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通过核苷转运蛋白 ENT3 将细胞分裂素输出到茎部的限制及其与拟南芥根伸长的关系。

Limitation of Cytokinin Export to the Shoots by Nucleoside Transporter ENT3 and its Linkage with Root Elongation in Arabidopsis.

机构信息

Laboratory of Plant Physiology, Ufa Institute of Biology, Ufa Federal Research Centre, RAS, 450054 Ufa, Russia.

Institute of Biochemistry and Genetics, Ufa Federal Research Centre, RAS, 450054 Ufa, Russia.

出版信息

Cells. 2021 Feb 8;10(2):350. doi: 10.3390/cells10020350.

Abstract

The trans-membrane carrier AtENT3 is known to transport externally supplied cytokinin ribosides and thus promote uptake by cells. However, its role in distributing either exogenous or endogenous cytokinins within the intact plant has not hitherto been reported. To test this, we used mutant Arabidopsis seedlings in which the gene is not expressed due to a T-DNA insertion, and examined the effect on the concentration and distribution of either endogenous cytokinins or exogenous trans-zeatin riboside applied to the roots. In the mutant, accumulation of endogenous cytokinins in the roots was reduced and capacity to deliver externally supplied trans-zeatin riboside to the shoots was increased suggesting involvement of equilibrative nucleoside (ENT) transporter in the control of cytokinin distribution in the plants. Roots of were longer in the mutant in association with their lower cytokinin concentration. We concluded that the ENT3 transporter participates in partitioning endogenous cytokinins between the apoplast and the symplast by facilitating their uptake by root cells thereby limiting cytokinin export to the shoots through the xylem. Dilution of the mineral nutrient solution lowered endogenous cytokinin concentration in the roots of both wild type (WT) and plants accompanied by promotion of root elongation. Nevertheless, cytokinin content was lower, while roots were longer in the mutant than in the WT under either normal or deficient mineral nutrition suggesting a significant role of ENT3 transporter in the control of cytokinin level in the roots and the rate of their elongation.

摘要

跨膜载体 AtENT3 已知可运输外部供应的细胞分裂素核苷,从而促进细胞摄取。然而,其在完整植物体内分配外源性或内源性细胞分裂素的作用尚未见报道。为了检验这一点,我们使用了由于 T-DNA 插入而导致基因不表达的拟南芥突变体幼苗,并检查了其对施加于根部的内源性细胞分裂素或外源性反式玉米素核苷的浓度和分布的影响。在突变体中,根中内源性细胞分裂素的积累减少,而将外部供应的反式玉米素核苷输送到地上部的能力增加,这表明平衡核苷(ENT)转运体参与了植物中细胞分裂素分布的控制。与较低的细胞分裂素浓度相关,突变体的根更长。我们得出结论,ENT3 转运体通过促进根细胞对其的摄取,参与将内源性细胞分裂素在质外体和共质体之间进行分配,从而限制细胞分裂素通过木质部向地上部的输出。无论是在正常还是缺乏矿质营养的情况下,稀释矿物营养液都会降低野生型(WT)和突变体根中的内源性细胞分裂素浓度,同时促进根伸长。然而,在正常或缺乏矿质营养的情况下,突变体中的细胞分裂素含量较低,而根较长,这表明 ENT3 转运体在控制根中细胞分裂素水平和根伸长率方面起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f1b/7914507/f859d2fe9d4c/cells-10-00350-g001.jpg

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