School of Biological Sciences, University of Bristol, 24 Tyndall Avenue, Bristol, BS8 1TQ, UK.
Development. 2023 Mar 15;150(6). doi: 10.1242/dev.201209.
Diverse branching forms have evolved multiple times across the tree of life to facilitate resource acquisition and exchange with the environment. In the vascular plant group, the ancestral pattern of branching involves dichotomy of a parent shoot apex to form two new daughter apices. The molecular basis of axillary branching in Arabidopsis is well understood, but few regulators of dichotomous branching are known. Through analyses of dichotomous branching in the lycophyte, Selaginella kraussiana, we identify PIN-mediated auxin transport as an ancestral branch regulator of vascular plants. We show that short-range auxin transport out of the apices promotes dichotomy and that branch dominance is globally coordinated by long-range auxin transport. Uniquely in Selaginella, angle meristems initiate at each dichotomy, and these can develop into rhizophores or branching angle shoots. We show that long-range auxin transport and a transitory drop in PIN expression are involved in angle shoot development. We conclude that PIN-mediated auxin transport is an ancestral mechanism for vascular plant branching that was independently recruited into Selaginella angle shoot development and seed plant axillary branching during evolution.
多样化的分枝形式在生命之树上多次进化,以促进与环境的资源获取和交换。在维管植物群中,分枝的祖先模式涉及亲代茎尖的二叉分裂,形成两个新的女儿尖端。拟南芥腋生分枝的分子基础已经很清楚,但已知的二叉分枝调节剂很少。通过对石松属植物石松的二叉分枝分析,我们确定 PIN 介导的生长素运输是维管植物的一个祖先分支调节剂。我们表明,远离顶端的短距离生长素运输促进二叉分枝,并且长距离生长素运输全局协调分枝优势。在石松中独一无二的是,每个二叉分枝处都起始有角度分生组织,这些分生组织可以发育成根状茎或分枝角度的芽。我们表明长距离生长素运输和 PIN 表达的短暂下降参与了角度芽的发育。我们的结论是,PIN 介导的生长素运输是维管植物分枝的一个古老机制,它在进化过程中被独立地招募到石松的角度芽发育和种子植物的腋生分枝中。