Kianianmomeni Arash
a Department of Cellular and Developmental Biology of Plants ; University of Bielefeld ; Bielefeld , Germany.
Plant Signal Behav. 2015;10(4):e1010935. doi: 10.1080/15592324.2015.1010935.
The formation of multicellular organisms requires genetically predefined signaling pathways in various cell types. Besides differences in size, energy balance and life time, cell types should be enable to modulate appropriate developmental and adaptive responses in ever-changing surrounding environment. One of the most important environmental cues is light which regulates a variety of physiological and cellular processes. During evolution, diverse light-sensitive proteins, so-called photoreceptors, and corresponding signaling pathways have evolved, in almost all kingdoms of life, to monitor light continuously and adjust their growth and development accordingly. However, considering the fact that different cell types should be enable to trigger distinct light signaling pathways according to their needs, cell-type specific light signaling pathways are required to guarantee cell type-matched modulation of cellular and developmental processes in response to different light signals. The multicellular green alga Volvox carteri, which has only 2 cell types with clear division of labor, possesses cell-type specific photoreceptors and light signaling pathways which allow differential regulation of genes involved in various cellular and metabolic pathways in response to environmental light. The existence of cell-type specific light signaling pathways in multicellular organism like Volvox reflects an early development of cell-type specific signaling mechanisms during evolution to ensure maintenance of differentiation.
多细胞生物的形成需要各种细胞类型中基因预先设定的信号通路。除了在大小、能量平衡和寿命方面存在差异外,细胞类型还应能够在不断变化的周围环境中调节适当的发育和适应性反应。最重要的环境线索之一是光,它调节着各种生理和细胞过程。在进化过程中,几乎在所有生命王国中,都进化出了多种光敏感蛋白,即所谓的光感受器,以及相应的信号通路,以便持续监测光并据此调整其生长和发育。然而,考虑到不同细胞类型应能够根据自身需要触发不同的光信号通路这一事实,需要细胞类型特异性的光信号通路来确保细胞类型匹配地调节细胞和发育过程以响应不同的光信号。多细胞绿藻团藻只有两种具有明确分工的细胞类型,它拥有细胞类型特异性的光感受器和光信号通路,能够响应环境光对参与各种细胞和代谢途径的基因进行差异调节。像团藻这样的多细胞生物中存在细胞类型特异性的光信号通路,反映了进化过程中细胞类型特异性信号机制的早期发展,以确保维持细胞分化。