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Proximity driven plastid–nucleus relationships are facilitated by tandem plastid–ER dynamics

机译:串联质体-ER 动力学促进了邻近驱动的质体-核关系

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摘要

Peri-nuclear clustering (PNC) of chloroplasts has largely been described in senescent and pathogen- or reactive oxygen species-stressed cells. Stromules, tubular plastid extensions, are also observed under similar conditions. Coincident observations of PNC and stromules associate the two phenomena in facilitating retrograde signaling between chloroplasts and the nucleus. However, PNC incidence in non-stressed cells under normal growth and developmental conditions, when stromules are usually not observed, remains unclear. Using transgenic Arabidopsis expressing different organelle-targeted fluorescent proteins, we show that PNC is a dynamic subcellular phenomenon that continues in the absence of light and is not dependent on stromule formation. PNC is facilitated by tandem plastid–endoplasmic reticulum (ER) dynamics created through membrane contact sites between the two organelles. While PNC increases upon ER membrane expansion, some plastids may remain in the peri-nuclear region due to their localization in ER-lined nuclear indentions. Moreover, some PNC plastids may sporadically extend stromules into ER-lined nuclear grooves. Our findings strongly indicate that PNC is not an exclusive response to stress caused by pathogens, high light, or exogenous H2O2 treatment, and does not require stromule formation. However, morphological and behavioral alterations in ER and concomitant changes in tandem, plastid–ER dynamics play a major role in facilitating the phenomenon.
机译:叶绿体的核周聚集 (PNC) 主要在衰老和病原体或活性氧应激细胞中被描述。基质,管状质体延伸,也在类似条件下观察到。PNC 和基质的重合观察将这两种现象联系起来,促进了叶绿体和细胞核之间的逆行信号传导。然而,在正常生长和发育条件下,当通常不观察到基质时,非应激细胞中 PNC 的发生率仍不清楚。使用表达不同细胞器靶向荧光蛋白的转基因拟南芥,我们表明 PNC 是一种动态亚细胞现象,在没有光的情况下持续,不依赖于基质形成。PNC 由两个细胞器之间的膜接触位点产生的串联质体-内质网 (ER) 动力学促进。虽然 PNC 在 ER 膜扩张时增加,但由于它们位于内质网衬里的核压痕中,一些质体可能保留在核周围区域。此外,一些 PNC 质体可能会偶尔将基质延伸到 ER 衬里的核沟中。我们的研究结果强烈表明,PNC 并不是对病原体、高光或外源性 H 2 O 2 处理引起的压力的唯一反应,并且不需要基质形成。然而,ER 的形态和行为改变以及伴随的质体-ER 动力学变化在促进这种现象中起着重要作用。

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