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向盐性是植物根系对避免盐渍环境的一种反应。

Halotropism is a response of plant roots to avoid a saline environment.

作者信息

Galvan-Ampudia Carlos S, Julkowska Magdalena M, Darwish Essam, Gandullo Jacinto, Korver Ruud A, Brunoud Geraldine, Haring Michel A, Munnik Teun, Vernoux Teva, Testerink Christa

机构信息

Section of Plant Physiology, Swammerdam Institute for Life Sciences, University of Amsterdam, Science Park 904, 1098 XH Amsterdam, the Netherlands.

出版信息

Curr Biol. 2013 Oct 21;23(20):2044-50. doi: 10.1016/j.cub.2013.08.042. Epub 2013 Oct 3.

Abstract

Tropisms represent fascinating examples of how plants respond to environmental signals by adapting their growth and development. Here, a novel tropism is reported, halotropism, allowing plant seedlings to reduce their exposure to salinity by circumventing a saline environment. In response to a salt gradient, Arabidopsis, tomato, and sorghum roots were found to actively prioritize growth away from salinity above following the gravity axis. Directionality of this response is established by an active redistribution of the plant hormone auxin in the root tip, which is mediated by the PIN-FORMED 2 (PIN2) auxin efflux carrier. We show that salt-induced phospholipase D activity stimulates clathrin-mediated endocytosis of PIN2 at the side of the root facing the higher salt concentration. The intracellular relocalization of PIN2 allows for auxin redistribution and for the directional bending of the root away from the higher salt concentration. Our results thus identify a cellular pathway essential for the integration of environmental cues with auxin-regulated root growth that likely plays a key role in plant adaptative responses to salt stress.

摘要

向性是植物通过调整生长和发育来响应环境信号的有趣例子。在此,我们报道了一种新的向性——盐向性,它使植物幼苗能够通过避开盐渍环境来减少盐分暴露。在盐梯度的作用下,拟南芥、番茄和高粱的根被发现会主动优先选择远离盐分的方向生长,而不是沿着重力轴生长。这种反应的方向性是由植物激素生长素在根尖的主动重新分布建立的,这一过程由PIN形成蛋白2(PIN2)生长素外排载体介导。我们发现,盐诱导的磷脂酶D活性会刺激网格蛋白介导的PIN2在根面对较高盐浓度一侧的内吞作用。PIN2的细胞内重新定位使得生长素重新分布,并使根向远离较高盐浓度的方向定向弯曲。因此,我们的研究结果确定了一条对于将环境信号与生长素调节的根生长整合至关重要的细胞途径,该途径可能在植物对盐胁迫的适应性反应中起关键作用。

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