Unverified paper record
The use of quantitative imaging to investigate regulators of membrane trafficking in Arabidopsis stomatal closure.
Traffic (Copenhagen, Denmark) · 8 Jan 2019 · 10.1111/tra.12625
Abstract
Expansion of gene families facilitates robustness and evolvability of biological processes but impedes functional genetic dissection of signalling pathways. To address this, quantitative analysis of single cell responses can help characterize the redundancy within gene families. We developed high-throughput quantitative imaging of stomatal closure, a response of plant guard cells, and performed a reverse genetic screen in a group of Arabidopsis mutants to five stimuli. Focussing on the intersection between guard cell signalling and the endomembrane system, we identified eight clusters based on the mutant stomatal responses. Mutants generally affected in stomatal closure were mostly in genes encoding SNARE and SCAMP membrane regulators. By contrast, mutants in RAB5 GTPase genes played specific roles in stomatal closure to microbial but not drought stress. Together with timed quantitative imaging of endosomes revealing sequential patterns in FLS2 trafficking, our imaging pipeline can resolve non-redundant functions of the RAB5 GTPase gene family. Finally, we provide a valuable image-based tool to dissect guard cell responses and outline a genetic framework of stomatal closure.
Plant phenotyping relevance
気孔閉鎖という植物状態を定量化する高スループット画像法と解析パイプラインの開発が中心であり、遺伝学的スクリーニングへの応用も含むため。
abstractWe developed high-throughput quantitative imaging of stomatal closure
abstractTogether with timed quantitative imaging of endosomes revealing sequential patterns in FLS2 trafficking, our imaging pipeline can resolve non-redundant functions of the RAB5 GTPase gene family.
abstractFinally, we provide a valuable image-based tool to dissect guard cell responses
Code and data availability
植物フェノタイピング解析を再現する公開資産であることを、入力本文と直接リンクから確認できなかったため保留しました。
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