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生长素调节海洋红藻顶端干细胞再生和尖端生长。

Auxin Regulates Apical Stem Cell Regeneration and Tip Growth in the Marine Red Alga .

机构信息

Graduate School of Fisheries Sciences, Hokkaido University, 3-1-1 Minato-cho, Hakodate 041-8611, Japan.

School of Fisheries Sciences, Hokkaido University, 3-1-1 Minato-cho, Hakodate 041-8611, Japan.

出版信息

Cells. 2022 Aug 26;11(17):2652. doi: 10.3390/cells11172652.

Abstract

The red alga undergoes polarized elongation and asymmetrical cell division of the apical stem cell during tip growth in filamentous generations of its life cycle: the conchocelis and conchosporangium. Side branches are also produced via tip growth, a process involving the regeneration and asymmetrical division of the apical stem cell. Here, we demonstrate that auxin plays a crucial role in these processes by using the auxin antagonist 2-(1-Indol-3-yl)-4-oxo-4-phenyl-butyric acid (PEO-IAA), which specifically blocks the activity of the auxin receptor TRANSPORT INHIBITOR RESPONSE1 (TIR1) in land plants. PEO-IAA repressed both the regeneration and polarized tip growth of the apical stem cell in single-celled conchocelis; this phenomenon was reversed by treatment with the auxin indole-3-acetic acid (IAA). In addition, tip growth of the conchosporangium was accelerated by IAA treatment but repressed by PEO-IAA treatment. These findings indicate that auxin regulates polarized tip cell growth and that an auxin receptor-like protein is present in . The sensitivity to different 5-alkoxy-IAA analogs differs considerably between and . lacks a gene encoding TIR1, indicating that its auxin receptor-like protein differs from the auxin receptor of terrestrial plants. These findings shed light on auxin-induced mechanisms and the regulation of tip growth in plants.

摘要

在红藻丝状世代的生命周期中,顶端干细胞经历极化伸长和不对称细胞分裂:壳孢藻和壳孢子囊。侧枝也通过顶端干细胞的再生和不对称分裂进行顶端生长产生。在这里,我们通过使用生长素拮抗剂 2-(1-吲哚-3-基)-4-氧代-4-苯基-丁酸(PEO-IAA)证明生长素在这些过程中起着至关重要的作用,该生长素拮抗剂特异性阻断陆地植物中生长素受体 TRANSPORT INHIBITOR RESPONSE1(TIR1)的活性。PEO-IAA 抑制单细胞壳孢藻中顶端干细胞的再生和极化顶端生长;用生长素吲哚-3-乙酸(IAA)处理可逆转这种现象。此外,IAA 处理加速了壳孢子囊的顶端生长,但 PEO-IAA 处理抑制了顶端生长。这些发现表明生长素调节极化顶端细胞生长,并且存在生长素受体样蛋白在 。与 相比,对不同 5-烷氧基-IAA 类似物的敏感性差异很大。 缺乏编码 TIR1 的基因,表明其生长素受体样蛋白与陆地植物的生长素受体不同。这些发现揭示了生长素诱导的机制和植物顶端生长的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb96/9454478/8ab3b7787f49/cells-11-02652-g001.jpg

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