Botany, School of Life Sciences, Technische Universität München, Freising, Germany.
Systematic Botany and Mycology, Faculty of Biology, Ludwig-Maximilians-University, Munich, Germany.
PLoS Genet. 2022 Dec 12;18(12):e1010541. doi: 10.1371/journal.pgen.1010541. eCollection 2022 Dec.
Plants often adapt to adverse conditions via differential growth, whereby limited resources are discriminately allocated to optimize the growth of one organ at the expense of another. Little is known about the decision-making processes that underly differential growth. In this study, we developed a screen to identify decision making mutants by deploying two tools that have been used in decision theory: a well-defined yet limited budget, as well as conflict-of-interest scenarios. A forward genetic screen that combined light and water withdrawal was carried out. This identified BRASSINOSTEROID INSENSITIVE 2 (BIN2) alleles as decision mutants with "confused" phenotypes. An assessment of organ and cell length suggested that hypocotyl elongation occurred predominantly via cellular elongation. In contrast, root growth appeared to be regulated by a combination of cell division and cell elongation or exit from the meristem. Gain- or loss- of function bin2 mutants were most severely impaired in their ability to adjust cell geometry in the hypocotyl or cell elongation as a function of distance from the quiescent centre in the root tips. This study describes a novel paradigm for root growth under limiting conditions, which depends not only on hypocotyl-versus-root trade-offs in the allocation of limited resources, but also on an ability to deploy different strategies for root growth in response to multiple stress conditions.
植物通常通过差异生长来适应不利条件,通过有区别地分配有限的资源来优化一个器官的生长,而牺牲另一个器官的生长。关于差异生长的决策过程知之甚少。在这项研究中,我们开发了一种筛选方法,通过部署两种已在决策理论中使用的工具来识别决策突变体:一个明确但有限的预算,以及利益冲突的情况。进行了一项结合光和水撤离的正向遗传筛选。这确定了 BRASSINOSTEROID INSENSITIVE 2 (BIN2) 等位基因作为具有“混乱”表型的决策突变体。对器官和细胞长度的评估表明,下胚轴的伸长主要通过细胞伸长发生。相比之下,根的生长似乎受细胞分裂和细胞伸长或离开根尖静止中心的组合调节。功能获得或丧失的 bin2 突变体在调节下胚轴细胞几何形状或作为根尖静止中心距离的函数的细胞伸长能力方面受到的影响最为严重。这项研究描述了一种在有限条件下的根生长的新范例,它不仅取决于下胚轴与根之间在有限资源分配上的权衡,还取决于在应对多种胁迫条件时部署不同根生长策略的能力。