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生长素运输和活性在拟南芥根生长和偏斜中的细胞动力学。

Cell kinetics of auxin transport and activity in Arabidopsis root growth and skewing.

机构信息

School of Plant Sciences and Food Security, Tel Aviv University, Tel Aviv, Israel.

Section of Cell and Developmental Biology, University of California, San Diego, San Diego, CA, USA.

出版信息

Nat Commun. 2021 Mar 12;12(1):1657. doi: 10.1038/s41467-021-21802-3.

Abstract

Auxin is a key regulator of plant growth and development. Local auxin biosynthesis and intercellular transport generates regional gradients in the root that are instructive for processes such as specification of developmental zones that maintain root growth and tropic responses. Here we present a toolbox to study auxin-mediated root development that features: (i) the ability to control auxin synthesis with high spatio-temporal resolution and (ii) single-cell nucleus tracking and morphokinetic analysis infrastructure. Integration of these two features enables cutting-edge analysis of root development at single-cell resolution based on morphokinetic parameters under normal growth conditions and during cell-type-specific induction of auxin biosynthesis. We show directional auxin flow in the root and refine the contributions of key players in this process. In addition, we determine the quantitative kinetics of Arabidopsis root meristem skewing, which depends on local auxin gradients but does not require PIN2 and AUX1 auxin transporter activities. Beyond the mechanistic insights into root development, the tools developed here will enable biologists to study kinetics and morphology of various critical processes at the single cell-level in whole organisms.

摘要

生长素是植物生长和发育的关键调节剂。局部生长素的生物合成和细胞间运输在根中产生区域梯度,这些梯度对发育区的特化起指导作用,维持根的生长和向性反应。在这里,我们提供了一个研究生长素介导的根发育的工具包,其特点是:(i)能够以高时空分辨率控制生长素的合成;(ii)具有单细胞核跟踪和形态动力学分析基础设施。这两个功能的集成使我们能够根据形态动力学参数,在正常生长条件下和在特定细胞类型诱导生长素生物合成的情况下,对单细胞分辨率下的根发育进行前沿分析。我们展示了根中的定向生长素流,并细化了这个过程中的关键参与者的贡献。此外,我们确定了拟南芥根分生组织偏斜的定量动力学,它依赖于局部生长素梯度,但不需要 PIN2 和 AUX1 生长素转运蛋白的活性。除了对根发育的机制见解外,这里开发的工具还将使生物学家能够在整个生物体中单细胞水平上研究各种关键过程的动力学和形态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e631/7954861/f7a35eb27b95/41467_2021_21802_Fig1_HTML.jpg

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