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Metabolic Control of Tobacco Pollination by Sugars and Invertases

机译:糖和蔗糖酶对烟草授粉的代谢控制

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摘要

Pollination in flowering plants is initiated by germination of pollen grains on stigmas followed by fast growth of pollen tubes representing highly energy-consuming processes. The symplastic isolation of pollen grains and tubes requires import of Suc available in the apoplast. We show that the functional coupling of Suc cleavage by invertases and uptake of the released hexoses by monosaccharide transporters are critical for pollination in tobacco (Nicotiana tabacum). Transcript profiling, in situ hybridization, and immunolocalization of extracellular invertases and two monosaccharide transporters in vitro and in vivo support the functional coupling in supplying carbohydrates for pollen germination and tube growth evidenced by spatiotemporally coordinated expression. Detection of vacuolar invertases in maternal tissues by these approaches revealed metabolic cross talk between male and female tissues and supported the requirement for carbohydrate supply in transmitting tissue during pollination. Tissue-specific expression of an invertase inhibitor and addition of the chemical invertase inhibitor miglitol strongly reduced extracellular invertase activity and impaired pollen germination. Measurements of (competitive) uptake of labeled sugars identified two import pathways for exogenously available Suc into the germinating pollen operating in parallel: direct Suc uptake and via the hexoses after cleavage by extracellular invertase. Reduction of extracellular invertase activity in pollen decreases Suc uptake and severely compromises pollen germination. We further demonstrate that Glc as sole carbon source is sufficient for pollen germination, whereas Suc is supporting tube growth, revealing an important regulatory role of both the invertase substrate and products contributing to a potential metabolic and signaling-based multilayer regulation of pollination by carbohydrates.
机译:开花植物的授粉始于花粉粒在柱头上的萌发,然后是代表高能耗过程的花粉管的快速生长。花粉粒和花粉管的共生分离需要导入质外体中可用的Suc。我们表明,蔗糖酶通过转化酶的功能耦合和单糖转运蛋白对释放的己糖的摄取对于烟草(烟草)的授粉至关重要。转录谱分析,原位杂交和细胞外转化酶和两个单糖转运蛋白的体外和体内免疫定位支持功能耦合,为时空协调表达所证明的花粉萌发和管生长提供碳水化合物。通过这些方法检测母体组织中的液泡转化酶,揭示了雄性和雌性组织之间的代谢串扰,并支持了授粉期间传输组织中碳水化合物供应的需求。转化酶抑制剂的组织特异性表达和化学转化酶抑制剂米格列醇的添加大大降低了细胞外转化酶的活性并削弱了花粉的萌发。标记糖(竞争性)摄取的测量方法确定了外源可利用的Suc进入平行运行的发芽花粉的两种输入途径:直接Suc摄取和通过细胞外转化酶切割后通过己糖。花粉中细胞外转化酶活性的降低会降低Suc吸收并严重损害花粉的萌发。我们进一步证明,Glc作为唯一的碳源足以满足花粉萌发的需要,而Suc支持管的生长,揭示了转化酶底物和产物的重要调控作用,这有助于碳水化合物的授粉潜在的基于代谢和信号传导的多层调节。

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