Department of Biological Sciences, Dartmouth College, Hanover, New Hampshire 03755, USA.
Plant Physiol. 2013 May;162(1):212-24. doi: 10.1104/pp.112.208736. Epub 2013 Mar 12.
Cytokinins play critical roles in plant growth and development, with the transcriptional response to cytokinin being mediated by the type-B response regulators. In Arabidopsis (Arabidopsis thaliana), type-B response regulators (ARABIDOPSIS RESPONSE REGULATORS [ARRs]) form three subfamilies based on phylogenic analysis, with subfamily 1 having seven members and subfamilies 2 and 3 each having two members. Cytokinin responses are predominantly mediated by subfamily 1 members, with cytokinin-mediated effects on root growth and root meristem size correlating with type-B ARR expression levels. To determine which type-B ARRs can functionally substitute for the subfamily 1 members ARR1 or ARR12, we expressed different type-B ARRs from the ARR1 promoter and assayed their ability to rescue arr1 arr12 double mutant phenotypes. ARR1, as well as a subset of other subfamily 1 type-B ARRs, restore the cytokinin sensitivity to arr1 arr12. Expression of ARR10 from the ARR1 promoter results in cytokinin hypersensitivity and enhances shoot regeneration from callus tissue, correlating with enhanced stability of the ARR10 protein compared with the ARR1 protein. Examination of transfer DNA insertion mutants in subfamilies 2 and 3 revealed little effect on several well-characterized cytokinin responses. However, a member of subfamily 2, ARR21, restores cytokinin sensitivity to arr1 arr12 roots when expressed from the ARR1 promoter, indicating functional conservation of this divergent family member. Our results indicate that the type-B ARRs have diverged in function, such that some, but not all, can complement the arr1 arr12 mutant. In addition, our results indicate that type-B ARR expression profiles in the plant, along with posttranscriptional regulation, play significant roles in modulating their contribution to cytokinin signaling.
细胞分裂素在植物生长和发育中起着关键作用,其转录反应由 B 型响应调节剂介导。在拟南芥(Arabidopsis thaliana)中,B 型响应调节剂(ARABIDOPSIS RESPONSE REGULATORS [ARRs])根据系统发育分析分为三个亚家族,其中亚家族 1 有 7 个成员,亚家族 2 和 3 各有 2 个成员。细胞分裂素的反应主要由亚家族 1 成员介导,细胞分裂素对根生长和根分生组织大小的影响与 B 型 ARR 表达水平相关。为了确定哪些 B 型 ARR 可以替代亚家族 1 成员 ARR1 或 ARR12 发挥功能,我们从 ARR1 启动子表达不同的 B 型 ARR,并检测它们拯救 arr1 arr12 双突变体表型的能力。ARR1 以及亚家族 1 中的一组其他 B 型 ARR 恢复了 arr1 arr12 对细胞分裂素的敏感性。ARR10 从 ARR1 启动子表达导致细胞分裂素超敏性,并增强愈伤组织的芽再生,这与 ARR10 蛋白的稳定性与 ARR1 蛋白相比增强相关。对亚家族 2 和 3 的转座子插入突变体的检查表明,对几种经过充分研究的细胞分裂素反应几乎没有影响。然而,亚家族 2 的一个成员 ARR21,当从 ARR1 启动子表达时,恢复了 arr1 arr12 根对细胞分裂素的敏感性,表明这个分化的家族成员在功能上是保守的。我们的结果表明,B 型 ARR 在功能上已经分化,因此一些(但不是全部)可以补充 arr1 arr12 突变体。此外,我们的结果表明,B 型 ARR 在植物中的表达谱以及转录后调控在调节它们对细胞分裂素信号的贡献方面起着重要作用。