则了解较少。在这项研究中,我们使用分子和生理分析相结合的方法,研究了番茄 SlSUT4 在开花调控中的功能。SlSUT4 在酵母(Saccharomyces cerevisiae)中表达时具有蔗糖转运活性,并且定位于质膜和液泡膜上。SlSUT4 与 SlSUT1 相互作用,导致后者的部分内化,后者是番茄中蔗糖的主要韧皮部装载器。SlSUT4 的沉默促进了 SlSUT1 向质膜的定位,导致蔗糖的输出增加,从而增加了茎尖中的蔗糖水平,促进了开花。SlSUT4 的沉默和喷施蔗糖都通过抑制 SlMYB76 对 ent-贝壳杉烯氧化酶和赤霉素 20-氧化酶-1(赤霉素生物合成的 2 个关键酶编码基因)表达的抑制作用,来抑制赤霉素生物合成。SlMYB76 直接结合到它们的启动子上。SlMYB76 的沉默促进了赤霉素的生物合成。我们的结果表明,SlSUT4 是番茄中的一种功能性 SUT;下调 SlSUT4 的表达增强了蔗糖向茎尖的运输,从而通过抑制赤霉素生物合成促进开花。