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#16 – Anna Stepanova: Building a synbio toolbox to monitor and control plant hormone activity

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Manage episode 302350206 series 2982476
内容由Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State提供。所有播客内容(包括剧集、图形和播客描述)均由 Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State 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

Genetic Engineering and Society Center

GES Colloquium - Tuesdays 12-1PM (via Zoom) NC State University | http://go.ncsu.edu/ges-colloquium GES Mediasite - See videos, full abstracts, speaker bios, and slides https://go.ncsu.edu/ges-mediasite Twitter - https://twitter.com/GESCenterNCSU

Building a synbio toolbox to monitor and control plant hormone activity

Phytohormones are critical regulators of plant development and environmental responses. In the past three decades, the molecular pathways that govern hormone biosynthesis, signaling, and catabolism have been largely mapped out using a combination of genetics, molecular biology, biochemistry, and cell biology approaches. Despite the major progress, our ability to monitor and precisely control hormone action remains limited. With the development of inexpensive DNA synthesis technologies and the rise of synthetic biology as a new discipline at the intersection of molecular genetics and engineering, new molecular tools can now be built to enable hormone tracking and targeted hormone manipulation. We have generated a synthetic biology toolbox that allows rapid construction of multi-hormone transcriptional reporters. In addition, we are building CRISPR-based logic gate devices to confer novel, highly restricted patterns of expression to any genes of interest using a limited set of available native and synthetic drivers.

Links & Resources

Guest Speaker

Anna Stepanova (@AlonsoStepanova and @ANStepanova45) is an Associate Professor of Plant Biology and Genetics at NC State University. Her primary research interests continue to center around plant hormones, specifically the mechanisms of ethylene signal transduction, auxin biosynthesis, hormone pathways’ crosstalk, and translational regulation of hormone responses. In her work, Anna is employing classical and molecular genetics, genomics and synthetic biology in Arabidopsis and tomato to decipher the mechanisms governing plant adaptation and phenotypic plasticity.

GES Center - Integrating scientific knowledge & diverse public values in shaping the futures of biotechnology.

Find out more at https://ges-center-lectures-ncsu.pinecast.co

  continue reading

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Manage episode 302350206 series 2982476
内容由Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State提供。所有播客内容(包括剧集、图形和播客描述)均由 Genetic Engineering and Society Center, NC State, Genetic Engineering, Society Center, and NC State 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

Genetic Engineering and Society Center

GES Colloquium - Tuesdays 12-1PM (via Zoom) NC State University | http://go.ncsu.edu/ges-colloquium GES Mediasite - See videos, full abstracts, speaker bios, and slides https://go.ncsu.edu/ges-mediasite Twitter - https://twitter.com/GESCenterNCSU

Building a synbio toolbox to monitor and control plant hormone activity

Phytohormones are critical regulators of plant development and environmental responses. In the past three decades, the molecular pathways that govern hormone biosynthesis, signaling, and catabolism have been largely mapped out using a combination of genetics, molecular biology, biochemistry, and cell biology approaches. Despite the major progress, our ability to monitor and precisely control hormone action remains limited. With the development of inexpensive DNA synthesis technologies and the rise of synthetic biology as a new discipline at the intersection of molecular genetics and engineering, new molecular tools can now be built to enable hormone tracking and targeted hormone manipulation. We have generated a synthetic biology toolbox that allows rapid construction of multi-hormone transcriptional reporters. In addition, we are building CRISPR-based logic gate devices to confer novel, highly restricted patterns of expression to any genes of interest using a limited set of available native and synthetic drivers.

Links & Resources

Guest Speaker

Anna Stepanova (@AlonsoStepanova and @ANStepanova45) is an Associate Professor of Plant Biology and Genetics at NC State University. Her primary research interests continue to center around plant hormones, specifically the mechanisms of ethylene signal transduction, auxin biosynthesis, hormone pathways’ crosstalk, and translational regulation of hormone responses. In her work, Anna is employing classical and molecular genetics, genomics and synthetic biology in Arabidopsis and tomato to decipher the mechanisms governing plant adaptation and phenotypic plasticity.

GES Center - Integrating scientific knowledge & diverse public values in shaping the futures of biotechnology.

Find out more at https://ges-center-lectures-ncsu.pinecast.co

  continue reading

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