首页> 外文期刊>Plant Cell Reports >Auxin and gibberellin responsive Arabidopsis SMALL AUXIN UP RNA36 regulates hypocotyl elongation in the light. (Special Issue: Plant hormone signaling (Volume I).)
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Auxin and gibberellin responsive Arabidopsis SMALL AUXIN UP RNA36 regulates hypocotyl elongation in the light. (Special Issue: Plant hormone signaling (Volume I).)

机译:生长素和赤霉素响应拟南芥小AUXIN UP RNA36在光照下调节下胚轴伸长。 (特刊:植物激素信号传导(第一卷)。)

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摘要

Phytohormone signalling intermediates integrate responses to developmental cues and the variety of environmental inputs thereby governing all aspects of plant growth and development. At the genetic level, interactions of different phytohormone signalling pathways lead to the regulation of overlapping sets of target genes. We have characterised SMALL AUXIN UP RNA 36 (SAUR36, At2g45210) whose expression is induced by auxins and repressed by gibberellins. Its expression appears to be restricted to elongating tissues. Germination responses to treatments with paclobutrazol and exogenous abscisic acid were affected in knock-out, knock-down as well as ectopic expression lines. At later stages of development, however, transgenic plants with reduced levels of SAUR36 expression appeared similar to wild-type plants, while ectopic expression of SAUR36 led to the absence of apical hooks in etiolated seedlings and longer hypocotyls in light-grown seedlings. Mature plants ectopically expressing SAUR36 further displayed strongly reduced fertility and wavy growth of inflorescence axes, the latter of which could be linked to defects in auxin transport. Taken together, our data suggest that SAUR36 plays a role in the regulation of seed germination by gibberellins and abscisic acid, light-dependent hypocotyl elongation as well as apical hook formation or maintenance. Therefore, we propose that it could act as one of the converging points of auxin and gibberellin signal integration in controlling key plant developmental events. Hence, we named the gene RESPONSE TO AUXINS AND GIBBERELLINS 1 (RAG1).
机译:植物激素信号传递中间体整合了对发育线索和各种环境输入的响应,从而支配了植物生长发育的各个方面。在遗传水平上,不同植物激素信号传导途径的相互作用导致靶基因重叠集的调控。我们已经表征了小AUXIN UP RNA 36(SAUR36,At2g45210),其表达被植物生长素诱导并被赤霉素抑制。它的表达似乎仅限于伸长的组织。用多效唑和外源脱落酸处理的萌发响应在敲除,敲除以及异位表达系中受到影响。然而,在发育的后期,SAUR36表达水平降低的转基因植物似乎与野生型植物相似,而SAUR36的异位表达导致黄化幼苗中没有根尖钩,而轻生幼苗中没有更长的下胚轴。异位表达SAUR36的成熟植物进一步显示出育性大大降低,花序轴呈波浪状生长,后者可能与生长素运输中的缺陷有关。综上所述,我们的数据表明SAUR36在赤霉素和脱落酸,光依赖性下胚轴伸长以及根尖钩形成或维持的种子萌发调节中发挥作用。因此,我们建议它可以作为生长素和赤霉素信号整合的融合点之一,以控制关键的植物发育事件。因此,我们将基因命名为RESOURSE TO AUXINS AND GIBBERELLINS 1(RAG1)。

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