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单根起始过程中MONOPTEROS-BODENLOS模块的生长素响应性关键取决于生长素/吲哚乙酸(Aux/IAA)抑制剂BODENLOS的核输入动力学。

Auxin responsiveness of the MONOPTEROS-BODENLOS module in primary root initiation critically depends on the nuclear import kinetics of the Aux/IAA inhibitor BODENLOS.

作者信息

Herud Ole, Weijers Dolf, Lau Steffen, Jürgens Gerd

机构信息

Department of Cell Biology, Max Planck Institute for Developmental Biology, Tübingen, 72076, Germany.

Department of Developmental Genetics, Center for Plant Molecular Biology, University of Tübingen, Tübingen, 72076, Germany.

出版信息

Plant J. 2016 Jan;85(2):269-77. doi: 10.1111/tpj.13108.

Abstract

Primary root formation in early embryogenesis of Arabidopsis thaliana is initiated with the specification of a single cell called hypophysis. This initial step requires the auxin-dependent release of the transcription factor MONOPTEROS (MP, also known as ARF5) from its inhibition by the Aux/IAA protein BODENLOS (BDL, also known as IAA12). Auxin-insensitive bdl mutant embryos and mp loss-of-function embryos fail to specify the hypophysis, giving rise to rootless seedlings. A suppressor screen of rootless bdl mutant seedlings yielded a mutation in the nuclear import receptor IMPORTIN-ALPHA 6 (IMPα6) that promoted primary root formation through rescue of the embryonic hypophysis defects, without causing additional phenotypic changes. Aux/IAA proteins are continually synthesized and degraded, which is essential for rapid transcriptional responses to changing auxin concentrations. Nuclear translocation of bdl:3×GFP was slowed down in impα6 mutants as measured by fluorescence recovery after photobleaching (FRAP) analysis, which correlated with the reduced inhibition of MP by bdl in transient expression assays in impα6 knock-down protoplasts. The MP-BDL module acts like an auxin-triggered genetic switch because MP activates its own expression as well as the expression of its inhibitor BDL. Using an established simulation model, we determined that the reduced nuclear translocation rate of BDL in impα6 mutant embryos rendered the auxin-triggered switch unstable, impairing the fast response to changes in auxin concentration. Our results suggest that the instability of the inhibitor BDL necessitates a fast nuclear uptake in order to reach the critical threshold level required for auxin responsiveness of the MP-BDL module in primary root initiation.

摘要

拟南芥早期胚胎发生过程中的主根形成始于一个名为胚柄细胞的单细胞特化。这一初始步骤需要生长素依赖的转录因子MONOPTEROS(MP,也称为ARF5)从Aux/IAA蛋白BODENLOS(BDL,也称为IAA12)的抑制中释放出来。生长素不敏感的bdl突变体胚胎和mp功能缺失胚胎无法特化胚柄细胞,从而产生无根幼苗。对无根bdl突变体幼苗进行的抑制子筛选产生了核输入受体IMPORTIN-ALPHA 6(IMPα6)的突变,该突变通过挽救胚胎胚柄细胞缺陷促进了主根形成,且未引起其他表型变化。Aux/IAA蛋白不断合成和降解,这对于快速转录响应生长素浓度变化至关重要。通过光漂白后荧光恢复(FRAP)分析测量,在impα6突变体中bdl:3×GFP的核转位减慢,这与在impα6敲低原生质体的瞬时表达试验中bdl对MP的抑制作用降低相关。MP-BDL模块的作用类似于生长素触发的基因开关,因为MP激活其自身的表达以及其抑制剂BDL的表达。使用一个已建立的模拟模型,我们确定impα6突变体胚胎中BDL核转位速率的降低使生长素触发的开关不稳定,损害了对生长素浓度变化的快速响应。我们的结果表明,抑制剂BDL的不稳定性需要快速的核摄取,以便达到主根起始中MP-BDL模块对生长素响应所需的临界阈值水平。

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