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A novel regulatory circuit underlying plant response to canopy shade

机译:植物对冠层遮荫反应的新型调控回路

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摘要

A plant growing in the field has the unique ability to sense the presence of other plants growing near by and adjust its growth rate accordingly. This ability to detect neighbors, which is referred to as shade avoidance response, is mediated by members of the phytochrome family which detect light in the red (R) and far-red (FR) region of the spectrum. Work done by several laboratories has shown that low R/FR provides the signal for shade avoidance response during which the elongation of stem-like organs occurs at the expense of leaf development. However, the mechanism by which the low R/FR signal is transduced to attenuate leaf development has remained largely unknown. In the August issue of Genes and Development, we have shown that low R/FR rapidly and transiently arrests the growth of the leaf primordium. By exploiting mutant analysis in combination with genome wide expression profiling, we have identified a novel regulatory circuit underlying plant response to canopy shade. Together, the data demonstrate that the growth arrest induced by low R/FR depends on auxin-induced cytokinin breakdown in pre-procambial cells of developing primordia. In this addendum, we discuss open questions to be addressed in the future.
机译:田间生长的植物具有独特的能力,可以感知附近生长的其他植物的存在并相应地调整其生长速度。这种检测邻居的能力(称为避光响应)是由植物色素家族的成员所介导的,该成员检测光谱的红色(R)和远红色(FR)区域中的光。几个实验室所做的工作表明,低R / FR为避荫响应提供了信号,在此期间,茎状器官的伸长以叶片发育为代价。然而,低R / FR信号被转导以减弱叶片发育的机理仍然是未知的。在8月的《基因与发育》中,我们证明了低R / FR可以迅速并短暂地阻止叶片原基的生长。通过利用突变分析与全基因组表达谱相结合,我们已经确定了一种新的调节电路,其基础是植物对冠层阴影的响应。总之,数据表明,低R / FR诱导的生长停滞取决于生长原基的前冈比亚细胞中生长素诱导的细胞分裂素分解。在本附录中,我们讨论了将来需要解决的未解决问题。

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