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网络分析确定了玉米叶原基中的转录组近端到远端预模式。

Network analyses identify a transcriptomic proximodistal prepattern in the maize leaf primordium.

作者信息

Leiboff Samuel, Strable Josh, Johnston Robyn, Federici Silvia, Sylvester Anne W, Scanlon Michael J

机构信息

Plant Biology Section, School of Integrative Plant Science, Cornell University, Ithaca, NY, 14853, USA.

Plant Gene Expression Center, USDA-ARS, Albany, CA, 94710, USA.

出版信息

New Phytol. 2021 Apr;230(1):218-227. doi: 10.1111/nph.17132. Epub 2021 Jan 12.

Abstract

The formation of developmental boundaries is a common feature of multicellular plants and animals, and impacts the initiation, structure and function of all organs. Maize leaves comprise a proximal sheath that encloses the stem, and a distal photosynthetic blade that projects away from the plant axis. An epidermally derived ligule and a joint-like auricle develop at the blade/sheath boundary of maize leaves. Mutations disturbing the ligule/auricle region disrupt leaf patterning and impact plant architecture, yet it is unclear how this developmental boundary is established. Targeted microdissection followed by transcriptomic analyses of young leaf primordia were utilized to construct a co-expression network associated with development of the blade/sheath boundary. Evidence is presented for proximodistal gradients of gene expression that establish a prepatterned transcriptomic boundary in young leaf primordia, before the morphological initiation of the blade/sheath boundary in older leaves. This work presents a conceptual model for spatiotemporal patterning of proximodistal leaf domains, and provides a rich resource of candidate gene interactions for future investigations of the mechanisms of blade/sheath boundary formation in maize.

摘要

发育边界的形成是多细胞植物和动物的一个共同特征,并且影响所有器官的起始、结构和功能。玉米叶片包括包裹茎的近端叶鞘和背离植物轴伸出的远端光合叶片。在玉米叶片的叶片/叶鞘边界处发育出表皮衍生的叶舌和类似关节的叶耳。干扰叶舌/叶耳区域的突变会破坏叶片模式并影响植株结构,然而目前尚不清楚这种发育边界是如何建立的。通过对幼叶原基进行靶向显微切割并随后进行转录组分析,构建了一个与叶片/叶鞘边界发育相关的共表达网络。有证据表明存在基因表达的近远轴梯度,该梯度在老叶中叶片/叶鞘边界形态起始之前,就在幼叶原基中建立了一个预先形成模式的转录组边界。这项工作提出了一个关于叶片近远轴区域时空模式形成的概念模型,并为未来研究玉米叶片/叶鞘边界形成机制提供了丰富的候选基因相互作用资源。

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