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Lost in Transit: Long-Distance Trafficking and Phloem Unloading of Protein Signals in Arabidopsis Homografts

机译:在过境中丢失:长途贩运和验证蛋白质信号在拟南芥同质移植物中卸载

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In addition to moving sugars and nutrients, the phloem transports many macromolecules. While grafting and aphid stylectomy experiments have identified many macromolecules that move in the phloem, the functional significance of phloem transport of these remains unclear. To gain insight into protein trafficking, we micrografted Arabidopsis thaliana scions expressing GFP-tagged chloroplast transit peptides under the 35S promoter onto nontransgenic rootstocks. We found that plastids in the root tip became fluorescent 10 d after grafting. We obtained identical results with the companion cell-specific promoter SUC2 and with signals that target proteins to peroxisomes, actin, and the nucleus. We were unable to detect the respective mRNAs in the rootstock, indicating extensive movement of proteins in the phloem. Outward movement from the root protophloem was restricted to the pericycle-endodermis boundary, identifying plasmodesmata at this interface as control points in the exchange of macromolecules between stele and cortex. Intriguingly, signals directing proteins to the endoplasmic reticulum and Golgi apparatus from membrane-bound ribosomes were not translocated to the root. It appears that many organelle-targeting sequences are insufficient to prevent the loss of their proteins into the translocation stream. Thus, nonspecific loss of proteins from companion cells to sieve elements may explain the plethora of macromolecules identified in phloem sap.
机译:除了移动糖和营养素之外,韧皮肽还传输许多大分子。虽然嫁接和蚜虫损伤术实验鉴定了许多在韧皮柱中移动的大分子,但这些抑制的功能意义仍然不清楚。为了进入蛋白质贩运的洞察力,我们将Microfrofraphed Arabidopsis Thaniana Sciens在35s启动子下表达GFP标记的叶绿体过境肽在非转基因砧座上。我们发现在接枝后根尖的塑体变成荧光10d。我们通过伴随细胞特异性启动子Suc2获得相同的结果,并用靶向过氧磷酸,肌动蛋白和细胞核的信号。我们无法检测到砧木中的相应MRNA,表明蛋白质在韧皮中的广泛运动。从根原激素的外向运动被限制在腹侧边界边界,鉴定该界面处的纤维脂肪池作为碑类和皮质之间的大分子交换中的控制点。有趣的是,将蛋白质引导到内质网和Golgi装置的信号与膜结合的核糖体的信号不粘附到根部。看似许多细胞器靶向序列不足以防止蛋白质损失到易位流中。因此,来自伴随细胞到筛子元素的蛋白质的非特异性丧失可以解释在Phloem Sap中鉴定的血清大分子。

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    《The Plant Cell》 |2016年第9期|共10页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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