Grupo Interdisciplinar de Sistemas Complejos (GISC) and Departamento de Matemáticas, Universidad Carlos III de Madrid, Leganés, Spain.
Centro Nacional de Biotecnologia (CNB), CSIC, Madrid, Spain.
PLoS Comput Biol. 2022 Aug 15;18(8):e1010359. doi: 10.1371/journal.pcbi.1010359. eCollection 2022 Aug.
The Anabaena genus is a model organism of filamentous cyanobacteria whose vegetative cells can differentiate under nitrogen-limited conditions into a type of cell called heterocyst. These heterocysts lose the possibility to divide and are necessary for the colony because they can fix and share environmental nitrogen. In order to distribute the nitrogen efficiently, heterocysts are arranged to form a quasi-regular pattern whose features are maintained as the filament grows. Recent efforts have allowed advances in the understanding of the interactions and genetic mechanisms underlying this dynamic pattern. However, the main role of the patA and hetF genes are yet to be clarified; in particular, the patA mutant forms heterocysts almost exclusively in the terminal cells of the filament. In this work, we investigate the function of these genes and provide a theoretical model that explains how they interact within the broader genetic network, reproducing their knock-out phenotypes in several genetic backgrounds, including a nearly uniform concentration of HetR along the filament for the patA mutant. Our results suggest a role of hetF and patA in a post-transcriptional modification of HetR which is essential for its regulatory function. In addition, the existence of molecular leakage out of the filament in its boundary cells is enough to explain the preferential appearance of terminal heterocysts, without any need for a distinct regulatory pathway.
束丝藻属是丝状蓝藻的模式生物,其营养细胞在氮饥饿条件下可分化为异形胞。异形胞丧失分裂能力,对藻群而言是必需的,因为它们可以固定和共享环境中的氮。为了有效分配氮,异形胞排列成准规则图案,随着藻丝的生长而维持其特征。最近的研究进展使我们能够深入了解这种动态模式背后的相互作用和遗传机制。然而,patA 和 hetF 基因的主要作用仍有待阐明;特别是,patA 突变体几乎只在藻丝的末端细胞中形成异形胞。在这项工作中,我们研究了这些基因的功能,并提供了一个理论模型,解释了它们如何在更广泛的遗传网络中相互作用,在包括 patA 突变体中沿藻丝几乎均匀分布 HetR 浓度在内的几种遗传背景下再现其敲除表型。我们的结果表明,hetF 和 patA 在 HetR 的转录后修饰中发挥作用,这对其调节功能至关重要。此外,边界细胞中存在分子泄漏出藻丝足以解释末端异形胞的优先出现,而无需独特的调节途径。