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S1E1 | Carlos Ortiz-Ramírez | Ground tissue development

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Manage episode 316902988 series 3299153
内容由Arif Ashraf提供。所有播客内容(包括剧集、图形和播客描述)均由 Arif Ashraf 或其播客平台合作伙伴直接上传和提供。如果您认为有人在未经您许可的情况下使用您的受版权保护的作品,您可以按照此处概述的流程进行操作https://zh.player.fm/legal

Article: Ground tissue circuitry regulates organ complexity in maize and Setaria
Journal: Science
Year: 2021
Guest: Carlos Ortiz-Ramírez
Host: Arif Ashraf

Abstract

Most plant roots have multiple cortex layers that make up the bulk of the organ and play key roles in physiology, such as flood tolerance and symbiosis. However, little is known about the formation of cortical layers outside of the highly reduced anatomy of Arabidopsis. Here, we used single-cell RNA sequencing to rapidly generate a cell-resolution map of the maize root, revealing an alternative configuration of the tissue formative transcription factor SHORT-ROOT (SHR) adjacent to an expanded cortex. We show that maize SHR protein is hypermobile, moving at least eight cell layers into the cortex. Higher-order SHR mutants in both maize and Setaria have reduced numbers of cortical layers, showing that the SHR pathway controls expansion of cortical tissue to elaborate anatomical complexity.

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30集单集

Artwork
icon分享
 
Manage episode 316902988 series 3299153
内容由Arif Ashraf提供。所有播客内容(包括剧集、图形和播客描述)均由 Arif Ashraf 或其播客平台合作伙伴直接上传和提供。如果您认为有人在未经您许可的情况下使用您的受版权保护的作品,您可以按照此处概述的流程进行操作https://zh.player.fm/legal

Article: Ground tissue circuitry regulates organ complexity in maize and Setaria
Journal: Science
Year: 2021
Guest: Carlos Ortiz-Ramírez
Host: Arif Ashraf

Abstract

Most plant roots have multiple cortex layers that make up the bulk of the organ and play key roles in physiology, such as flood tolerance and symbiosis. However, little is known about the formation of cortical layers outside of the highly reduced anatomy of Arabidopsis. Here, we used single-cell RNA sequencing to rapidly generate a cell-resolution map of the maize root, revealing an alternative configuration of the tissue formative transcription factor SHORT-ROOT (SHR) adjacent to an expanded cortex. We show that maize SHR protein is hypermobile, moving at least eight cell layers into the cortex. Higher-order SHR mutants in both maize and Setaria have reduced numbers of cortical layers, showing that the SHR pathway controls expansion of cortical tissue to elaborate anatomical complexity.

  continue reading

30集单集

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