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首页> 外文期刊>Journal of Experimental Botany >Live imaging of intra- and extracellular pH in plants using pHusion, a novel genetically encoded biosensor
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Live imaging of intra- and extracellular pH in plants using pHusion, a novel genetically encoded biosensor

机译:使用pHusion(一种新型的遗传编码生物传感器)对植物体内和细胞外pH进行实时成像

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Changes in pH are now widely accepted as a signalling mechanism in cells. In plants, proton pumps in the plasma membrane and tonoplast play a key role in regulation of intracellular pH homeostasis and maintenance of transmembrane proton gradients. Proton transport in response to external stimuli can be expected to be finely regulated spatially and temporally. With the ambition to follow such changes live, a new genetically encoded sensor, pHusion, has been developed. pHusion is especially designed for apoplastic pH measurements. It was constitutively expressed in Arabidopsis and targeted for expression in either the cytosol or the apoplast including intracellular compartments. pHusion consists of the tandem concatenation of enhanced green fluorescent protein (EGFP) and monomeric red fluorescent protein (mRFP1), and works as a ratiometric pH sensor. Live microscopy at high spatial and temporal resolution is highly dependent on appropriate immobilization of the specimen for microscopy. Medical adhesive often used in such experiments destroys cell viability in roots. Here a novel system for immobilizing Arabidopsis seedling roots for perfusion experiments is presented which does not impair cell viability. With appropriate immobilization, it was possible to follow changes of the apoplastic and cytosolic pH in mesophyll and root tissue. Rapid pH homeostasis upon external pH changes was reflected by negligible cytosolic pH fluctuations, while the apoplastic pH changed drastically. The great potential for analysing pH regulation in a whole-tissue, physiological context is demonstrated by the immediate alkalinization of the subepidermal apoplast upon external indole-3-acetic acid administration. This change is highly significant in the elongation zone compared with the root hair zone and control roots.
机译:现在,pH的变化已被广泛接受为细胞中的信号传导机制。在植物中,质膜和液泡膜中的质子泵在调节细胞内pH稳态和维持跨膜质子梯度中起关键作用。响应于外部刺激的质子传输可以在空间和时间上得到很好的调节。为了能够实时跟踪此类变化,开发了一种新的遗传编码传感器pHusion。 pHusion专为外质pH测量而设计。它在拟南芥中组成型表达,并靶向在细胞质或质外体(包括细胞内区室)中表达。 pHusion由增强型绿色荧光蛋白(EGFP)和单体红色荧光蛋白(mRFP1)串联组成,并用作比例pH传感器。高空间和时间分辨率下的实时显微镜高度依赖于适当固定显微镜样品。通常在此类实验中使用的医用粘合剂会破坏根部的细胞活力。在这里提出了一种用于固定拟南芥幼苗根系以进行灌注实验的新系统,该系统不会损害细胞活力。通过适当的固定,可以跟踪叶肉和根组织中质外体和胞质pH的变化。外部pH变化引起的快速pH稳态反映在可忽略的胞质pH波动中,而质外性pH急剧变化。在外用吲哚-3-乙酸给药后,表皮下的表皮质外质立即碱化,证明了在整个组织的生理环境中分析pH调节的巨大潜力。与根部毛发区和对照根相比,此变化在伸长区非常重要。

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