Rice Glucose 6-Phosphate/Phosphate Translocator 1 is required for tapetum function and pollen development

绒毡层 生物 质体 孢粉素 配子体 花粉 叶绿体 配子 植物 淀粉体 细胞生物学 基因 突变体 生物化学 拟南芥 雄蕊 小孢子 精子
作者
Weidan Zhang,Huanjun Li,Fei Xue,Wanqi Liang
出处
期刊:Crop Journal [Elsevier]
卷期号:9 (6): 1278-1290 被引量:8
标识
DOI:10.1016/j.cj.2021.03.010
摘要

In plants, non-green plastids in heterotrophic tissues are sites for starch and fatty acids biosynthesis, which are essential for plant development and reproduction. Distinct from chloroplasts, the metabolites for these processes in non-green plastids have to be imported through specific transporters. Glucose 6-Phosphate/Phosphate Translocator 1 is required for the uptake of cytosolic Glucose 6-Phosphate into non-green plastids. In Arabidopsis, GPT1 has been demonstrated to play essential roles in male, female gametophyte and embryo development. However, the roles of GPTs in other species are yet largely unknown. Here, we reported that rice OsGPT1 is indispensable for normal tapetal degeneration and pollen exine formation during anther and pollen development. OsGPT1 is localized in the plastid and distributed in the anther wall layers and late-stage pollen grains. Different from the gametic defects caused by mutation in AtGPT1, disruption of OsGPT1 does not affect male and female gamete transmission as well as embryo development. On the contrary, osgpt1 mutant exhibits delayed tapetum degeneration, decreased Ubisch bodies formation and thinner pollen exine, leading to pollen abortion at the mature stage. Furthermore, the expression of several genes involved in tapetal programmed cell death (PCD) and sporopollenin formation is decreased in osgpt1. Our study suggests that OsGPT1 coordinates the development of anther sporophytic tissues and the male gametophyte by integrating carbohydrate and fatty acid metabolism in the plastid.
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