Sucrose rather than GA transported by AtSWEET13 and AtSWEET14 supports pollen fitness at late anther development stages

Author:

Wang Jiang,Xue Xueyi,Zeng Houqing,Li Jiankun,Chen Li-Qing

Abstract

SummaryBoth sugar and hormone gibberellin (GA) are essential for anther-enclosed pollen development and thus for plant productivity in flowering plants. Arabidopsis (Arabidopsis thaliana) AtSWEET13 and AtSWEET14, which are expressed in anthers and associated with seed yield, transport both sucrose and GA. However, it is still unclear which substrate transported by them directly affects anther development and seed yield.Histochemical staining, cross-sectioning and microscopy imaging techniques were used to investigate and interpret the phenotypes ofAtSWEET13andAtSWEET14double mutant during anther development. Genetic complementation ofatsweet13;14using AtSWEET9 that transports sucrose but not GA was conducted to test the substrate preference relevant to the biological process.The loss ofAtSWEET13andAtSWEET14resulted in reduced pollen viability and therefore decreased pollen germination. AtSWEET9 fully rescuedthe defects in pollen fertility ofatsweet13;14, indicating AtSWEET13/14 mediated sucrose rather than GA is essential to pollen fertility.AtSWEET13 and AtSWEET14 mainly function at the anther wall during late anther development stages and are likely responsible for sucrose efflux into locules to support pollen development to maturation, which is vital for subsequent pollen viability and germination.

Publisher

Cold Spring Harbor Laboratory

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