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Stem cell activation by light guides plant organogenesis.

机译:光激活干细胞可引导植物器官发生。

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摘要

Leaves originate from stem cells located at the shoot apical meristem. The meristem is shielded from the environment by older leaves, and leaf initiation is considered to be an autonomous process that does not depend on environmental cues. Here we show that light acts as a morphogenic signal that controls leaf initiation and stabilizes leaf positioning. Leaf initiation in tomato shoot apices ceases in the dark but resumes in the light, an effect that is mediated through the plant hormone cytokinin. Dark treatment also affects the subcellular localization of the auxin transporter PIN1 and the concomitant formation of auxin maxima. We propose that cytokinin is required for meristem propagation, and that auxin redirects cytokinin-inducible meristem growth toward organ formation. In contrast to common wisdom over the last 150 years, the light environment controls the initiation of lateral organs by regulating two key hormones: auxin and cytokinin.
机译:叶片起源于位于茎尖分生组织的干细胞。分生组织被较老的叶子遮挡住了环境,叶子的萌生被认为是一个独立的过程,不依赖于环境提示。在这里,我们显示光充当控制叶片起始并稳定叶片定位的形态发生信号。番茄芽尖的叶片萌发在黑暗中停止,但在光照下恢复,这种作用是通过植物激素细胞分裂素介导的。暗处理也会影响生长素转运蛋白PIN1的亚细胞定位以及最大生长素的伴随形成。我们建议细胞分裂素是分生组织繁殖所必需的,而生长素则将细胞分裂素诱导的分生组织重新定向到器官形成。与过去150年来的常识相反,光照环境通过调节两种关键激素:生长素和细胞分裂素来控制侧器官的启动。

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