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生长素运输的进化起源:我们所知与我们需知之事。

The evolutionary origins of auxin transport: what we know and what we need to know.

作者信息

Vosolsobě Stanislav, Skokan Roman, Petrášek Jan

机构信息

Department of Experimental Plant Biology, Faculty of Science, Charles University, Viničná, Czech Republic.

The Czech Academy of Sciences, Institute of Experimental Botany, Rozvojová, Czech Republic.

出版信息

J Exp Bot. 2020 Jun 11;71(11):3287-3295. doi: 10.1093/jxb/eraa169.

Abstract

Auxin, represented by indole-3-acetic acid (IAA), has for a long time been studied mainly with respect to the development of land plants, and recent evidence confirms that canonical nuclear auxin signaling is a land plant apomorphy. Increasing sequential and physiological data show that the presence of auxin transport machinery pre-dates the emergence of canonical signaling. In this review, we summarize the present state of knowledge regarding the origins of auxin transport in the green lineage (Viridiplantae), integrating both data from wet lab experiments and sequence evidence on the presence of PIN-FORMED (PIN), PIN-LIKES (PILS), and AUXIN RESISTANT 1/LIKE-AUX1 (AUX1/LAX) homologs. We discuss a high divergence of auxin carrier homologs among algal lineages and emphasize the urgent need for the establishment of good molecular biology models from within the streptophyte green algae. We further postulate and discuss two hypotheses for the ancestral role of auxin in the green lineage. First, auxin was present as a by-product of cell metabolism and the evolution of its transport was stimulated by the need for IAA sequestration and cell detoxification. Second, auxin was primarily a signaling compound, possibly of bacterial origin, and its activity in the pre-plant green algae was a consequence of long-term co-existence with bacteria in shared ecological consortia.

摘要

以吲哚 - 3 - 乙酸(IAA)为代表的生长素,长期以来主要是针对陆地植物的发育进行研究,最近的证据证实,经典的核生长素信号传导是陆地植物的一个衍生特征。越来越多的序列和生理学数据表明,生长素运输机制的存在早于经典信号传导的出现。在这篇综述中,我们总结了关于绿色谱系(绿藻植物)中生长素运输起源的现有知识状态,整合了来自湿实验室实验的数据以及关于PIN形成蛋白(PIN)、类PIN蛋白(PILS)和生长素抗性1/类生长素输入载体1(AUX1/LAX)同源物存在的序列证据。我们讨论了藻类谱系中生长素载体同源物的高度差异,并强调迫切需要从链形绿藻中建立良好的分子生物学模型。我们进一步提出并讨论了关于生长素在绿色谱系中祖先作用的两个假说。第一,生长素作为细胞代谢的副产物存在,其运输的进化是由IAA隔离和细胞解毒的需求所刺激的。第二,生长素主要是一种信号化合物,可能起源于细菌,其在植物前绿藻中的活性是与细菌在共享生态群落中长期共存的结果。

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