Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Av. Universidad, Ciudada de México, México.
School of Science, Western Sydney University, Penrith, NSW, Australia.
J Exp Bot. 2022 Nov 19;73(21):7139-7154. doi: 10.1093/jxb/erac292.
Communication from plastids to the nucleus via retrograde signal cascades is essential to modulate nuclear gene expression, impacting plant development and environmental responses. Recently, a new class of plastid retrograde signals has emerged, consisting of acyclic and cyclic carotenoids and/or their degradation products, apocarotenoids. Although the biochemical identity of many of the apocarotenoid signals is still under current investigation, the examples described herein demonstrate the central roles that these carotenoid-derived signals play in ensuring plant development and survival. We present recent advances in the discovery of apocarotenoid signals and their role in various plant developmental transitions and environmental stress responses. Moreover, we highlight the emerging data exposing the highly complex signal transduction pathways underlying plastid to nucleus apocarotenoid retrograde signaling cascades. Altogether, this review summarizes the central role of the carotenoid pathway as a major source of retrograde signals in plants.
质体通过逆行信号级联与核之间的通讯对于调节核基因表达至关重要,影响植物的发育和环境响应。最近,出现了一类新的质体逆行信号,由非环和环类胡萝卜素和/或它们的降解产物,apocarotenoids 组成。尽管许多 apocarotenoid 信号的生化身份仍在当前的研究中,本文所述的例子证明了这些类胡萝卜素衍生的信号在确保植物发育和生存方面的核心作用。我们介绍了 apocarotenoid 信号的发现及其在各种植物发育转变和环境胁迫响应中的作用的最新进展。此外,我们强调了新兴的数据揭示了质体到细胞核 apocarotenoid 逆行信号转导级联背后高度复杂的信号转导途径。总的来说,这篇综述总结了类胡萝卜素途径作为植物逆行信号主要来源的核心作用。