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一个保守的超级基因座调控地上和地下根的起始。

A conserved superlocus regulates above- and belowground root initiation.

机构信息

The Institute of Plant Science and Genetics in Agriculture, Faculty of Agriculture, The Hebrew University of Jerusalem, Rehovot, Israel.

Department of Plant Sciences, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Science. 2022 Mar 4;375(6584):eabf4368. doi: 10.1126/science.abf4368.

Abstract

Plants continuously form new organs in different developmental contexts in response to environmental cues. Underground lateral roots initiate from prepatterned cells in the main root, but cells can also bypass the root-shoot trajectory separation and generate shoot-borne roots through an unknown mechanism. We mapped tomato () shoot-borne root development at single-cell resolution and showed that these roots initiate from phloem-associated cells through a unique transition state. This state requires the activity of a transcription factor that we named () Evolutionary analysis reveals that 's function and cis regulation are conserved in angiosperms and that it arose as an ancient duplication, with paralogs controlling wound-induced and lateral root initiation. We propose that the activation of a common transition state by context-specific regulators underlies the plasticity of plant root systems.

摘要

植物在不同的发育环境中不断形成新的器官,以响应环境线索。地下侧根从主根中的预成型细胞起始,但细胞也可以绕过根-茎的轨迹分离,并通过未知的机制产生茎生根。我们以单细胞分辨率绘制了番茄()茎生根的发育图谱,表明这些根从韧皮部相关细胞通过一个独特的过渡状态起始。这个状态需要一个转录因子的活性,我们将其命名为()。进化分析表明,在被子植物中,的功能和顺式调控是保守的,它是作为一个古老的重复出现的,其同源基因控制着创伤诱导和侧根起始。我们提出,在特定的环境中,特定的调节因子激活一个共同的过渡状态,这是植物根系可塑性的基础。

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