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本文引用的文献

1
Programmed cell death controlled by ANAC033/SOMBRERO determines root cap organ size in Arabidopsis.ANAC033/SOMBRERO 调控的细胞程序性死亡决定拟南芥根冠器官大小。
Curr Biol. 2014 May 5;24(9):931-40. doi: 10.1016/j.cub.2014.03.025. Epub 2014 Apr 10.
2
Calcium signaling in plants.植物中的钙信号传导。
Cell Mol Life Sci. 1999 Feb;55(2):214-32. doi: 10.1007/s000180050286.
3
Taking one for the team: self-recognition and cell suicide in pollen.为团队做出牺牲:花粉中的自我识别与细胞自杀
J Exp Bot. 2014 Mar;65(5):1331-42. doi: 10.1093/jxb/ert468. Epub 2014 Jan 21.
4
The role of cyclase-associated protein in regulating actin filament dynamics - more than a monomer-sequestration factor.环化酶相关蛋白在调节肌动蛋白丝动力学中的作用——不仅仅是单体隔离因子。
J Cell Sci. 2013 Aug 1;126(Pt 15):3249-58. doi: 10.1242/jcs.128231.
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Organelle pH in the Arabidopsis endomembrane system.拟南芥内膜系统中的细胞器 pH 值。
Mol Plant. 2013 Sep;6(5):1419-37. doi: 10.1093/mp/sst079. Epub 2013 May 23.
6
Cyclase-associated protein (CAP) acts directly on F-actin to accelerate cofilin-mediated actin severing across the range of physiological pH.环化酶相关蛋白(CAP)直接作用于 F-肌动蛋白,以在生理 pH 范围内加速肌球蛋白轻链介导的肌动蛋白切割。
J Biol Chem. 2012 Oct 12;287(42):35722-35732. doi: 10.1074/jbc.M112.396051. Epub 2012 Aug 17.
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The actin cytoskeleton as a sensor and mediator of apoptosis.肌动蛋白细胞骨架作为细胞凋亡的传感器和介质。
Bioarchitecture. 2012 May 1;2(3):75-87. doi: 10.4161/bioa.20975.
8
Classes of programmed cell death in plants, compared to those in animals.植物细胞程序性死亡的类型,与动物中的相比。
J Exp Bot. 2011 Oct;62(14):4749-61. doi: 10.1093/jxb/err196. Epub 2011 Jul 21.
9
The role of vacuole in plant cell death.液泡在植物细胞死亡中的作用。
Cell Death Differ. 2011 Aug;18(8):1298-304. doi: 10.1038/cdd.2011.70. Epub 2011 Jun 3.
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Organisation and regulation of the cytoskeleton in plant programmed cell death.植物程序性细胞死亡中细胞骨架的组织和调节。
Cell Death Differ. 2011 Aug;18(8):1263-70. doi: 10.1038/cdd.2011.39. Epub 2011 May 13.

野罂粟花粉中自交不亲和诱导的程序性细胞死亡涉及不亲和花粉管细胞质的显著酸化。

Self-incompatibility-induced programmed cell death in field poppy pollen involves dramatic acidification of the incompatible pollen tube cytosol.

作者信息

Wilkins Katie A, Bosch Maurice, Haque Tamanna, Teng Nianjun, Poulter Natalie S, Franklin-Tong Vernonica E

机构信息

School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom.

School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom

出版信息

Plant Physiol. 2015 Mar;167(3):766-79. doi: 10.1104/pp.114.252742. Epub 2015 Jan 28.

DOI:10.1104/pp.114.252742
PMID:25630437
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4347735/
Abstract

Self-incompatibility (SI) is an important genetically controlled mechanism to prevent inbreeding in higher plants. SI involves highly specific interactions during pollination, resulting in the rejection of incompatible (self) pollen. Programmed cell death (PCD) is an important mechanism for destroying cells in a precisely regulated manner. SI in field poppy (Papaver rhoeas) triggers PCD in incompatible pollen. During SI-induced PCD, we previously observed a major acidification of the pollen cytosol. Here, we present measurements of temporal alterations in cytosolic pH ([pH]cyt); they were surprisingly rapid, reaching pH 6.4 within 10 min of SI induction and stabilizing by 60 min at pH 5.5. By manipulating the [pH]cyt of the pollen tubes in vivo, we show that [pH]cyt acidification is an integral and essential event for SI-induced PCD. Here, we provide evidence showing the physiological relevance of the cytosolic acidification and identify key targets of this major physiological alteration. A small drop in [pH]cyt inhibits the activity of a soluble inorganic pyrophosphatase required for pollen tube growth. We also show that [pH]cyt acidification is necessary and sufficient for triggering several key hallmark features of the SI PCD signaling pathway, notably activation of a DEVDase/caspase-3-like activity and formation of SI-induced punctate actin foci. Importantly, the actin binding proteins Cyclase-Associated Protein and Actin-Depolymerizing Factor are identified as key downstream targets. Thus, we have shown the biological relevance of an extreme but physiologically relevant alteration in [pH]cyt and its effect on several components in the context of SI-induced events and PCD.

摘要

自交不亲和性(SI)是高等植物中防止近亲繁殖的一种重要的遗传控制机制。自交不亲和性在授粉过程中涉及高度特异性的相互作用,导致不亲和(自身)花粉被排斥。程序性细胞死亡(PCD)是以精确调控的方式破坏细胞的重要机制。田野罂粟(虞美人)中的自交不亲和性会触发不亲和花粉中的程序性细胞死亡。在自交不亲和性诱导的程序性细胞死亡过程中,我们之前观察到花粉细胞质发生了显著酸化。在此,我们展示了细胞质pH值([pH]cyt)随时间变化的测量结果;变化速度惊人地快,在自交不亲和性诱导后10分钟内达到pH 6.4,并在60分钟时稳定在pH 5.5。通过在体内操纵花粉管的[pH]cyt,我们表明[pH]cyt酸化是自交不亲和性诱导的程序性细胞死亡不可或缺的关键事件。在此,我们提供证据证明细胞质酸化的生理相关性,并确定这一主要生理变化的关键靶点。[pH]cyt的小幅下降会抑制花粉管生长所需的可溶性无机焦磷酸酶的活性。我们还表明,[pH]cyt酸化对于触发自交不亲和性程序性细胞死亡信号通路的几个关键标志性特征是必要且充分的,特别是激活一种DEVDase/类半胱天冬酶-3活性以及形成自交不亲和性诱导的点状肌动蛋白焦点。重要的是,肌动蛋白结合蛋白环化酶相关蛋白和肌动蛋白解聚因子被确定为关键的下游靶点。因此,我们展示了[pH]cyt极端但生理相关的变化及其在自交不亲和性诱导事件和程序性细胞死亡背景下对几个组分的影响的生物学相关性。