首页> 外文期刊>Journal of Experimental Botany >Overexpression of PwTUA1, a pollen-specific tubulin gene, increases pollen tube elongation by altering the distribution of alpha-tubulin and promoting vesicle transport
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Overexpression of PwTUA1, a pollen-specific tubulin gene, increases pollen tube elongation by altering the distribution of alpha-tubulin and promoting vesicle transport

机译:花粉特异性微管蛋白基因PwTUA1的过表达通过改变α-微管蛋白的分布并促进囊泡转运来增加花粉管伸长

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摘要

Tubulin genes are intimately associated with cell division and cell elongation, which are central to plant secondary cell wall development. However, their roles in pollen tube polar growth remain elusive. Here, a TUA1 gene from Picea wilsonii, which is specifically expressed in pollen, was isolated. Semi-quantitative RT-PCR analysis showed that the amount of PwTUA1 transcript varied at each stage of growth of the pollen tube and was induced by calcium ions and boron. Transient expression analysis in P. wilsonii pollen indicated that PwTUA1 improved pollen germination and pollen tube growth. The pollen of transgenic Arabidopsis overexpressing PwTUA1 also showed a higher percentage of germination and faster growth than wild-type plants not only in optimal germination medium, but also in medium supplemented with elevated levels of exogenous calcium ions or boron. Immunofluorescence and electron microscopy showed alpha-tubulin to be enriched and more vesicles accumulated in the apex region in germinating transgenic Arabidopsis pollen compared with wild-type plants. These results demonstrate that PwTUA1 up-regulated by calcium ions and boron contributes to pollen tube elongation by altering the distribution of alpha-tubulin and regulating the deposition of pollen cell wall components during the process of tube growth. The possible role of PwTUA1 in microtubule dynamics and organization was discussed.
机译:微管蛋白基因与细胞分裂和细胞伸长密切相关,这对于植物次级细胞壁发育至关重要。但是,它们在花粉管极性生长中的作用仍然难以捉摸。在此,分离了在花粉中特异性表达的来自云杉的TUA1基因。半定量RT-PCR分析表明,PwTUA1转录物的量在花粉管生长的每个阶段均发生变化,并由钙离子和硼诱导。野菜花粉的瞬时表达分析表明,PwTUA1改善了花粉的萌发和花粉管的生长。过表达PwTUA1的转基因拟南芥的花粉不仅在最佳的发芽培养基中,而且在补充了高水平外源钙离子或硼的培养基中,也显示出比野生型植物更高的发芽率和更快的生长。免疫荧光和电子显微镜观察显示,与野生型植物相比,发芽的转基因拟南芥花粉中的α-微管蛋白富集,并且更多的囊泡聚集在顶点区域。这些结果表明,钙离子和硼上调的PwTUA1通过改变α-微管蛋白的分布并在管生长过程中调节花粉细胞壁成分的沉积而有助于花粉管的伸长。讨论了PwTUA1在微管动力学和组织中的可能作用。

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