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APETALA1的一个直系同源基因介导季节性生长的光周期调控。

A tree ortholog of APETALA1 mediates photoperiodic control of seasonal growth.

作者信息

Azeez Abdul, Miskolczi Pál, Tylewicz Szymon, Bhalerao Rishikesh P

机构信息

Umeå Plant Science Center, Department of Forest Genetics and Plant Physiology, SLU, 90187 Umeå, Sweden.

Umeå Plant Science Center, Department of Forest Genetics and Plant Physiology, SLU, 90187 Umeå, Sweden.

出版信息

Curr Biol. 2014 Mar 31;24(7):717-24. doi: 10.1016/j.cub.2014.02.037. Epub 2014 Mar 20.

Abstract

BACKGROUND

Photoperiodic control of development plays a key role in adaptation of plants to seasonal changes. A signaling module consisting of CONSTANS (CO) and FLOWERING LOCUS T (FT) mediates in photoperiodic control of a variety of developmental transitions (e.g., flowering, tuberization, and seasonal growth cessation in trees). How this conserved CO/FT module can mediate in the photoperiodic control of diverse unrelated developmental programs is poorly understood.

RESULTS

We show that Like-AP1 (LAP1), a tree ortholog of Arabidopsis floral meristem identity gene APETALA1 (AP1), mediates in photoperiodic control of seasonal growth cessation downstream of the CO/FT module in hybrid aspen. Using LAP1 overexpressors and RNAi-suppressed transgenic trees, we demonstrate that short day (SD)-mediated downregulation of LAP1 expression is required for growth cessation. In contrast with AP1 targets in flowering, LAP1 acts on AINTEGUMENTA-like 1 transcription factor, which is implicated in SD-mediated growth cessation. Intriguingly, unlike AP1 in Arabidopsis, ectopic expression of LAP1 fails to induce early flowering in hybrid aspen trees.

CONCLUSIONS

These results indicate that AP1 ortholog in trees has acquired a novel function in photoperiodic regulation of seasonal growth. Thus, photoperiodic signaling pathway may have diverged downstream of AP1/LAP1 rather than the CO/FT module during evolution. Moreover, control of flowering by the CO/FT module can be uncoupled from its role in photoperiodic control of seasonal growth in trees. Thus, our findings can explain mechanistically how a conserved signaling module can mediate in the control of a highly diverse set of developmental transitions by a similar input signal, namely photoperiod.

摘要

背景

光周期对植物发育的调控在植物适应季节变化过程中起着关键作用。由CONSTANS(CO)和FLOWERING LOCUS T(FT)组成的信号模块介导了多种发育转变的光周期调控(例如开花、块茎形成以及树木的季节性生长停止)。人们对这个保守的CO/FT模块如何介导不相关的不同发育程序的光周期调控了解甚少。

结果

我们发现,拟南芥花分生组织特性基因APETALA1(AP1)在树木中的直系同源基因Like-AP1(LAP1),在杂种杨树中CO/FT模块下游介导季节性生长停止的光周期调控。利用LAP1过表达植株和RNA干扰抑制的转基因树木,我们证明短日照(SD)介导的LAP1表达下调是生长停止所必需的。与AP1在开花中的靶标不同,LAP1作用于与SD介导的生长停止有关的AINTEGUMENTA-like 1转录因子。有趣的是,与拟南芥中的AP1不同,LAP1的异位表达未能在杂种杨树中诱导早花。

结论

这些结果表明,树木中的AP1直系同源基因在季节性生长的光周期调控中获得了新功能。因此,在进化过程中,光周期信号通路可能在AP1/LAP1下游而非CO/FT模块处发生了分歧。此外,CO/FT模块对开花的调控可以与其在树木季节性生长的光周期调控中的作用解偶联。因此,我们的研究结果可以从机制上解释一个保守的信号模块如何通过类似的输入信号,即光周期,介导对一系列高度多样的发育转变的调控。

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