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空间转录组特征沿番茄(Solanum lycopersicum)叶片的近-远轴和中-侧轴定义了叶边缘形态发生。

Spatial transcriptional signatures define margin morphogenesis along the proximal-distal and medio-lateral axes in tomato (Solanum lycopersicum) leaves.

机构信息

Department of Molecular and Cellular Biology, University of California at Berkeley, Berkeley, CA 94709.

Berkeley Institute for Data Science, University of California at Berkeley, Berkeley, CA 94709.

出版信息

Plant Cell. 2021 Mar 22;33(1):44-65. doi: 10.1093/plcell/koaa012.

Abstract

Leaf morphogenesis involves cell division, expansion, and differentiation in the developing leaf, which take place at different rates and at different positions along the medio-lateral and proximal-distal leaf axes. The gene expression changes that control cell fate along these axes remain elusive due to difficulties in precisely isolating tissues. Here, we combined rigorous early leaf characterization, laser capture microdissection, and transcriptomic sequencing to ask how gene expression patterns regulate early leaf morphogenesis in wild-type tomato (Solanum lycopersicum) and the leaf morphogenesis mutant trifoliate. We observed transcriptional regulation of cell differentiation along the proximal-distal axis and identified molecular signatures delineating the classically defined marginal meristem/blastozone region during early leaf development. We describe the role of endoreduplication during leaf development, when and where leaf cells first achieve photosynthetic competency, and the regulation of auxin transport and signaling along the leaf axes. Knockout mutants of BLADE-ON-PETIOLE2 exhibited ectopic shoot apical meristem formation on leaves, highlighting the role of this gene in regulating margin tissue identity. We mapped gene expression signatures in specific leaf domains and evaluated the role of each domain in conferring indeterminacy and permitting blade outgrowth. Finally, we generated a global gene expression atlas of the early developing compound leaf.

摘要

叶片形态发生涉及发育中叶细胞的分裂、扩张和分化,这些过程在中-侧和近-远轴上以不同的速度和位置发生。由于难以精确分离组织,控制这些轴上细胞命运的基因表达变化仍然难以捉摸。在这里,我们结合严格的早期叶片特征描述、激光捕获显微解剖和转录组测序,来探讨基因表达模式如何在野生型番茄(Solanum lycopersicum)和三叶突变体中调节早期叶片形态发生。我们观察到了细胞分化沿着近-远轴的转录调控,并确定了在早期叶片发育过程中区分经典定义的边缘分生组织/原分生组织区域的分子特征。我们描述了在叶片发育过程中内复制的作用,即在何时何地叶片细胞首次获得光合作用能力,以及沿着叶片轴的生长素运输和信号转导的调节。BLADE-ON-PETIOLE2 的敲除突变体在叶片上表现出不定芽分生组织的形成,突出了该基因在调节边缘组织特性中的作用。我们在特定叶片区域中绘制了基因表达特征,并评估了每个区域在赋予不定性和允许叶片生长方面的作用。最后,我们生成了早期发育的复叶的全局基因表达图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1193/8136875/5255cba70cee/koaa012f1.jpg

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